Flavor-modifying compositions comprising lactase
Patent Information
- Application Number
- JP2023579286
- Authority / Receiving Office
- JP · JP
- Patent Type
- Applications
- Current Assignee / Owner
- Priority Date
- 2021-07-15
- Filing Date
- 2022-06-22
- Publication Date
- 2025-06-06
AI Technical Summary
There is a need for compositions that can effectively mimic the sensory profile of caloric sweeteners like sucrose in dairy products without the need for large amounts of caloric sweeteners, addressing the challenges posed by lactose presence and flavor in sweetened products.
The use of lactase enzymes in combination with sweetness enhancers, such as natural steviol glycoside sweeteners and synthetic compounds, to enhance sweetness and improve the flavor profile of dairy products.
The combination of lactase and sweetness enhancers effectively enhances sweetness, reduces bitterness, astringency, and improves creaminess, juiciness, and overall flavor perception in dairy products, providing a more pleasant taste experience.
Abstract
Description
[Technical field]
[0001] The present disclosure generally relates to flavor modifying compositions and their use in various edible products, such as food, beverage, and nutritional products, including dairy products. In some embodiments, the flavor modifying compositions include lactase. In some embodiments, the flavor modifying compositions include one or more sweetness enhancers. In some embodiments, the flavor modifying compositions also include one or more flavoring substances, such as sweeteners, including but not limited to sugars, high intensity sweeteners, or combinations thereof. In some aspects, the present disclosure provides for the use of such flavor modifying compositions in various edible compositions. Such edible compositions include various additional ingredients, such as animal proteins (e.g., dairy proteins) and non-animal proteins. Such edible compositions can be packaged as or included in food, beverage, or animal feed products. In some embodiments, such products are dairy products, such as dairy beverages, yogurt, cheese, condensed milk, evaporated milk, milk powder, infant formula, buttermilk, kefir, cream, creamer, custard, ice cream, gelato, frozen custard, cottage cheese, and the like.
[0002] 2. Description of Related Art The taste system provides sensory information about the chemical composition of the external world. Gustatory transduction is one of the more sophisticated forms of chemically induced animal senses. Taste signaling is found throughout the animal kingdom, from simple metazoans to the most complex vertebrates. Mammals are thought to have five basic taste modalities: sweet, bitter, sour, salty, and umami.
[0003] Sweetness is the taste most commonly perceived when eating foods that are high in sugar. Mammals usually perceive sweetness as a pleasant sensation, except when excessive. Caloric sweeteners such as sucrose and fructose are classic examples of sweet tastants. Although a variety of zero-calorie and low-calorie alternatives exist, these caloric sweeteners remain the primary means for producing the perception of sweetness in edible products upon consumption.
[0004] Metabolic disorders and related diseases, such as obesity, diabetes, and cardiovascular disease, are major public health concerns worldwide. And their prevalence has been increasing at an alarming rate in almost all developed countries. Caloric sweeteners are a major driver of this trend, as they are included in various processed foods and beverages to make them more palatable to consumers. In many cases, non-caloric or low-caloric substitutes can be used in foods and beverages to replace sucrose and fructose. Even so, these compounds impart a different sweetness to caloric sweeteners, and many consumers do not consider them suitable replacements. Moreover, such compounds can be difficult to formulate into certain products. In some cases, they are used as partial replacements for caloric sweeteners, but their mere presence can cause many consumers to perceive unpleasant off-tastes, such as astringent, bitter, metallic, and licorice flavors. Thus, low-caloric sweeteners face certain challenges in their adoption.
[0005] It is quite common to sweeten dairy products with such sweeteners. Dairy products also contain natural sugars, typically in the form of lactose. Lactose is a disaccharide composed of D-galactose and D-glucose linked by a 1,4-β bond. Therefore, when sweetening dairy products, challenges posed by the presence and flavor of lactose in the sweetened product can also be faced.
[0006] Thus, there is a need to discover new compositions that can more effectively mimic the sensory profile of caloric sweeteners, such as sucrose, in a variety of flavored products, such as dairy products.
[0007] overview The present disclosure relates to the discovery that lactase enzyme used in combination with certain sweetness enhancers can improve the sweetness of dairy products without the need for the addition of large amounts of caloric sweeteners such as fructose or sucrose.
[0008] In a first aspect, the disclosure provides a flavor modifying composition comprising (a) lactase and (b) a sweetener, a sweetness enhancer, or a combination thereof. In some embodiments, the flavor modifying composition comprises a sweetener, such as a natural steviol glycoside sweetener (such as rebaudioside A or rebaudioside M), sucralose, or allulose. In some embodiments, the flavor modifying composition comprises a sweetness enhancer, such as phloretin, naringenin, a glucosylated natural steviol glycoside, or a synthetic compound, such as N-(1-((4-amino-2,2-dioxo-1H-benzo[c][1,2,6]thiadiazin-5-yl)oxy)-2-methylpropan-2-yl)isonicotinamide or any edible acceptable salt thereof. In some embodiments, the flavor modifying composition comprises vanillin or a similar substance.
[0009] In a second aspect, the disclosure provides a use of any of the flavor modifying compositions of the first aspect to increase or enhance the sweetness of an edible composition. In some embodiments, the edible composition is a flavored product, such as a food, beverage, oral care product, or animal feed product. In some embodiments, the edible composition comprises one or more dairy proteins. In some embodiments, the edible composition comprises one or more non-animal proteins, such as vegetable proteins, mycoproteins, algae proteins, or any combination thereof. In some embodiments, the edible composition comprises lactose (i.e., β-D-galactopyranosyl-(1→4)-D-glucose). In certain related aspects, the disclosure provides a method of increasing or enhancing the sweetness of an edible composition, comprising introducing any of the flavor modifying compositions of the first aspect into the edible composition.
[0010] In a third aspect, the disclosure provides a use of any of the flavor modifying compositions of the first aspect to reduce or block the bitter taste of an edible composition. In some embodiments, the edible composition is a flavored product, such as a food, beverage, oral care product, or animal feed product. In some embodiments, the edible composition comprises one or more dairy proteins. In some embodiments, the edible composition comprises one or more non-animal proteins, such as vegetable proteins, mycoproteins, algae proteins, or any combination thereof. In some embodiments, the edible composition comprises lactose (i.e., β-D-galactopyranosyl-(1→4)-D-glucose). In certain related aspects, the disclosure provides a method of reducing or blocking the sweet taste of an edible composition, comprising introducing any of the flavor modifying compositions of the first aspect into the edible composition.
[0011] In a fourth aspect, the disclosure provides a use of any of the flavor modifying compositions of the first aspect to reduce the perceived astringency of an edible composition. In some embodiments, the edible composition is a flavored product, such as a food, beverage, oral care product, or animal feed product. In some embodiments, the edible composition comprises one or more dairy proteins. In some embodiments, the edible composition comprises one or more non-animal proteins, such as vegetable proteins, mycoproteins, algae proteins, or any combination thereof. In some embodiments, the edible composition comprises lactose (i.e., β-D-galactopyranosyl-(1→4)-D-glucose). In certain related aspects, the disclosure provides a method of reducing the perceived astringency of an edible composition, comprising introducing any of the flavor modifying compositions of the first aspect into the edible composition.
[0012] In a fifth aspect, the disclosure provides a use of any of the flavor modifying compositions of the first aspect to reduce the perception of a grassy taste note (e.g., a pea note) in an edible composition. In some embodiments, the edible composition is a flavored product, such as a food, beverage, oral care product, or animal feed product. In some embodiments, the edible composition comprises one or more dairy proteins. In some embodiments, the edible composition comprises one or more non-animal proteins, such as vegetable proteins, mycoproteins, algae proteins, or any combination thereof. In some embodiments, the edible composition comprises lactose (i.e., β-D-galactopyranosyl-(1→4)-D-glucose). In certain related aspects, the disclosure provides a method of reducing the perception of a grassy taste note (e.g., a pea note) in an edible composition, comprising introducing any of the flavor modifying compositions of the first aspect into the edible composition.
[0013] In a sixth aspect, the disclosure provides a use of any of the flavor modifying compositions of the first aspect to reduce the perception of cereal taste notes in an edible composition. In some embodiments, the edible composition is a flavored product, such as a food, beverage, oral care product, or animal feed product. In some embodiments, the edible composition comprises one or more dairy proteins. In some embodiments, the edible composition comprises one or more non-animal proteins, such as vegetable proteins, mycoproteins, algae proteins, or any combination thereof. In some embodiments, the edible composition comprises lactose (i.e., β-D-galactopyranosyl-(1→4)-D-glucose). In certain related aspects, the disclosure provides a method of reducing the perception of cereal taste notes in an edible composition, comprising introducing any of the flavor modifying compositions of the first aspect into the edible composition.
[0014] In a seventh aspect, the disclosure provides a use of any of the flavor modifying compositions of the first aspect to enhance the perceived creaminess of an edible composition. In some embodiments, the edible composition is a flavored product, such as a food, beverage, oral care product, or animal feed product. In some embodiments, the edible composition comprises one or more dairy proteins. In some embodiments, the edible composition comprises one or more non-animal proteins, such as vegetable proteins, mycoproteins, algae proteins, or any combination thereof. In some embodiments, the edible composition comprises lactose (i.e., β-D-galactopyranosyl-(1→4)-D-glucose). In certain related aspects, the disclosure provides a method of enhancing the perceived creaminess of an edible composition, comprising introducing any of the flavor modifying compositions of the first aspect into the edible composition.
[0015] In an eighth aspect, the disclosure provides a use of any of the flavor modifying compositions of the first aspect to enhance the perceived fat sensation of an edible composition. In some embodiments, the edible composition is a flavored product, such as a food, beverage, oral care product, or animal feed product. In some embodiments, the edible composition comprises one or more dairy proteins. In some embodiments, the edible composition comprises one or more non-animal proteins, such as vegetable proteins, mycoproteins, algae proteins, or any combination thereof. In some embodiments, the edible composition comprises lactose (i.e., β-D-galactopyranosyl-(1→4)-D-glucose). In certain related aspects, the disclosure provides a method of enhancing the perceived fat sensation of an edible composition, comprising introducing any of the flavor modifying compositions of the first aspect into the edible composition.
[0016] In a ninth aspect, the disclosure provides a use of any of the flavor modifying compositions of the first aspect to increase or enhance the palatability (such as umami or kokumi) of an edible composition. In some embodiments, the edible composition is a flavored product, such as a food, beverage, oral care product, or animal feed product. In some embodiments, the edible composition comprises one or more dairy proteins. In some embodiments, the edible composition comprises one or more non-animal proteins, such as plant proteins, mycoproteins, algae proteins, or any combination thereof. In some embodiments, the edible composition comprises lactose (i.e., β-D-galactopyranosyl-(1→4)-D-glucose). In certain related aspects, the disclosure provides a method of increasing or enhancing the palatability (such as umami or kokumi) of an edible composition, comprising introducing any of the flavor modifying compositions of the first aspect into the edible composition.
[0017] In a tenth aspect, the disclosure provides a use of any of the flavor modifying compositions of the first aspect to enhance the mouthfeel or mouth spread of an edible composition. In some embodiments, the edible composition is a flavored product, such as a food, beverage, oral care product, or animal feed product. In some embodiments, the edible composition comprises one or more dairy proteins. In some embodiments, the edible composition comprises one or more non-animal proteins, such as vegetable proteins, mycoproteins, algae proteins, or any combination thereof. In some embodiments, the edible composition comprises lactose (i.e., β-D-galactopyranosyl-(1→4)-D-glucose). In certain related aspects, the disclosure provides a method of increasing the mouthfeel or mouth spread of an edible composition, comprising introducing any of the flavor modifying compositions of the first aspect into the edible composition.
[0018] In an eleventh aspect, the present disclosure provides a use of any of the flavor modifying compositions of the first aspect to enhance the perceived juiciness of an edible composition. In some embodiments, the edible composition is a flavored product, such as a food, beverage, oral care product, or animal feed product. In some embodiments, the edible composition comprises one or more dairy proteins. In some embodiments, the edible composition comprises one or more non-animal proteins, such as vegetable proteins, mycoproteins, algae proteins, or any combination thereof. In some embodiments, the edible composition comprises lactose (i.e., β-D-galactopyranosyl-(1→4)-D-glucose). In certain related aspects, the present disclosure provides a method of enhancing the perceived juiciness of an edible composition, comprising introducing any of the flavor modifying compositions of the first aspect into the edible composition.
[0019] In a twelfth aspect, the disclosure provides a use of any of the flavor modifying compositions of the first aspect to enhance the perceived richness of an edible composition. In some embodiments, the edible composition is a flavored product, such as a food, beverage, oral care product, or animal feed product. In some embodiments, the edible composition comprises one or more dairy proteins. In some embodiments, the edible composition comprises one or more non-animal proteins, such as vegetable proteins, mycoproteins, algae proteins, or any combination thereof. In some embodiments, the edible composition comprises lactose (i.e., β-D-galactopyranosyl-(1→4)-D-glucose). In certain related aspects, the disclosure provides a method of enhancing the perceived richness of an edible composition, comprising introducing any of the flavor modifying compositions of the first aspect into the edible composition.
[0020] In a thirteenth aspect, the present disclosure provides a use of any of the flavor modifying compositions of the first aspect to enhance the vanilla character of an edible composition. In some embodiments, the edible composition is a flavored product, such as a food, beverage, oral care product, or animal feed product. In some embodiments, the edible composition comprises one or more dairy proteins. In some embodiments, the edible composition comprises one or more non-animal proteins, such as vegetable proteins, mycoproteins, algae proteins, or any combination thereof. In some embodiments, the edible composition comprises lactose (i.e., β-D-galactopyranosyl-(1→4)-D-glucose). In certain related aspects, the present disclosure provides a method of enhancing the vanilla character of an edible composition, comprising introducing any of the flavor modifying compositions of the first aspect into the edible composition.
[0021] In a fourteenth aspect, the disclosure provides an edible composition comprising any of the flavor modified compositions of the first aspect. In some embodiments, the edible composition is a beverage product, such as a dairy product or a dairy-like product. In some other embodiments, the flavored product is a food product, such as a yogurt. In some embodiments, the flavored product is an animal food product, such as a cat food product or a dog food product. In some embodiments, the edible composition comprises one or more dairy proteins. In some embodiments, the edible composition comprises one or more non-animal proteins, such as a plant protein, a mycoprotein, an algae protein, or any combination thereof. In some embodiments, the edible composition comprises lactose (i.e., β-D-galactopyranosyl-(1→4)-D-glucose).
[0022] In a fifteenth aspect, the present disclosure provides a flavored product comprising any of the edible compositions of the fourteenth aspect. In some embodiments, the flavored product is a beverage product, such as a dairy product or a dairy-like product. In some other embodiments, the flavored product is a food product, such as a yogurt. In some embodiments, the flavored product is an animal food product, such as a cat food product or a dog food product. In some embodiments, the flavored product is an oral care product.
[0023] Further aspects and embodiments thereof are described in the following detailed description, summary, and claims.
[0024] The following drawings are provided for the purpose of illustrating various embodiments of the compositions and methods disclosed herein. The drawings are provided for illustrative purposes only and are not intended to illustrate preferred compositions or preferred methods or to serve as the basis for any limitation on the scope of the invention as recited in the claims. [Brief description of the drawings]
[0025] [Figure 1]1 shows the chemical structure of N-(1-((4-amino-2,2-dioxo-1H-benzo[c][1,2,6]thiadiazin-5-yl)oxy)-2-methylpropan-2-yl)isonicotinamide, which, along with its edible acceptable salts, may be suitably used in certain embodiments of the flavor modifying compositions disclosed herein.
[0026] Detailed Description The following detailed description describes various aspects and embodiments provided herein. This description should be read from the perspective of one skilled in the relevant art. As such, it may not necessarily contain information that is known to such a person skilled in the art.
[0027] definition The following terms and phrases have the meanings set forth below unless otherwise indicated herein. This disclosure may use other terms and phrases not expressly defined herein. Such other terms and phrases have the meanings they have to one of ordinary skill in the art within the context of this disclosure. In some cases, a term or phrase may be defined in the singular or plural. In such cases, it is understood that a singular term may include its plural counterpart and vice versa, unless expressly indicated otherwise.
[0028] As used herein, the terms "sweetener," "sweet flavoring agent," "sweet tastant," or "sweet compound" all refer to a compound or a edible acceptable salt thereof that produces a detectable sweet flavor in a subject, such as a compound that activates the human T1R2 or T1R3 receptor during in vivo screening, or a compound that is reported as sweet by a sensory test by a subject.
[0029] As used herein, the singular forms "a," "an," and "the" include plural referents unless the context clearly dictates otherwise. For example, reference to "a substituent" encompasses not only a single substituent, but two or more substituents, and so forth.
[0030] As used herein, "for example, for instance," "such as," or "including" are intended to introduce examples that further clarify a more general subject matter. Unless expressly indicated otherwise, such examples are provided only as an aid in understanding the embodiments set forth in the present disclosure and are not intended to be limiting in any way. Additionally, these phrases do not imply any kind of selection of the disclosed embodiments.
[0031] As used herein, "comprise" or "comprises" or "comprising" or "comprised of" refers to an open group. This means that the group may contain additional elements in addition to those explicitly listed. For example, the phrase "comprising A" means that A must be present, but other elements may also be present. The terms "comprise", "having", and "consisting of" and their grammatical variations have the same meaning. In contrast, "consist of" or "consists of" refers to a closed group. For example, the phrase "consisting of" means that A and only A are present.
[0032] As used herein, "optionally" means that the subsequently described event may or may not occur. In some embodiments, the optional event does not occur. In some other embodiments, the optional event occurs one or more times.
[0033] As used herein, "or" should be given its broadest reasonable interpretation and should not be limited to an either / or configuration. Thus, the phrase "comprising A or B" means that A can be present and B is not present, or B is present and A is not present, or both A and B are present. Furthermore, for example, if A defines a class that can have multiple elements, e.g., A1 and A2, one or more elements of the class can be present at the same time.
[0034] Other terms not included in this subsection are defined elsewhere in this specification.
[0035] Flavor modifying compositions In certain aspects, the present disclosure provides a flavor modifying composition comprising: (a) lactase; and (b) a sweetener, a sweetness enhancer, or a combination thereof.
[0036] The term "lactase" as used herein refers to any enzyme capable of hydrolyzing the disaccharide lactose into its constituent monosaccharides D-galactose and D-glucose. Any suitable lactase can be used, including, but not limited to, naturally occurring lactase, lactase from yeast extract, or any other such enzyme capable of hydrolyzing a quantity of lactose into its constituent monosaccharides. In some embodiments, the lactase is isolated from an organism, including a microorganism. In some such embodiments, the lactase is an intracellular component of a microorganism, such as Kluyveromyces and Bacillus. In some other embodiments, the lactase is a fungal lactase, such as lactase from Kluyveromyces, such as K. fragilis and K. lacti, and other fungi, such as Candida, Torula, and Torulopsis.
[0037] Such lactase preparations from such organisms are commercially available. For example, in some embodiments, LACTOZYM (Novozymes, Denmark), HA-Lactase (Chr. Hansen, Denmark), and MAXILACT (DSM, Netherlands), each produced from K. lactis, can be suitably used in the flavor modifying compositions described herein. In some other embodiments, SAPHERA (Novozymes, Denmark), GODO-YNL2 (DuPont, Wilmington, Del., US), and Lactase F100-SD (Amano) are used in the flavor modifying compositions disclosed herein. Other lactase preparations suitable for use in the flavor modifying compositions disclosed herein include the lactase preparations described in WO 2009 / 071539. In some other embodiments, the lactase preparations described in WO 2017 / 167848 are used in the flavor modifying compositions disclosed herein. In some further embodiments, lactase preparations described in WO 2017 / 167849 are used in the flavor modifying compositions disclosed herein.
[0038] In some embodiments, the flavor modifying composition comprises a sweetness enhancer. As used herein, the term "sweetness enhancer" refers to a compound that enhances the activation of a sweetener at the human T1R2 or T1R3 receptor during in vivo screening or that is reported to enhance the perceived sweetness of such a sweetener by subject sensory testing.
[0039] Any suitable sweetness enhancer can be used in the flavor modifying compositions disclosed herein, including synthetic sweetness enhancers, natural sweetness enhancers, or any combination thereof.
[0040] Examples of suitable synthetic sweetener enhancers include, but are not limited to, N-(1-((4-amino-2,2-dioxo-1H-benzo[c][1,2,6]thiadiazin-5-yl)oxy)-2-methylpropan-2-yl)isonicotinamide, or any edible acceptable salt thereof, or any of the compounds described in U.S. Pat. Nos. 8,541,421; 8,815,956; 9,834,544; 8,592,592; 8,877,922; 9,000,054; and 9,000,051, and U.S. Patent Application Publication No. 2017 / 0119032.
[0041] Suitable examples of natural sweetener enhancers include, but are not limited to, hesperetin dihydrochalcone, hesperetin dihydrochalcone-4'-O' glucoside, neohesperetin dihydrochalcone, brazzein, hesperidin, phyllodulcin, naringenin, naringin, phloretin, glucosylated steviol glycosides, (2R,3R)-3-acetoxy-5,7,4'-trihydroxyflavanone, (2R,3R)-3-acetoxy-5,7,3'-trihydroxy-4'-methoxyflavanone, rubusoside, thaumatin, monellin, miraculin, glycyrrhizin and its edible acceptable salts (such as the monoammonium salt), naringin dihydrochalcone, myricetin, nobiletin, polymethoxyflavones, mixed methoxy- and hydroxyflavones, quercetin, certain amino acids, and the like. As used herein, the term "glucosylated steviol glycosides" refers to the products of enzymatic glucosylation of natural steviol glycoside compounds. Glucosylation typically occurs through glycosidic linkages such as α-1,2, α-1,4, α-1,6, β-1,2, β-1,4, and β-1,6 linkages.
[0042] In some embodiments of any of the foregoing embodiments, the edible composition comprises 3-((4-amino-2,2-dioxo-1H-benzo[c][1,2,6]thiadiazin-5-yl)oxy)-2,2-dimethyl-N-propyl-propanamide, N-(1-((4-amino-2,2-dioxo-1H-benzo[c][1,2,6]-thiadiazin-5-yl)oxy)-2-methyl-propan-2-yl)isonicotinamide, or a edible acceptable salt thereof. In some embodiments, the flavor modified composition comprises N-(1-((4-amino-2,2-dioxo-1H-benzo[c][1,2,6]thiadiazin-5-yl)oxy)-2-methyl-propan-2-yl)isonicotinamide, or a edible acceptable salt thereof. In some embodiments, the flavor modifying composition comprises N-(1-((4-amino-2,2-dioxo-1H-benzo[c][1,2,6]thiadiazin-5-yl)oxy)-2-methyl-propan-2-yl)isonicotinamide, and 3-hydroxybenzoic acid.
[0043] The sweetness enhancer can be present in the flavor modifying composition in any suitable amount relative to the lactase, hi some embodiments, the weight ratio of lactase to sweetness enhancer in the flavor modifying composition ranges from 1:1 to 20:1, or from 1:1 to 10:1, or from 2:1 to 8:1.
[0044] In some embodiments, the flavor modifying composition comprises one or more sweeteners. Any suitable sweetener can be used, including caloric, low-calorie, or zero-calorie sweeteners. In some other embodiments, the sweetener can be omitted from the flavor modifying composition (and according to any of the above embodiments, a sweetness enhancer is present), and the sweetener is included in the edible composition of the flavored product into which the flavor modifying composition is introduced. Various embodiments of sweeteners are described in more detail below, which are incorporated herein by reference.
[0045] In embodiments in which a sweetener is present in the flavor modifying composition, the sweetener can have any suitable concentration relative to lactase. In embodiments in which the sweetener is a low calorie sweetener, the weight ratio of sweetener to lactase ranges from 10:1 to 500:1, or from 20:1 to 300:1. Any low intensity sweetener (or combination of sweeteners) can be used. Non-limiting examples include sucrose, fructose, high fructose corn syrup, D-glucose, lactose, D-galactose, and maltose. In some embodiments, the sweetener is sucrose. In some embodiments, the sweetener is fructose.
[0046] In embodiments where the sweetener is a low-intensity low-calorie sweetener, the weight ratio of sweetener to lactase ranges from 10:1 to 500:1, or from 20:1 to 300:1. Any low-intensity low-calorie sweetener (or combination of sweeteners) can be used alone or in combination with a caloric or high-intensity sweetener. Non-limiting examples include erythritol, allulose, xylitol, sorbitol, tagatose, mannitol, maltitol, lactitol, and isomalt.
[0047] In embodiments where the sweetener is a high intensity sweetener, the weight ratio of sweetener to lactase ranges from 1:20 to 2:1, or from 1:10 to 1:1. Any high intensity sweetener (or combination of sweeteners) can be used, either alone or in combination with a caloric or high intensity sweetener. Non-limiting examples include acesulfame potassium, aspartame, neotame, cyclamate, saccharin, sucralose, steviol glycosides (such as rebaudioside A, rebaudioside M, rebaudioside D, rebaudioside E, and any combination thereof), and mogrosides (mogroside III, mogroside IV, mogroside V, siamenoside I, isomogroside V, mogroside IV, siamenoside I, isomogroside V, mogroside IV, siamenoside V, siamenoside I, isomogroside V, siameno ... E , Isomogroside IV, Mogroside III EIn some embodiments, the sweetener is a steviol glycoside, such as rebaudioside A or rebaudioside M. In some embodiments, the flavor modifying composition comprises sucralose. In some other embodiments, the flavor modifying composition comprises a mogroside, such as mogroside V, isomogroside V, siamenoside I, or the 1,6-α isomer of siamenoside I.
[0048] In some embodiments, the flavor modifying composition comprises a flavoring substance that, when present, improves the taste and flavor of the edible composition or the resulting flavored product in which the edible composition is used. Such improvements include reducing the bitterness of the edible composition or resulting flavored product, reducing the perception of a grassy taste note (such as a pea note) in the edible composition or resulting flavored product, reducing the perception of a grain note in the edible composition or resulting flavored product, improving the perception of creaminess in the edible composition or resulting flavored product, improving the perception of creaminess in the edible composition or resulting flavored product, improving the perception of fattiness in the edible composition or resulting flavored product, improving the perception of sweetness in the edible composition or resulting flavored product, improving the perception of savory taste (such as umami or kokumi) in the edible composition, improving the mouthfeel or mouth spread of the edible composition or resulting flavored product, improving the perception of juiciness in the edible composition or resulting flavored product, improving the perception of richness in the edible composition or resulting flavored product, improving the vanilla character in the edible composition or resulting flavored product, or any combination thereof.
[0049] Any suitable flavoring material can be used. In some embodiments, the flavoring material includes synthetic flavor oils and flavoring aromatics or oils, oleoresins, and extracts derived from plants, leaves, flowers, fruits, etc., or combinations thereof. Non-limiting examples of flavoring oils include spearmint oil, cinnamon oil, wintergreen oil (methyl salicylate), peppermint oil, Japanese mint oil, clove oil, bay oil, anise oil, eucalyptus oil, thyme oil, cedar leaf oil, nutmeg oil, allspice, sage oil, mace, bitter almond oil, and cassia oil. Non-limiting examples of other flavors include natural and artificial fruit flavors such as vanilla, and citrus oils such as lemon, orange, lime, grapefruit, yazu, sudachi, and the like, and fruit essences such as apple, pear, peach, grape, blueberry, strawberry, raspberry, cherry, plum, pineapple, watermelon, apricot, banana, melon, apricot, plum, cherry, raspberry, blackberry, tropical fruits, mango, mangosteen, pomegranate, papaya, and the like.Other promising flavors include milk flavors, butter flavors, cheese flavors, cream flavors, and yogurt flavors; vanilla flavors; tea or coffee flavors, such as green tea flavors, oolong tea flavors, tea flavors, cocoa flavors, chocolate flavors, and coffee flavors; mint flavors, such as peppermint flavors, spearmint flavors, and Japanese mint flavors; asafoetida flavors, ajowan flavors, anise flavors, angelica flavors, fennel flavors, allspice flavors, cinnamon flavors, chamomile flavors, mustard flavors, cardamom flavors, caraway flavors, cumin flavors, clove flavors, pepper flavors, coriander flavors, sassafras flavors, savory flavors, pepper flavors, perilla flavors, juniper berry flavors, ginger flavors, star anise flavors, horseradish flavors, thyme flavors, tarragon flavors, dill flavors, chili flavors, nutmeg flavors, basil flavors, marjoram flavors, rosemary flavors, bay leaf flavors, and wasabi (Japanese These flavoring agents include spicy flavors such as horseradish flavors; alcohol flavors such as wine flavors, whiskey flavors, brandy flavors, rum flavors, gin flavors, and liqueur flavors; floral flavors; and vegetable flavors such as onion flavor, garlic flavor, cabbage flavor, carrot flavor, celery flavor, mushroom flavor, and tomato flavor. These flavoring agents can be used in liquid or solid form and can be used separately or in admixture.The flavoring agents most commonly used in connection with dairy or dairy-like products are those flavoring substances such as vanilla, French vanilla, chocolate, banana, lemon, hazelnut, coconut, almond, strawberry, mocha, coffee, tea, chai, cinnamon, caramel, cream, brown sugar, toffee, pecan, butter pecan, toffee, Irish cream, white chocolate, raspberry, pumpkin pie spice, peppermint, or combinations thereof.
[0050] In some embodiments, the flavor modifying composition comprises vanillin or a vanillin analogue that imparts a vanilla flavor to the flavored substance, hi some further embodiments, the flavor modifying composition comprises one or more lactones that impart a creamy flavor to the flavored substance.
[0051] In some embodiments, the flavor modifying composition comprises a yeast extract, such as a yeast lysate. Such an extract may be obtained from any suitable yeast strain, and such an extract is suitable for human consumption. Non-limiting examples of such yeasts include yeasts of the genus Saccharomyces, such as Saccharomyces cerevisiae or Saccharomyces pastorianus; yeasts of the genus Candida, such as Candida utilis; yeasts of the genus Kluyveromyces, such as Kluyveromyces lactis or Kluyveromyces marxianus; yeasts of the genus Pichia, such as Pichia pastoris; yeasts of the genus Debaryomyces, such as Debaryomyces hansenii. hansenii); and yeast of the genus Zygosaccharomyces, such as Zygosaccharomyces mellis. In some embodiments, the yeast is a yeast harvested after brewing beer, sake, or the like. In some embodiments, the yeast is a yeast that has been dried after harvesting (dried yeast).
[0052] Such extracts can be produced by any suitable means. Typically, yeast extracts or lysates are produced by extracting the contents of yeast cells from cell wall material. In many cases, intracellular digestive enzymes (or additional enzymes added to the composition) break down proteins and polynucleotides in the yeast into amino acids, oligopeptides (e.g., 2-10 peptides), nucleotides, oligonucleotides (2-10 peptides), and mixtures thereof. Yeast lysates can be prepared by lysing yeast. For example, in some embodiments, yeast after culture is disrupted or lysed by enzymatic degradation, autolysis, alkaline extraction, hot water extraction, acid degradation, ultrasonic disruption, homogenizer disruption, freeze-thawing, or the like (two or more of these may be used in combination), thereby obtaining yeast lysates. Yeast can be cultured by conventional methods. In some embodiments, yeast after culture is heat-treated and then treated with lytic enzymes to obtain enzymatic lysates. The heat treatment conditions are, for example, 80°C to 90°C for 5 to 30 minutes. As the lytic enzyme used in the enzymatic decomposition method, various enzymes can be used as long as they can dissolve the cell wall of yeast. The reaction conditions can be set to be optimal or appropriate for the lytic enzyme used, and specific examples include a temperature of 50°C to 60°C and a pH of 7.0 to 8.0. The reaction time is not particularly limited, and can be, for example, 3 to 5 hours.
[0053] Compositions comprising yeast lysate can be obtained from a variety of commercial sources, for example, in some embodiments, the yeast lysate is provided by a flavoring agent sold under the name MODUMAX (DSM Food Specialties BV, Delft, Netherlands).
[0054] In some further embodiments, the flavor modifying composition comprises one or more umami enhancing compounds. Such umami enhancing compounds include, but are not limited to, naturally occurring compounds or synthetic compounds, such as any of the compounds described in U.S. Pat. Nos. 8,735,081; 8,124,121; and 8,968,708. In some embodiments, the umami enhancing compound is (2R,4R)-1,2,4-trihydroxy-heptadec-16-ene, (2R,4R)-1,2,4-trihydroxyheptadec-16-yne, or a mixture thereof. In some embodiments, the umami enhancing compound is (3R,5S)-1-(4-hydroxy-3-methoxyphenyl)decane-3,5-diol diacetate. In some embodiments, the umami enhancing compound is N-(heptan-4-yl)benzo-[d][1,3]dioxole-5-carboxamide.
[0055] In some further embodiments, the flavor modifying composition comprises one or more cooling enhancing compounds, including, but not limited to, naturally occurring compounds such as menthol or analogs thereof, or synthetic compounds such as any of the compounds described in U.S. Patent Nos. 9,394,287 and 10,421,727.
[0056] In some further embodiments, the flavor modifying composition comprises one or more bitterness-blocking compounds. Such bitterness-blocking compounds include, but are not limited to, naturally occurring compounds such as menthol or its analogs, or synthetic compounds such as any of the compounds described in U.S. Pat. Nos. 8,076,491; 8,445,692; and 9,247,759. In some embodiments, the bitterness-blocking compound is 3-(1-((3,5-dimethylisoxazol-4-yl)-methyl)-1H-pyrazol-4-yl)-1-(3-hydroxybenzyl)-imidazolidine-2,4-dione.
[0057] In some further embodiments, the flavor modifying composition comprises one or more sourness modulating compounds.
[0058] In some further embodiments, the flavor modifying composition comprises one or more mouthfeel modifying compounds, including, but not limited to, tannins, cellulosic materials, bamboo flour, and the like.
[0059] In some further embodiments, the flavor modifying composition comprises one or more flavor masking compounds, including, but not limited to, cellulosic substances, substances extracted from fungi, substances extracted from plants, citric acid, carbonic acid (or carbonate salts), and the like.
[0060] In some embodiments, the flavor modifying compounds described above are included to improve other tastants that may be present in the edible composition itself or that may be included in a flavored product using such a composition, including sweeteners, umami tastants, body tastants, bitter tastants, sour tastants, and the like.
[0061] Uses and Methods In certain aspects, the disclosure provides the use of any of the flavor modifying compositions described above to increase or enhance the sweetness of an edible composition. In some embodiments, the edible composition is a flavored product, such as a food, beverage, oral care product, or animal feed product. In some embodiments, the edible composition comprises one or more dairy proteins. In some embodiments, the edible composition comprises one or more non-animal proteins, such as vegetable proteins, mycoproteins, algae proteins, or any combination thereof. In some embodiments, the edible composition comprises lactose (i.e., β-D-galactopyranosyl-(1→4)-D-glucose). In certain related aspects, the disclosure provides a method of increasing or enhancing the sweetness of an edible composition, comprising introducing any of the flavor modifying compositions described above into the edible composition.
[0062] In certain aspects, the disclosure provides the use of any of the flavor modifying compositions described above to reduce or block the bitter taste of an edible composition. In some embodiments, the edible composition is a flavored product, such as a food, beverage, oral care product, or animal feed product. In some embodiments, the edible composition comprises one or more dairy proteins. In some embodiments, the edible composition comprises one or more non-animal proteins, such as vegetable proteins, mycoproteins, algae proteins, or any combination thereof. In some embodiments, the edible composition comprises lactose (i.e., β-D-galactopyranosyl-(1→4)-D-glucose). In certain related aspects, the disclosure provides a method of reducing or blocking the sweet taste of an edible composition, comprising introducing any of the flavor modifying compositions described above into the edible composition.
[0063] In certain aspects, the disclosure provides the use of any of the flavor modifying compositions described above to reduce the perceived astringency of an edible composition. In some embodiments, the edible composition is a flavored product, such as a food, beverage, oral care product, or animal feed product. In some embodiments, the edible composition comprises one or more dairy proteins. In some embodiments, the edible composition comprises one or more non-animal proteins, such as vegetable proteins, mycoproteins, algae proteins, or any combination thereof. In some embodiments, the edible composition comprises lactose (i.e., β-D-galactopyranosyl-(1→4)-D-glucose). In certain related aspects, the disclosure provides a method of reducing the perceived astringency of an edible composition, comprising introducing any of the flavor modifying compositions described above into the edible composition.
[0064] In certain aspects, the disclosure provides the use of any of the flavor modifying compositions described above to reduce the perception of grassy taste notes (e.g., pea notes) in an edible composition. In some embodiments, the edible composition is a flavored product, such as a food, beverage, oral care product, or animal feed product. In some embodiments, the edible composition comprises one or more dairy proteins. In some embodiments, the edible composition comprises one or more non-animal proteins, such as vegetable proteins, mycoproteins, algae proteins, or any combination thereof. In some embodiments, the edible composition comprises lactose (i.e., β-D-galactopyranosyl-(1→4)-D-glucose). In certain related aspects, the disclosure provides a method of reducing the perception of grassy taste notes (e.g., pea notes) in an edible composition, comprising introducing any of the flavor modifying compositions described above into the edible composition.
[0065] In certain aspects, the disclosure provides the use of any of the flavor modifying compositions described above to reduce the perception of cereal taste notes in an edible composition. In some embodiments, the edible composition is a flavored product, such as a food, beverage, oral care product, or animal feed product. In some embodiments, the edible composition comprises one or more dairy proteins. In some embodiments, the edible composition comprises one or more non-animal proteins, such as vegetable proteins, mycoproteins, algae proteins, or any combination thereof. In some embodiments, the edible composition comprises lactose (i.e., β-D-galactopyranosyl-(1→4)-D-glucose). In certain related aspects, the disclosure provides a method of reducing the perception of cereal taste notes in an edible composition, comprising introducing any of the flavor modifying compositions described above into the edible composition.
[0066] In certain aspects, the present disclosure provides the use of any of the flavor modifying compositions described above to enhance the perceived creaminess of an edible composition. In some embodiments, the edible composition is a flavored product, such as a food, beverage, oral care product, or animal feed product. In some embodiments, the edible composition comprises one or more dairy proteins. In some embodiments, the edible composition comprises one or more non-animal proteins, such as vegetable proteins, mycoproteins, algae proteins, or any combination thereof. In some embodiments, the edible composition comprises lactose (i.e., β-D-galactopyranosyl-(1→4)-D-glucose). In certain related aspects, the present disclosure provides a method of enhancing the perceived creaminess of an edible composition, comprising introducing any of the flavor modifying compositions described above into the edible composition.
[0067] In certain aspects, the disclosure provides the use of any of the flavor modifying compositions described above to enhance the perceived fat sensation of an edible composition. In some embodiments, the edible composition is a flavored product, such as a food, beverage, oral care product, or animal feed product. In some embodiments, the edible composition comprises one or more dairy proteins. In some embodiments, the edible composition comprises one or more non-animal proteins, such as vegetable proteins, mycoproteins, algae proteins, or any combination thereof. In some embodiments, the edible composition comprises lactose (i.e., β-D-galactopyranosyl-(1→4)-D-glucose). In certain related aspects, the disclosure provides a method of enhancing the perceived fat sensation of an edible composition, comprising introducing any of the flavor modifying compositions described above into the edible composition.
[0068] In certain aspects, the disclosure provides for the use of any of the flavor modifying compositions described above to increase or enhance the palatability (such as umami or kokumi) of an edible composition. In some embodiments, the edible composition is a flavored product, such as a food, beverage, oral care product, or animal feed product. In some embodiments, the edible composition comprises one or more dairy proteins. In some embodiments, the edible composition comprises one or more non-animal proteins, such as plant proteins, mycoproteins, algae proteins, or any combination thereof. In some embodiments, the edible composition comprises lactose (i.e., β-D-galactopyranosyl-(1→4)-D-glucose). In certain related aspects, the disclosure provides for a method of increasing or enhancing the palatability (such as umami or kokumi) of an edible composition, comprising introducing any of the flavor modifying compositions described above into the edible composition.
[0069] In certain aspects, the disclosure provides the use of any of the flavor modifying compositions described above to enhance the mouthfeel or mouth spread of an edible composition. In some embodiments, the edible composition is a flavored product, such as a food, beverage, oral care product, or animal feed product. In some embodiments, the edible composition comprises one or more dairy proteins. In some embodiments, the edible composition comprises one or more non-animal proteins, such as vegetable proteins, mycoproteins, algae proteins, or any combination thereof. In some embodiments, the edible composition comprises lactose (i.e., β-D-galactopyranosyl-(1→4)-D-glucose). In certain related aspects, the disclosure provides a method of increasing the mouthfeel or mouth spread of an edible composition, comprising introducing any of the flavor modifying compositions described above into the edible composition.
[0070] In certain aspects, the disclosure provides the use of any of the flavor modifying compositions described above to enhance the perceived juiciness of an edible composition. In some embodiments, the edible composition is a flavored product, such as a food, beverage, oral care product, or animal feed product. In some embodiments, the edible composition comprises one or more dairy proteins. In some embodiments, the edible composition comprises one or more non-animal proteins, such as vegetable proteins, mycoproteins, algae proteins, or any combination thereof. In some embodiments, the edible composition comprises lactose (i.e., β-D-galactopyranosyl-(1→4)-D-glucose). In certain related aspects, the disclosure provides a method of enhancing the perceived juiciness of an edible composition, comprising introducing any of the flavor modifying compositions described above into the edible composition.
[0071] In certain aspects, the disclosure provides the use of any of the flavor modifying compositions described above to enhance the perceived richness of an edible composition. In some embodiments, the edible composition is a flavored product, such as a food, beverage, oral care product, or animal feed product. In some embodiments, the edible composition comprises one or more dairy proteins. In some embodiments, the edible composition comprises one or more non-animal proteins, such as vegetable proteins, mycoproteins, algae proteins, or any combination thereof. In some embodiments, the edible composition comprises lactose (i.e., β-D-galactopyranosyl-(1→4)-D-glucose). In certain related aspects, the disclosure provides a method of enhancing the perceived richness of an edible composition, comprising introducing any of the flavor modifying compositions of the first aspect into the edible composition.
[0072] In certain aspects, the disclosure provides the use of any of the flavor modifying compositions described above to enhance the vanilla character of an edible composition. In some embodiments, the edible composition is a flavored product, such as a food, beverage, oral care product, or animal feed product. In some embodiments, the edible composition comprises one or more dairy proteins. In some embodiments, the edible composition comprises one or more non-animal proteins, such as vegetable proteins, mycoproteins, algae proteins, or any combination thereof. In some embodiments, the edible composition comprises lactose (i.e., β-D-galactopyranosyl-(1→4)-D-glucose). In certain related aspects, the disclosure provides a method of enhancing the vanilla character of an edible composition, comprising introducing any of the flavor modifying compositions described above into the edible composition.
[0073] The edible compositions recited in the above aspects and embodiments of the uses and methods may include many other features, as described in more detail below.
[0074] edible composition The edible compositions disclosed herein include flavor modifying compositions according to any of the above aspects and embodiments. Generally, the flavoring substances improve the taste and flavor of the edible composition or the resulting flavored product in which the edible composition is used. Such improvements include reducing the bitterness of the edible composition or resulting flavored product, reducing the astringency of the edible composition or resulting flavored product, reducing the perception of a grassy taste note (such as a pea note) in the edible composition or resulting flavored product, reducing the perception of a grain note in the edible composition or resulting flavored product, improving the perception of creaminess in the edible composition or resulting flavored product, improving the perception of creaminess in the edible composition or resulting flavored product, improving the perception of fattiness in the edible composition or resulting flavored product, improving the perception of sweetness in the edible composition or resulting flavored product, improving the perception of savory taste (such as umami or kokumi) in the edible composition, improving the mouthfeel or mouth spread of the edible composition or resulting flavored product, improving the perception of juiciness in the edible composition or resulting flavored product, improving the perception of richness in the edible composition or resulting flavored product, improving the vanilla character in the edible composition or resulting flavored product, or any combination thereof.
[0075] In some embodiments, the edible composition comprises additional flavoring substances. Any suitable flavoring substances can be used. In some embodiments, such flavoring substances include synthetic flavor oils and flavoring aromatic substances or oils, oleoresins, and extracts derived from plants, leaves, flowers, fruits, etc., or combinations thereof. Non-limiting examples of flavoring oils include spearmint oil, cinnamon oil, wintergreen oil (methyl salicylate), peppermint oil, Japanese mint oil, clove oil, bay oil, anise oil, eucalyptus oil, thyme oil, cedar leaf oil, nutmeg oil, allspice, sage oil, mace, bitter almond oil, and cassia oil. Non-limiting examples of other flavors include natural and artificial fruit flavors such as vanilla, and citrus oils such as lemon, orange, lime, grapefruit, yazu, sudachi, and the like, and fruit essences such as apple, pear, peach, grape, blueberry, strawberry, raspberry, cherry, plum, pineapple, watermelon, apricot, banana, melon, apricot, plum, cherry, raspberry, blackberry, tropical fruits, mango, mangosteen, pomegranate, papaya, and the like.Other promising flavors include milk flavors, butter flavors, cheese flavors, cream flavors, and yogurt flavors; vanilla flavors; tea or coffee flavors, such as green tea flavors, oolong tea flavors, tea flavors, cocoa flavors, chocolate flavors, and coffee flavors; mint flavors, such as peppermint flavors, spearmint flavors, and Japanese mint flavors; asafoetida flavors, ajowan flavors, anise flavors, angelica flavors, fennel flavors, allspice flavors, cinnamon flavors, chamomile flavors, mustard flavors, cardamom flavors, caraway flavors, cumin flavors, clove flavors, pepper flavors, coriander flavors, sassafras flavors, savory flavors, pepper flavors, perilla flavors, juniper berry flavors, ginger flavors, star anise flavors, horseradish flavors, thyme flavors, tarragon flavors, dill flavors, chili flavors, nutmeg flavors, basil flavors, marjoram flavors, rosemary flavors, bay leaf flavors, and wasabi (Japanese These flavoring agents include spicy flavors such as spice flavors, horseradish flavors, alcohol flavors such as wine flavors, whiskey flavors, brandy flavors, rum flavors, gin flavors, and liqueur flavors, floral flavors, and vegetable flavors such as onion flavor, garlic flavor, cabbage flavor, carrot flavor, celery flavor, mushroom flavor, and tomato flavor. These flavoring agents can be used in liquid or solid form and can be used separately or mixed.The flavoring agents most commonly used in connection with dairy or dairy-like products are those flavoring substances such as vanilla, French vanilla, chocolate, banana, lemon, hazelnut, coconut, almond, strawberry, mocha, coffee, tea, chai, cinnamon, caramel, cream, brown sugar, toffee, pecan, butter pecan, toffee, Irish cream, white chocolate, raspberry, pumpkin pie spice, peppermint, or combinations thereof.
[0076] In some embodiments, the edible composition comprises a non-meat animal protein, such as a milk protein or a protein derived from bone broth. Such proteins may impart flavors that are not desired by consumers in such products. This is particularly true for protein isolates, such as whey protein, collagen protein, casein protein, and the like. Thus, the flavor modifying composition of the above-mentioned aspects can be used to improve the flavor of edible compositions that include such proteins. In some embodiments, the non-meat animal protein is a bone protein, such as a collagen protein derived from the bones of animals such as cows, pigs, donkeys, horses, chickens, ducks, goats, geese, rabbits, lambs, sheep, buffalo, ostriches, camels, and the like. In some embodiments, the non-meat animal protein is a milk protein, such as whey protein, casein protein, or any combination thereof. The milk may be from any suitable animal, such as cows, donkeys, horses, sheep, buffalo, camels, and the like.
[0077] The edible compositions disclosed herein may also be incorporated into certain food or beverage products that contain milk or ingredients derived from milk, such as cheese, cheese spreads, yogurt, kefir, milk, processed dairy products, cottage cheese, sour cream, butter, and the like.
[0078] In some other embodiments, the edible composition comprises non-animal protein, such as vegetable protein, algae protein, or mycoprotein. In some embodiments, the edible composition comprises plant-based protein. Non-limiting examples of vegetable protein include pea protein, soy protein, almond protein, cashew protein, canola (rapeseed) protein, chickpea protein, fava bean protein, sunflower protein, wheat protein, oat protein, and potato protein.
[0079] The flavored product comprising such non-animal proteins may be any suitable product. In some embodiments, the flavored product is a beverage, such as soy milk, almond milk, rice milk, coconut milk, oat milk, protein drinks, meal replacement drinks, dairy-free yogurt or kefir products, etc. In some cases, such products are designed to mimic dairy products and may be referred to as dairy analogs. In some other embodiments, the flavored product is a meat replacement product, such as a plant-based chicken product (such as a plant-based chicken nugget), a plant-based beef product (such as a plant-based burger), etc. In some other embodiments, the flavored product is a protein powder, a meal replacement powder, a plant-based creamer for coffee or tea, etc. In certain further embodiments, any such product includes additional ingredients and has additional characteristics, as typically used in the preparation and / or manufacture of such products.
[0080] For edible compositions that include any of the above proteins, the protein can be present in the edible composition in any suitable ratio relative to the lactase in the flavor modifying composition. For example, in some embodiments, the weight ratio of non-meat animal protein or non-animal protein to lactase introduced into the edible composition ranges from 10:1 to 500:1, or from 20:1 to 200:1, or from 30:1 to 150:1.
[0081] In some embodiments, the edible composition comprises hydrocolloids and other fiber blends that impart texture and thickening properties to the resulting flavored product. As used herein, the term "hydrocolloid" refers to a material that is colloidally dispersible in water, meaning that they form a colloidal suspension in water. In most cases, when such hydrocolloids are dispersed in water, they do not settle and cannot be separated from the water by filtration. Hydrocolloids can include plant-based fibers, other non-animal derived (plant, algae, or fungal) polysaccharides, and polypeptides. Examples of hydrocolloids are pectin, cellulose ethers, carrageenan, guar gum, gelatin, alginates, gum arabic, psyllium husk fiber (or gum), xanthan gum, locust bean gum, cellulose, cellulose derivatives (methylcellulose, carboxymethylcellulose, hydroxypropylmethylcellulose, etc.), chitosan, dextran, maltodextrin, inulin, n-octenyl succinic anhydride, tara gum, glucomannan, galactomannan, tragacanth gum, microbial polysaccharides, proteins derived from microorganisms, etc. In some embodiments, the hydrocolloid is a polysaccharide. In some other embodiments, the hydrocolloid is a protein. In some embodiments, the hydrocolloid is psyllium husk fiber. In some embodiments, the hydrocolloid comprises psyllium husk fiber in combination with one or more other hydrocolloids as described above.
[0082] The hydrocolloid can comprise any suitable percentage of the fiber content in the edible composition. For example, in some embodiments, the fiber blend comprises 10 to 70 weight percent, or 20 to 60 weight percent, or 30 to 50 weight percent, or 35 to 45 weight percent psyllium fiber, based on the total weight of the fiber blend in the edible composition.
[0083] In some embodiments, the fiber blend also includes insoluble fiber. Generally, the insoluble fiber remains suspended in the hydrocolloid matrix when the fiber blend is placed in water at 25° C. and atmospheric pressure for, for example, at least 2 days, or at least 3 days, or at least 4 days, or at least 5 days, or at least 6 days, or at least 7 days.
[0084] Any suitable insoluble fiber can be used. In some embodiments, the insoluble fiber is a vegetable-derived fiber. Non-limiting examples include nut fiber, cereal fiber, rice fiber, seed fiber, oat fiber, pea fiber, potato fiber, berry fiber, soy fiber, banana fiber, citrus fiber, apple fiber, and carrot fiber. In some embodiments, the insoluble fiber is pea fiber. The insoluble fiber can comprise any suitable percentage of the fiber blend. For example, in some embodiments, the fiber blend comprises 30 weight percent to 90 weight percent, or 40 weight percent to 80 weight percent, or 50 weight percent to 70 weight percent, or 55 weight percent to 65 weight percent, based on the total weight of the fiber blend in the edible composition.
[0085] In some embodiments, the fiber blend includes a cross-linking agent to form the hydrocolloid into a three-dimensional network structure. Non-limiting examples of suitable cross-linking agents include calcium chloride, calcium sulfate, calcium nitrate, zinc nitrate, zinc chloride, zinc sulfate, ammonium persulfate, and glutaraldehyde.
[0086] In some embodiments, the fiber blend includes 35 to 45 weight percent psyllium fiber (or gum) and 55 to 65 weight percent pea fiber, all based on the total weight of the composition, in some further embodiments thereof, the fiber blend includes 5 weight percent or less, or 4 weight percent or less, or 3 weight percent or less, or 2 weight percent or less, or 1 weight percent or less of another insoluble fiber other than pea fiber.
[0087] In some embodiments, the edible composition or resulting flavored product includes a sweetener. The sweetener can be present in any suitable concentration, depending on factors such as the effectiveness of the sweetener as a sweetener and its solubility. For example, in some embodiments, the sweetener is present in an amount of 0.1 weight percent to 12 weight percent. In some embodiments, the sweetener is present in an amount of 0.2 weight percent to 10 weight percent. In some embodiments, the sweetener is present in an amount of 0.3 weight percent to 8 weight percent. In some embodiments, the sweetener is present in an amount of 0.4 weight percent to 6 weight percent. In some embodiments, the sweetener is present in an amount of 0.5 weight percent to 5 weight percent. In some embodiments, the sweetener is present in an amount of 1 weight percent to 2 weight percent. In some embodiments, the sweetener is present in an amount of 0.1 weight percent to 5 weight percent. In some embodiments, the sweetener is present in an amount of 0.1 weight percent to 4 weight percent. In some embodiments, the sweetener is present in an amount of 0.1 weight percent to 3 weight percent. In some embodiments, the sweetener is present in an amount of 0.1% to 2% by weight. In some embodiments, the sweetener is present in an amount of 0.1% to 1% by weight. In some embodiments, the sweetener is present in an amount of 0.1% to 0.5% by weight. In some embodiments, the sweetener is present in an amount of 0.5% to 10% by weight. In some embodiments, the sweetener is present in an amount of 2% to 8% by weight. In some further embodiments of the embodiments described in this paragraph, the additional sweetener is sucrose, fructose (such as high fructose corn syrup or fruit juice), glucose, xylitol, erythritol, glucose, allulose, or any combination thereof. In some embodiments, the sweetener is sucrose.
[0088] In some alternative embodiments, the sweetener is present in an amount ranging from 10 ppm to 1000 ppm. In some embodiments, the sweetener is present in an amount of 20 ppm to 800 ppm. In some embodiments, the sweetener is present in an amount of 30 ppm to 600 ppm. In some embodiments, the sweetener is present in an amount of 40 ppm to 500 ppm. In some embodiments, the sweetener is present in an amount of 50 ppm to 400 ppm. In some embodiments, the sweetener is present in an amount of 50 ppm to 300 ppm. In some embodiments, the sweetener is present in an amount of 50 ppm to 200 ppm. In some embodiments, the sweetener is present in an amount of 50 ppm to 150 ppm. In some further embodiments of the embodiments described in this paragraph, the additional sweetener is a steviol glycoside (such as rebaudioside A, rebaudioside M, rebaudioside D, rebaudioside E, rebaudioside M, and any combination thereof), a mogroside (such as mogroside III, mogroside IV, mogroside V, siamenoside I, isomogroside V, mogroside IV, E , Isomogroside IV, Mogroside III E , 11-oxomogroside V, 1,6-α isomer of siamenoside I, and any combination thereof), a derivative of any of the above, such as a glycoside derivative (e.g., glucosylates), cyclamate, aspartame, sucralose, acesulfame K, or any combination thereof.
[0089] Generally, edible compositions and flavored products may contain any suitable sweetener or combination of sweeteners. In some embodiments, the sweetener is a sweetener composition that includes common saccharide sweeteners such as sucrose, fructose, glucose, and natural sugars such as corn syrup (including high fructose corn syrup) or other syrups or sweetener concentrates derived from natural fruit-based and vegetable-based raw materials. In some embodiments, the sweetener is sucrose, fructose, or a combination thereof. In some embodiments, the sweetener is sucrose. In some other embodiments, the sweetener is selected from natural rare sugars including D-allose, D-psicose, L-ribose, D-tagatose, L-glucose, L-fucose, L-albinose, D-turanose, and D-leucrose. In some embodiments, the sweetener is selected from semi-synthetic "sugar alcohol" sweeteners such as erythritol, isomalt, lactitol, mannitol, sorbitol, xylitol, maltodextrin, etc. In some embodiments, the sweetener is selected from artificial sweeteners such as aspartame, saccharin, acesulfame-K, cyclamate, sucralose, and alitame. In some embodiments, the sweetener is selected from the group consisting of cyclamic acid, mogrosides, tagatose, maltose, galactose, mannose, sucrose, fructose, lactose, neotame and other aspartame derivatives, glucose, D-tryptophan, glycine, maltitol, lactitol, isomalt, hydrogenated glucose syrup (HGS), hydrogenated starch hydrolysates (HSH), stevioside, rebaudioside A, other sweet stevia-based glycosides, chemically modified steviol glycosides (such as glucosylated steviol glycosides), mogrosides, chemically modified mogrosides (such as glucosylated mogrosides), karela, and other guanidine-based sweeteners. In some embodiments, the additional sweetener is a combination of two or more of the sweeteners described in this paragraph. In some embodiments, the sweetener may be a combination of two, three, four, or five sweeteners disclosed herein. In some embodiments, the additional sweetener may be a sugar.In some embodiments, the additional sweetener is a combination of one or more sugars and other natural and artificial sweeteners. In some embodiments, the additional sweetener is sugar. In some embodiments, the additional sugar is cane sugar. In some embodiments, the sugar is beet sugar. In some embodiments, the sugar may be sucrose, fructose, glucose, or a combination thereof. In some embodiments, the sugar is sucrose. In some embodiments, the sugar is a combination of fructose and glucose.
[0090] In some embodiments, the sweetener may also include a sweetener composition comprising one or more natural or synthetic carbohydrates, such as, for example, corn syrup, high fructose corn syrup, high maltose corn syrup, glucose syrup, sucralose syrup, hydrogenated glucose syrup (HGS), hydrogenated starch hydrolysates (HSH), or other syrups or sweetener concentrates derived from natural fruit- or vegetable-based sources, or semi-synthetic "sugar alcohol" sweeteners such as polyols. Non-limiting examples of polyols in some embodiments include erythritol, maltitol, mannitol, sorbitol, lactitol, xylitol, isomalt, propylene glycol, glycerol (glycerin), threitol, galactitol, palatinose, reduced isomaltooligosaccharides, reduced xylooligosaccharides, reduced gentiooligosaccharides, reduced maltose syrup, reduced glucose syrup, isomaltulose, maltodextrin, and the like, as well as sugar alcohols, or any other carbohydrate that can be reduced without adversely affecting the taste, or combinations thereof.
[0091] Sweeteners include, but are not limited to, agave inulin, agave nectar, agave syrup, amazake, brazzein, brown rice syrup, coconut crystals, coconut sugar, coconut syrup, date sugar, fructans (also called inulin fiber, fructooligosaccharides, or oligofructose), green stevia powder, stevia rebaudiana, rebaudioside A, rebaudioside B, rebaudioside C, rebaudioside D, rebaudioside E, rebaudioside F, rebaudioside G, rebaudioside I ... Rebaudioside F, Rebaudioside I, Rebaudioside H, Rebaudioside L, Rebaudioside K, Rebaudioside J, Rebaudioside N, Rebaudioside O, Rebaudioside M, and other sweet stevia-based glycosides, stevioside, stevioside extract, honey, Jerusalem artichoke syrup, licorice root, Monk fruit (fruit, powder, or extract), Lucuma (fruit, powder, or extract), maple sap (e.g., sugar maple (Acer saccharum, black maple (Acer nigrum), red maple (Acer rubrum), silver maple (Acer saccharinum), Norway maple (Acer platanoides), ash maple (Acer negundo), bigleaf maple (Acer macrophyllum), bigleaf maple (Acer grandidentatum), Rocky Mountain maple (Acer glabrum), and silver maple (Acer mono), maple syrup, maple sugar, walnut sap (e.g., Juglans cinerea, Juglans nigra, Juglans ailatifolia, and Juglans regia), birch sap (e.g., Betula alba), papyrifera), yellow birch (Betula alleghaniensis), sweet beach (Betula lenta), river birch (Betula nigra), gray birch (Betula populifolia), and silver birch (Betula pendula).Sycamore sap (e.g., sap extracted from the American sycamore tree (Platanus occidentalis)), ironwood sap (e.g., sap extracted from the American asada (Ostrya virginiana)), muscovado, molasses (e.g., blackstrap molasses), molasses sugar, monatin, monellin, cane sugar (also called natural sugar, unrefined cane sugar, or sucrose), palm sugar, panocha, piloncillo, rapadura, raw sugar, rice syrup, sorghum, sorghum syrup, cassava syrup (also called tapioca syrup), thaumatin, yacon root, malt syrup, barley malt syrup, barley malt powder, beet sugar, sugar cane sugar, crystalline fruit juice crystals, caramel, carbitol, carob syrup, white sugar, hydrogenated starch hydrolysates, hydrolyzed canned juice, hydrolyzed starch, invert sugar, anethole, arabinogalactan, arop, syrup, P-4000, acesulfame potassium (also called acesulfame K or ace-K), alitame (also called acrame), advantame, aspartame, bayunoside, neotame, benzamide derivatives, bernadame, candelille, carrerame , and other guanidine-based sweeteners, vegetable fiber, corn sugar, coupling sugar, curculin, cyclamate, cyclocaryoside I, demerara, dextran, dextrin, maltodextrin, dulcin, sucrose, vulgin, dulcoside A, dulcoside B, emulin, enoxolone, maltodextrin, saccharin, estragole, ethyl maltol, glucine, gluconic acid, gluconolactone, glucosamine, glucoronic acid, glycerol, glycine, glycyphyllin, glycyrrhizin , glycyrrhetinic acid monoglucuronide, golden sugar, yellow sugar, golden syrup, granulated sugar, gynostemma, hernandurcin, isomerized liquid sugar, jalab, chicory root dietary fiber, kynurenine derivatives (N'-formyl-kynurenine, N'-acetyl-kynurenine, 6-chloro-kynurenine, etc.), galactitol, ritesse, ligicane, lycasin, ragduname, guanidine, falernum, mabinlin I, mabinlin II, maltol, multisorb,Maltodextrin, maltotriol, mannosamine, miraculin, starch syrup, mogrosides (e.g. mogroside IV, mogroside V, and neomogroside), mukurodiosides, nanosugar, naringin dihydrochalcone, neohesperidin dihydrochalcone, nib sugar, nigerooligosaccharides, norbu, olgate syrup, osladin, pekmez, pentasine, periandrin I, perillaldehyde, perillartine, petphyllum, phenylalanine, phlomisoside I, phlorodizin, phyllodulcin, polyglycitol syrup, polypodoside A, pterocaryoside A, pterocaryoside B, rebiana, refiner syrup, rub syrup, rubusoside, serigueine A, shugr, siamenoside I, monk fruit (Siraitia monk fruit) grosvenorii, soy oligosaccharides, Splenda, SRI oxime V, steviol glycosides, steviolbioside, stevioside, strogin 1, 2, and 4, sucronate, sucrononate, sugar, suosan, phloridzin, super aspartame, tetrasaccharide, threitol, molasses, trilobtain, tryptophan and derivatives (6-trifluoromethyl-tryptophan, 6-chloro-D-tryptophan), vanilla sugar, volemitol, birch syrup, aspartame-acesulfame, asguline, and combinations or blends of any two or more thereof.
[0092] In yet another embodiment, the sweetener may be a chemically or enzymatically modified natural high-intensity sweetener. The modified natural high-intensity sweetener includes glycosylated natural high-intensity sweeteners such as glucosyl-, galactosyl-, or fructosyl-derivatives containing 1 to 50 glycoside residues. The glycosylated natural high-intensity sweeteners can be produced by enzymatic transglycosylation reactions catalyzed by various enzymes with transglycosylation activity. In some embodiments, the modified sweeteners may be substituted or unsubstituted.
[0093] Additional sweeteners also include combinations of any two or more of any of the aforementioned sweeteners. In some embodiments, the sweetener may include a combination of two, three, four, or five of the sweeteners disclosed herein. In some embodiments, the sweetener may be a sugar. In some embodiments, the sweetener may be a combination of one or more sugars and other natural and artificial sweeteners. In some embodiments, the sweetener is a caloric sweetener, such as sucrose, fructose, xylitol, erythritol, or combinations thereof. In some embodiments, the edible composition is free or (in some embodiments) substantially free of stevia-derived sweeteners, such as steviol glycosides, glucosylated steviol glycosides, or rebaudiosides. For example, in some embodiments, the edible composition does not contain stevia-derived sweeteners, or contains stevia-derived sweeteners at a concentration of 1000 ppm or less, or 500 ppm or less, or 200 ppm or less, or 100 ppm or less, or 50 ppm or less, or 20 ppm or less, or 10 ppm or less, or 5 ppm or less, or 3 ppm or less, or 1 ppm or less.
[0094] In some embodiments, the edible composition comprises rebaudioside A and glucosylated steviol glycosides. Rebaudioside A can be present at any concentration as indicated above. The glucosylated steviol glycosides can be present at a concentration ranging from 1 ppm to 50 ppm, or 1 ppm to 40 ppm, or 1 ppm to 30 ppm, or 1 ppm to 20 ppm, or 1 ppm to 10 ppm. In some alternative embodiments, rebaudioside A can be partially replaced by other steviol glycoside sweeteners, such as rebaudioside M.
[0095] In some embodiments, the hydrolyzed dairy composition further comprises lactose hydrolysis products, such as galactose and glucose, which are formed when lactase from the flavor modifying composition hydrolyzes lactose present in the edible composition. Thus, in some embodiments, the lactose hydrolysis products result from at least partial hydrolysis of lactose, for example, by lactase. Thus, in some embodiments, the edible composition comprises lactose, glucose, and galactose.
[0096] In some embodiments, introduction of the lactase-containing flavor modifying composition into an edible composition hydrolyzes at least a portion of the lactose present in the edible composition, for example at least 50%, or at least 60%, or at least 70%, or at least 80%, or at least 90%, or at least 95%, or at least 98% of the lactose present in the edible composition prior to introduction of lactase. In some embodiments, the weight / weight ratio of lactose hydrolysis products to lactose in the edible composition is in the range of 2:1 to 100:1, or 3:1 to 100:1, or 4:1 to 100:1, or 5:1 to 100:1, or 10:1 to 100:1, or 20:1 to 100:1, or 40:1 to 100:1, or 50:1 to 100:1.
[0097] In some embodiments, the edible composition includes an emulsifier, such as a non-hydrocolloid emulsifier. Any suitable non-hydrocolloid emulsifier can be used. For example, in some non-limiting embodiments, the emulsifier includes lecithin, monoglycerides, diglycerides, polysorbates, vegetable oils, and the like. In some embodiments, the emulsifier includes lecithin. The emulsifier can be present in any suitable concentration, which can be adjusted to form a stable emulsion of other ingredients in the edible composition, for example, when formulated into a flavored product.
[0098] In some cases, it may be desirable to include additives that help adjust the viscosity of the resulting flavored product (e.g., when the edible composition is introduced into water). A variety of salts and acids can be used to make such adjustments. In some embodiments, the edible composition or the resulting flavored product includes one or more salts. Non-limiting examples of suitable salts include magnesium sulfate, sodium chloride, sodium sulfate, calcium chloride, calcium sulfate, potassium sulfate, potassium chloride, potassium sorbate, potassium phosphate, potassium monophosphate, zinc chloride, zinc sulfate, or any mixture thereof. In some embodiments, the edible composition or the resulting flavored product also includes one or more acids that can be used alone or in combination with the aforementioned salts. Non-limiting examples of suitable acids include citric acid, lactic acid, acetic acid, tartaric acid, succinic acid, ascorbic acid, maleic acid, phosphoric acid, monopotassium phosphate, gluconic acid, gluconolactone, glucuronic acid, glycyrrhetinic acid, folic acid, pantothenic acid, or mixtures thereof.
[0099] The edible composition may, in certain embodiments, include any additional ingredient or combination of ingredients commonly used in food and beverage products, including, but not limited to: acids, such as citric acid, phosphoric acid, ascorbic acid, sodium sulfate, lactic acid, or tartaric acid; bitter components such as caffeine, quinine, green tea, catechins, polyphenols, green robusta coffee extract, green coffee extract, potassium chloride, menthol, or proteins (such as proteins and protein isolates derived from plants, algae, or fungi); Coloring agents such as caramel color, red #40, yellow #5, yellow #6, blue #1, red #3, purple carrot, black carrot juice, purple sweet potato, vegetable juice, fruit juice, beta carotene, turmeric curcumin, or titanium dioxide; preservatives, such as sodium benzoate, potassium benzoate, potassium sorbate, sodium metabisulfite, sorbic acid, or benzoic acid; Antioxidants such as ascorbic acid, calcium disodium EDTA, alpha tocopherol, mixed tocopherols, rosemary extract, grape seed extract, resveratrol, or sodium hexametaphosphate; For example, Resveratrol, Co-Q10, Omega-3 fatty acids, Theanine, Choline chloride (Cytocholine), Fibersol, Inulin (Chicory Root), Taurine, Ginseng extract, Guanana extract, Ginger extract, L-Phenylalanine, L-Carnitine, L-Tartrate, D-Glucoronolactone, Inositol, Bioflavonoids, Echinacea, Ginkgo biloba, Yerba mate, Flaxseed oil, Garcinia cambogia husk extract, White tea extract, Ribose, Milk thistle extract, Grape seed extract, Pyridoxine HCl (Vitamin B6), Cyanocobalamin (Vitamin B12), Niacinamide (Vitamin B13), vitamins or functional ingredients such as vitamin B3), biotin, calcium lactate, calcium pantothenate (pantothenic acid), calcium phosphate, calcium carbonate, chromium chloride, chromium polynicotinate, cupric sulfate, folic acid, ferric pyrophosphate, iron, magnesium lactate, magnesium carbonate, magnesium sulfate, monopotassium phosphate, monosodium phosphate, phosphorus, potassium iodide, potassium phosphate, riboflavin, sodium sulfate, sodium gluconate, sodium polyphosphate, sodium bicarbonate, thiamine mononitrate, vitamin D3, vitamin A palmitate, zinc gluconate, zinc lactate, or zinc sulfate; clouding agents, such as ester gum, brominated vegetable oil (BVO), or sucrose acetate isobutyrate (SAIB); buffers, such as sodium citrate, potassium citrate, or salts; propylene glycol, ethyl alcohol, glycerin, gum arabic (gum acacia), modified corn starch, silicon dioxide, magnesium carbonate, or tricalcium phosphate; or Starches and stabilizers, e.g., polysorbate 60, polysorbate 80, medium chain triglycerides The following can be mentioned.
[0100] In some embodiments, component (a) may further comprise galactooligosaccharides, fructooligosaccharides, acacia fiber, soluble pea fiber, soluble wheat fiber, arabinoxylan, isomaltooligosaccharides, xylooligosaccharides, and the like.
[0101] Flavoured Products In certain aspects, the present disclosure provides a flavored product comprising any of the edible compositions of the above aspects and embodiments. In some embodiments, the flavored product is a beverage product, such as a dairy product or a dairy-like product. In some other embodiments, the flavored product is a food product, such as a yogurt. In some embodiments, the flavored product is an animal food product, such as a cat food product or a dog food product. In some embodiments, the flavored product is an oral care product, such as a mouthwash, a toothpaste, or a tooth whitening product.
[0102] In certain embodiments, the flavored product is a dairy product. The term "dairy product" as used herein refers to a food product whose main ingredient is milk-based. In some aspects, the main ingredient is a milk-based substrate that has been treated with an enzyme having lactase activity. In the context of this disclosure, "main ingredient" refers to an ingredient having a dry matter that constitutes at least 20% by weight, or at least 30% by weight, or at least 40% by weight, or at least 50% by weight, or at least 60% by weight, or at least 70% by weight of the total dry matter of the dairy product. Non-limiting examples of dairy products include skim milk, low-fat milk, whole milk, cream, UHT milk, milk with extended shelf life, cultured dairy products, cheese, yogurt, butter, dairy spreads, buttermilk, acidified milk beverages, sour cream, whey-based beverages, ice cream, condensed milk, dulce de leche, and flavored dairy beverages. Such dairy products can be produced by any method known in the art.
[0103] Dairy products may further include non-dairy ingredients, such as plant ingredients, e.g., vegetable oils, vegetable proteins, or vegetable carbohydrates. Dairy products may also include further additives, such as enzymes, flavoring agents, microbial cultures, e.g., probiotic cultures, salts, sweeteners, sugars, acids, fruits, fruit juices, or other ingredients known in the art as dairy ingredients or additives.
[0104] In some embodiments, the dairy product is a dairy product that is not fortified with the addition of galactooligosaccharides. In some embodiments, the enzyme-treated dairy-based substrate is not dried prior to use as an ingredient in the dairy product.
[0105] In some embodiments, the dairy product is ice cream. In the context of this specification, ice cream can be any type of ice cream, such as full-fat ice cream, low-fat ice cream, or ice cream based on yogurt or other fermented dairy products. Ice cream can be produced by any method known in the art.
[0106] In some embodiments, the dairy product is milk or condensed milk. Condensed milk can be produced by any method known in the art.
[0107] In some embodiments, the dairy product is UHT milk. UHT milk in the context of the present disclosure is milk that has been subjected to a pasteurization process intended to kill all microorganisms, including bacterial spores. UHT (ultra-high temperature) processing includes, for example, heat treatment at a temperature of about 130° C. for at least 30 seconds, or at a temperature of about 145° C. for at least 1 second.
[0108] In some embodiments, the dairy product is ESL milk. ESL milk in the context of the present invention is milk that has an extended shelf life through microfiltration or heat treatment and can remain fresh on store shelves at 2° C. to 5° C. for at least 15 days, preferably at least 20 days.
[0109] In some aspects, the dairy product is a lacto-fermented dairy product, such as yogurt. The yogurt may be any suitable type of yogurt, such as Greek-style yogurt.
[0110] "Fermented dairy products" in the context of this disclosure should be understood as any dairy product in which any type of fermentation forms part of the production process. Non-limiting examples of fermented dairy products include products such as yogurt, buttermilk, crème fraîche (sour cream), quark, and fromage fraîche. Fermented dairy products can be produced by any method known in the art.
[0111] In certain embodiments, "fermentation" refers to the conversion of carbohydrates to alcohol or acid by the action of one or more microorganisms. Alternatively, in some other embodiments, "fermentation" refers to the conversion of lactose to lactic acid.
[0112] "Microorganism" in the context of this disclosure includes any bacterium, yeast, mold, or fungus capable of fermenting a dairy substrate.
[0113] The microorganisms used in most fermented dairy products are selected from the group of bacteria commonly referred to as lactic acid bacteria. As used herein, the term "lactic acid bacteria" refers to gram-positive microaerophilic or anaerobic bacteria that ferment sugars with the production of acids, including lactic acid as the primary acid produced, as well as acetic and propionic acids. The most industrially useful lactic acid bacteria are found within the "Lactobacillales" order, which includes the genera Lactococcus spp., Streptococcus spp., Lactobacillus spp., Leuconostoc spp., Pseudoleuconostoc spp., Pediococcus spp., Brevibacterium spp., Enterococcus spp., and Propionibacterium spp. Furthermore, the group of lactic acid bacteria generally also includes the bifidobacteria, ie Bifidobacterium spp, which are lactic acid-producing bacteria belonging to the group of anaerobic bacteria that are often used alone or in combination with lactic acid bacteria as food cultures.
[0114] Lactic acid bacteria are usually supplied to the dairy industry as frozen or freeze-dried cultures for bulk starter growth or as so-called "direct vat set" (DVS) cultures intended for direct inoculation of fermenters or vats for the production of fermented dairy products. Such cultures are commonly called "starter cultures" or "starters".
[0115] Commonly used starter culture strains of lactic acid bacteria are generally divided into mesophilic bacteria, whose optimum growth temperature is about 30°C, and thermophilic bacteria, whose optimum growth temperature is in the range of about 40 to 45°C. Representative organisms belonging to mesophilic bacteria include Lactococcus lactis, Lactococcus lactis subsp. cremoris, Leuconostoc mesenteroides subsp. cremoris, Pseudoleuconostoc mesenteroides subsp. cremoris, Pediococcus pentosaceus, Lactococcus lactis subsp. lactis biovar. diacetylactis, Lactobacillus casei subsp. casei, and Lactobacillus lactis subsp. Examples of thermophilic lactic acid bacteria species include Streptococcus thermophilus, Enterococcus faecium, Lactobacillus delbrueckii subsp. lactis, Lactobacillus helveticus, Lactobacillus delbrueckii subsp. bulgaricus, and Lactobacillus acidophilus.
[0116] Anaerobic bacteria belonging to the genus Bifidobacterium, such as Bifidobacterium bifidum, Bifidobacterium animalis, and Bifidobacterium longum, are also commonly used as dairy starter cultures and are generally included in the group of lactic acid bacteria. Furthermore, species of Propionibacteria are used as dairy starter cultures, especially in cheese production. Furthermore, organisms belonging to the genus Brevibacterium are commonly used as food starter cultures.
[0117] Another group of microbial starter cultures are fungal cultures, such as yeast cultures and cultures of filamentous molds, which are used especially in the production of certain types of cheese and beverages. Examples of fungi include Penicillium roqueforti, Penicillium candidum, Geotrichum candidum, Torula kefir, Saccharomyces kefir, and Saccharomyces cerevisiae.
[0118] In some embodiments, the microorganism used in the fermentation of the milk-based substrate is Lactobacillus casei or a mixture of Streptococcus thermophilus and Lactobacillus delbrueckii subsp. bulgaricus.
[0119] Fermentation processes for use in the methods of the present disclosure are well known, and one of ordinary skill in the art would know how to select appropriate processing conditions, such as temperature, oxygen, amount and characteristics of microorganisms, additives such as carbohydrates, flavors, minerals, enzymes, and processing time. Of course, the fermentation conditions are selected to aid in the achievement of the present disclosure.
[0120] In some other embodiments where the flavored product is a beverage, the beverage may be selected from the group consisting of fortified sparkling beverages, cola, lemon-lime flavored sparkling beverages, orange flavored sparkling beverages, grape flavored sparkling beverages, strawberry flavored sparkling beverages, pineapple flavored sparkling beverages, ginger ale, root beer, fruit juice, fruit flavored juice, fruit juice drink, nectar, vegetable juice, vegetable flavored juice, sports drink, energy drink, fortified water drink, vitamin fortified water, near water drink, coconut water, tea type beverage, coffee, cocoa drink, beverage containing dairy ingredients, beverage containing grain extract, and smoothie. In some embodiments, the beverage may be a soft drink.
[0121] In some embodiments, the flavored product further comprises a carrier and at least one optional auxiliary. The term "carrier" refers to a normally inert auxiliary substance, such as a solvent, binder, extender, or other inert medium, which is used in combination with the compound and one or more optional auxiliary to form a formulation. For example, for flavored products, the carrier can be water or starch. In some embodiments, the carrier is the same as the dilution medium for reconstituting the flavored product; in other embodiments, the carrier is different from the dilution medium. The term "carrier" as used herein includes, but is not limited to, edible acceptable carriers.
[0122] The term "auxiliary agent" refers to an additive that supplements, stabilizes, maintains, or enhances the intended function or effectiveness of an active ingredient, such as a compound of the present invention. In one embodiment, the at least one auxiliary agent comprises one or more flavoring agents. The flavoring agents may be any flavor known to a person skilled in the art or a consumer, such as flavors of chocolate, coffee, tea, mocha, French vanilla, peanut butter, chai, or combinations thereof. In another embodiment, the at least one auxiliary agent comprises one or more sweeteners. The one or more sweeteners may be any sweetener described in this application. In another embodiment, the at least one auxiliary agent comprises one or more ingredients selected from the group consisting of emulsifiers, stabilizers, antimicrobial preservatives, antioxidants, vitamins, minerals, fats, starches, protein concentrates and isolates, salts, and combinations thereof. Examples of emulsifiers, stabilizers, antimicrobial preservatives, antioxidants, vitamins, minerals, fats, starches, protein concentrates and isolates, and salts are described in U.S. Pat. No. 6,468,576, the contents of which are incorporated herein by reference in their entirety for all purposes.
[0123] The flavored product may further comprise at least one auxiliary agent, a freezing point depressant, a nucleating agent, or both. A freezing point depressant is an ingestible compound or agent that can depress the freezing point of the liquid or solvent to which the compound or agent is added. That is, a liquid or solution containing the freezing point depressant has a lower freezing point than a liquid or solvent without the freezing point depressant. In addition to depressing the starting freezing point, the freezing point depressant can also reduce the water activity of the flavored product. Examples of freezing point depressants include, but are not limited to, carbohydrates, oils, ethyl alcohol, polyols such as glycerol, and combinations thereof. Nucleating agent refers to an ingestible compound or agent that can promote nucleation. The presence of a nucleating agent in a flavored product can improve the mouthfeel of the frozen blush of the frozen slush by increasing the number of desirable ice crystallization centers, and aid in maintaining the physical properties and performance of the slush at freezing temperatures. Examples of nucleating agents include, but are not limited to, calcium silicate, calcium carbonate, titanium dioxide, and combinations thereof.
[0124] In some embodiments, the flavored products are formulated to have a low water activity to enhance shelf life. Water activity is the ratio of the vapor pressure of water in the formulation to the vapor pressure of pure water at the same temperature. In one embodiment, the flavored products have a water activity of less than about 0.85. In another embodiment, the flavored products have a water activity of less than about 0.80. In another embodiment, the flavored products have a water activity of less than about 0.75.
[0125] Preparation method The edible compositions disclosed herein can be prepared by any suitable means typically used to prepare products that include flavoring compositions, including dry blending, granulation, encapsulation, spray drying, and the like.
[0126] Working Example The following examples are included to further illustrate the present invention. Of course, the examples should not be construed as specifically limiting the present invention. Variations of these examples within the scope of the claims are within the understanding of those skilled in the art, and are considered to be within the scope of the invention described and claimed herein. The reader will recognize that the skilled artisan and those skilled in the art who understand this disclosure can prepare and use the present invention without the exhaustive examples.
[0127] Example 1 - Sweetened Dairy Products The flavor modifying compositions disclosed herein are used to form sweetened dairy products. Table 1 shows two control formulations and one test formulation using the flavor modifying compositions disclosed herein, where sweetener enhancer A is N-(1-((4-amino-2,2-dioxo-1H-benzo[c][1,2,6]thiadiazin-5-yl)oxy)-2-methylpropan-2-yl)isonicotinamide.
[0128] [Table 1]
Claims
1. 1. A flavor modifying composition comprising: (a) lactase, (b) a sweetener, a sweetener enhancer, or a mixture thereof; 1. A flavor modifying composition comprising:
2. The composition of claim 1 , further comprising a sweetener enhancer.
3. The composition according to claim 1 or 2, which does not contain 3-((4-amino-2,2-dioxo-1H-benzo[c][1,2,6]thiadiazin-5-yl)oxy)-2,2-dimethyl-N-propylpropanamide.
4. 3. The composition of claim 1 or 2, comprising N-(1-((4-amino-2,2-dioxo-1H-benzo[c][1,2,6]thiadiazin-5-yl)oxy)-2-methyl-propan-2-yl)isonicotinamide, or a edible acceptable salt thereof.
5. 3. The composition of claim 1 or 2, further comprising hesperetin dihydrochalcone, hesperetin dihydrochalcone-4'-O' glucoside, neohesperetin dihydrochalcone, brazzein, hesperidin, phyllodulcin, naringenin, naringin, phloretin, glucosylated steviol glycoside, (2R,3R)-3-acetoxy-5,7,4'-trihydroxyflavanone, (2R,3R)-3-acetoxy-5,7,3'-trihydroxy-4'-methoxyflavanone, rubusoside, thaumatin, monellin, miraculin, glycyrrhizin, naringin dihydrochalcone, myricetin, nobiletin, polymethoxyflavones, mixed methoxy- and hydroxyflavones, quercetin, amino acids, and any combination thereof.
6. The composition of claim 1 or 2, further comprising a sweetener.
7. 7. The composition of claim 6, wherein the sweetener is sucrose, fructose, rebaudioside A, rebaudioside D, rebaudioside E, rebaudioside M, sucralose, or any combination thereof.
8. 3. Use of the flavour modifying composition according to claim 1 or 2 to enhance the sweetness of an edible composition.
9. The use according to claim 8, wherein the edible composition comprises lactose.
10. The use according to claim 8, wherein the edible composition comprises one or more dairy proteins.
11. The use according to claim 8, wherein the edible composition comprises non-animal protein.
12. 3. An edible composition comprising the flavor modifying composition of claim 1 or 2 and lactose.
13. 13. The composition of claim 12, further comprising one or more milk proteins.
14. A flavored product comprising the edible composition of claim 12.
15. 15. The flavored product of claim 14 which is a dairy product.