Low-sodium processed cheese and method for producing same
By replacing natural cheese with micellar casein isolate and reducing melting salt in the cheese production process, the sodium content of processed cheese is significantly reduced, resulting in a tastier and healthier product.
Patent Information
- Application Number
- JP2022543056
- Authority / Receiving Office
- JP · JP
- Patent Type
- Patents
- Current Assignee / Owner
- Priority Date
- 2020-01-29
- Filing Date
- 2021-01-29
- Publication Date
- 2025-12-22
- Estimated Expiration
- 2041-01-29
AI Technical Summary
Conventional processed cheese has high sodium content due to the use of sodium-based melting salts and natural cheese, which affects consumer health and taste.
Replace at least some natural cheese with micellar casein isolate (MCI) and reduce the amount of melting salt, using a method that includes heating a dairy mixture with MCI, sodium chloride, and melting salt to produce a low-sodium processed cheese.
Results in a tastier processed cheese with significantly reduced sodium content, achieving a sodium level of at most 1.5% w/w, while maintaining desirable organoleptic properties.
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Abstract
Description
[Background technology]
[0001] Processed cheese is a special type of cheese that is prepared by melting natural cheese in the presence of so-called melting salts (e.g., disodium hydrogen phosphate or trisodium citrate dihydrate) under moderate heat. Natural cheese typically contains 600-900 mg sodium / 100 g cheese, and the added melting salts further increase the total sodium content of the processed cheese. Conventional processed cheese therefore has relatively high levels of sodium—often 1.7 g sodium / 100 g processed cheese or more.
[0002] Previous attempts to prepare low-sodium processed cheese have included using potassium-based melting salts instead of sodium-based melting salts or using low-sodium natural cheese as the starting material to produce the processed cheese.
[0003] For example, US2002 / 0187237A1 discloses a method for producing processed cheese, particularly mozzarella-type cheese, comprising the steps of A) preparing a blend containing Young's low-sodium chloride cheese, a hydrocolloid, and an emulsifying salt, B) heating the blend obtained in step A to produce a fibrous structure, and C) holding the fibrous structure obtained in step B at an elevated temperature, wherein sodium chloride is added just before or during step C. US2002 / 0187237A1 also discloses the production of processed cheese, particularly individually packaged sliced cheese, obtainable by the above method.
[0004] Ahmed Hammam ("Production and Storage Stability of High Concentrated Micellar Casein and Its Effect on the Functional Properties of Processed Cheese Products", Electronic Theses and Dissertations. 3411, 2019, XP055717612; South Dakota State University) describes the production of processed cheese from ripened processed cheese supplemented with micellar casein and investigates the effect of adding NaCl to liquid micellar casein on different characteristics of the shelf life of the processed cheese.
[0005] WO 2012 / 023863 A discloses a method for producing processed cheese having a reduced sodium content, which method is said to retain the desirable organoleptic, processability, food safety and functional properties typically associated with processed cheese having a standard sodium content. Summary of the Invention
[0006] The present inventors have discovered that a tastier processed cheese product can be produced by replacing at least some of the natural cheese with micellar casein isolate (MCI), and interestingly, that less melting salt is required to produce MCI-containing processed cheese than to produce conventional processed cheese. Melting salts typically have a sodium contribution, so reducing the melting salt content can reduce the total sodium content of the resulting processed cheese. The MCI used to at least partially replace natural cheese also has a lower sodium contribution than natural cheese, so the present invention provides a novel approach to producing a tastier, low-sodium processed cheese.
[0007] Thus, one aspect of the invention relates to a method for preparing processed cheese, preferably containing sodium in an amount of at most 1.5% w / w, comprising the steps of: a) providing a dairy mixture comprising water, melted fat, micellar casein isolate (MCI), sodium chloride, and melting salt, wherein the dairy mixture has a pH in the range of 5.0-6.5, the MCI preferably contributes at least 35% w / w of the protein of the dairy mixture, and the dairy mixture preferably comprises sodium in an amount of at most 1.5% w / w; b) subjecting the dairy mixture to a heat treatment at a temperature of 80-150°C for a period of 2 seconds to 10 minutes; c) filling the heated dairy mixture into suitable containers, preferably at a temperature of 35-90°C, thereby obtaining a packaged dairy mixture; and d) Optionally, storing the packaged dairy mix for at least 1 day, preferably at a temperature of 2-40°C.
[0008] In some preferred embodiments of the invention, the method is a method for preparing processed cheese, comprising the steps of: a) providing a dairy mixture comprising water, melted fat, micellar casein isolate, sodium chloride, and melting salt, wherein the dairy mixture has a pH in the range of 5.0-6.5; b) subjecting the dairy mixture to a heat treatment at a temperature of 80-150°C for a period of 2 seconds to 10 minutes; c) filling the heated dairy mixture into suitable containers, preferably at a temperature of 35-90°C, thereby obtaining a packaged dairy mixture; and d) optionally storing the packaged dairy mix for at least 1 day, preferably at a temperature of 2-40°C; e) optionally cutting the packaged dairy mixture, thereby obtaining a cut dairy mixture; wherein the processed cheese is the packaged dairy mix obtained from step c) or d) or the pre-cut packaged dairy mix of step e).
[0009] Another aspect of the invention relates to a processed cheese containing sodium in an amount of at most 1.5% w / w and having: a fat content of 5-40% w / w, more preferably 8-35% w / w, most preferably 10-30% w / w, a protein content of 7-35% w / w, more preferably 10-30% w / w, most preferably 12-25% w / w, a carbohydrate content of at most 15% w / w, more preferably at most 10% w / w, most preferably at most 5% w / w, a solids content of 25-65% w / w, more preferably 30-60% w / w, most preferably 35-55% w / w, and pH of -5.0-6.5.
[0010] Furthermore, one aspect of the invention relates to the use of micellar casein isolate for one or more of the following: - for producing processed cheese and using MCI as an ingredient, preferably contributing at least 35% w / w of the protein of the processed cheese, more preferably at least 50% w / w, even more preferably at least 70% w / w, most preferably at least 95% w / w of the protein of the processed cheese. - at least partially replaces the amount of natural cheese used in processed cheese; - Using MCI as an ingredient in processed cheese reduces the amount of melting salt required in processed cheese; -By using MCI as an ingredient in processed cheese, the sodium content of processed cheese is reduced. - producing a processed cheese containing sodium in an amount of at most 1.5% w / w, more preferably at most 1.3% w / w, even more preferably at most 1.0, and most preferably at most 0.7% w / w; and -Increasing saltiness / mg sodium in processed cheese. DETAILED DESCRIPTION OF THE INVENTION
[0011] One aspect of the invention relates to a method for preparing processed cheese, preferably containing sodium in an amount of at most 1.5% w / w, comprising the steps of: a) providing a dairy mixture comprising water, melted fat, micellar casein isolate (MCI), sodium chloride, and melting salt, wherein the dairy mixture has a pH in the range of 5.0-6.5, the MCI preferably contributes at least 35% w / w of the protein of the dairy mixture, and the dairy mixture preferably comprises sodium in an amount of at most 1.5% w / w; b) subjecting the dairy mixture to a heat treatment at a temperature of 80-150°C for a period of 2 seconds to 10 minutes; c) filling the heated dairy mixture into suitable containers, preferably at a temperature of 35-90°C, thereby obtaining a packaged dairy mixture; and d) Optionally, storing the packaged dairy mix for at least 1 day, preferably at a temperature of 2-40°C.
[0012] In some preferred embodiments of the invention, the method further comprises a step e) of cutting the dairy mixture obtained from step c) or step d), thereby obtaining a cut dairy mixture.
[0013] The method results in a processed cheese which may, for example, be: - the packaged dairy mixture obtained from step c), - the packaged dairy mixture obtained from step d), or - the pre-cut dairy mixture of step e).
[0014] In some preferred embodiments of the invention, the processed cheese is the packaged dairy mixture obtained from step c).
[0015] In another preferred embodiment of the invention, the processed cheese is the packaged dairy mixture obtained from step d).
[0016] In a further preferred embodiment of the invention, the processed cheese is the cut dairy mixture of step e).
[0017] One aspect of the invention relates to a method for preparing process cheese, the method comprising the steps of: a) providing a dairy mixture comprising water, melted fat, micellar casein isolate (MCI), sodium chloride, and melting salt, wherein the dairy mixture has a pH in the range of 5.0-6.5; b) subjecting the dairy mixture to a heat treatment at a temperature of 80-150°C for a period of 2 seconds to 10 minutes; c) filling the heat-treated dairy mixture into suitable containers, preferably at a temperature of 35-90°C, thereby obtaining a packaged dairy mixture; and d) optionally storing the packaged dairy mix for at least 1 day, preferably at a temperature of 2-40°C; e) optionally cutting the packaged dairy mixture, thereby obtaining a cut dairy mixture; wherein the processed cheese is the packaged dairy mix obtained from step c) or d) or the pre-cut packaged dairy mix of step e).
[0018] In the context of the present invention, the term "processed cheese" refers to a cheese product prepared by heat treating, typically under shear, a mixture containing melting salt, water, and natural cheese and / or micellar casein isolate. While traditional processed cheese uses natural cheese as the primary protein source, the present invention makes it possible to prepare processed cheese using only small amounts of natural cheese, and indeed no natural cheese at all.
[0019] The term "melting salt" is well known in the processed cheese art and is sometimes referred to as "emulsifying salt." Melting salts are salts of calcium chelating molecules, such as citric acid, tartaric acid, and / or phosphoric acid, in the form of sodium and / or potassium salts of citric acid, tartaric acid, and / or phosphoric acid. The phosphoric acid is preferably orthophosphoric acid, pyrophosphoric acid, or metaphosphoric acid.
[0020] In the context of the present invention, the term "micellar casein isolate" or "MCI" relates to an isolate of casein micelles from a dairy source, typically skim milk, and comprising at least 60% w / w protein based on total solids and at least 90% w / w casein based on total protein. MCI is typically prepared by microfiltration of milk using a membrane that retains the casein micelles but allows whey proteins to pass through. The resulting microfiltration retentate is enriched with respect to the casein micelles and may be subjected to further purification by microfiltration / diafiltration. The retentate can be used directly as liquid MCI, or it may be dried, preferably by spray drying, and used as MCI powder.
[0021] In some preferred embodiments of the present invention, the micellar casein isolate of the dairy mixture is provided in the form of a micellar casein isolate powder.
[0022] In some preferred embodiments of the present invention, the micellar casein isolate of the dairy mixture is provided in the form of a liquid micellar casein isolate.
[0023] In some preferred embodiments of the present invention, the MCI contributes at least 20% w / w of the protein of the dairy mixture, more preferably at least 25% w / w, even more preferably at least 30% w / w, and most preferably at least 35% w / w.
[0024] In another preferred embodiment of the present invention, the mci contributes to at least 50% w / w of the protein of the dairy mixture, more preferably at least 70% w / w, even more preferably at least 90% w / w, and most preferably at least 95% w / w.
[0025] In some particularly preferred embodiments of the invention, mci contributes substantially all of the protein of the dairy mixture.
[0026] In some preferred embodiments of the present invention, for example, when the dairy blend includes cheese and / or other protein sources in addition to MCI, the MCI contributes 40-90% w / w of the protein in the dairy blend, more preferably 44-85% w / w, even more preferably 48-80% w / w, and most preferably 50-75% w / w.
[0027] In some preferred embodiments of the invention, the micellar casein isolate has a weight ratio between sodium and protein of at most 0.0057, more preferably at most 0.0023, even more preferably at most 0.0011, and most preferably at most 0.00057.
[0028] In some preferred embodiments of the invention, the micellar casein isolate has a weight ratio between potassium and protein of at most 0.011, more preferably at most 0.0057, even more preferably at most 0.0034, and most preferably at most 0.0011.
[0029] In some preferred embodiments of the invention, the micellar casein isolate has a weight ratio between calcium and protein of at most 0.046, more preferably at most 0.034, even more preferably at most 0.029, and most preferably at most 0.017.
[0030] It is particularly preferred that MCI is organically produced and is an organic ingredient, and therefore suitable for replacing organic natural cheese in organic processed cheese. In some preferred embodiments of the present invention, the processed cheese is organic processed cheese.
[0031] The dairy mixture always contains protein, and in some preferred embodiments of the invention the dairy mixture has a protein content of 7-35% w / w, more preferably 9-30% w / w, most preferably 11-25% w / w.
[0032] In another preferred embodiment of the present invention, the dairy mixture has a protein content of 7-30% w / w, more preferably 9-25% w / w, most preferably 11-20% w / w.
[0033] Preferably, at least 50% w / w of the protein in the dairy blend, likewise the processed cheese, is dairy protein and is provided by one or more dairy protein sources, including MCI and, optionally, cheese.
[0034] The term "milk protein" refers to one or more proteins derived from mammalian milk and includes both individual milk protein species, such as individual whey or whey proteins or caseins, and whole milk protein fractions of milk, whey, or whey. In addition to MCI, useful milk protein sources include cheese, milk, and various dairy-based protein-containing powders.
[0035] The milk protein in both the dairy mixture and the processed cheese is preferably milk protein from cow, sheep, goat, buffalo, camel, llama, mare and / or deer. Milk protein from bovine (cow) milk is particularly preferred.
[0036] In some preferred embodiments of the present invention, the dairy blends and processed cheeses contain vegetable proteins in addition to dairy proteins.
[0037] In some preferred embodiments of the present invention, the dairy mixture comprises native whey protein in an amount of at most 10% w / w, more preferably at most 8% w / w, even more preferably at most 5% w / w, and most preferably at most 2% w / w of total protein.
[0038] The amount of native whey protein in a dairy mixture can be determined by precipitating casein and denatured whey protein by acidification to pH 4.6, and then quantifying the native whey protein remaining in the supernatant by quantitative HPLC.
[0039] The inventors have observed that by reducing the content of native whey protein in the dairy blend, the resulting processed cheese is less sticky at 2-25° C. Reduced stickiness is often a desirable characteristic of processed cheese, especially when presented in the form of processed cheese slices.
[0040] In some preferred embodiments of the present invention, the dairy mixture comprises caseinomacropeptide in an amount of at most 8% w / w, more preferably at most 6% w / w, even more preferably at most 3% w / w, and most preferably at most 1% w / w of total protein.
[0041] In some preferred embodiments of the present invention, the dairy mixture comprises casein in an amount of at least 90% w / w, more preferably at least 92% w / w, even more preferably at least 95% w / w, and most preferably at least 98% w / w, based on total protein.
[0042] Natural cheese used to produce conventional processed cheese has typically been prepared by renneting, which involves enzymatic hydrolysis of kappa casein to para-kappa casein. In the present invention, at least some of the cheese in the conventional processed cheese is replaced with MCI, in which case the kappa casein remains intact. Thus, in some preferred embodiments of the present invention, the dairy blend comprises kappa casein in an amount of at least 1% w / w, more preferably at least 5% w / w, even more preferably at least 8% w / w, and most preferably at least 10% w / w, based on total protein.
[0043] Preferably the dairy mixture contains kappa casein in an amount of 1-30% w / w, more preferably 3-20% w / w, even more preferably 5-15% w / w, most preferably 10-13% w / w of total protein.
[0044] For example, the dairy mixture preferably contains kappa casein in an amount of 3-30% w / w of total protein.
[0045] In some preferred embodiments of the present invention, the dairy mixture is essentially free of para-κ casein.
[0046] The dairy mixture comprises casein and may further comprise whey protein. In some preferred embodiments of the invention, the dairy mixture has a weight ratio between whey protein and casein of at most 0.5, more preferably at most 0.1, even more preferably at most 0.05, and most preferably at most 0.02.
[0047] In some preferred embodiments of the present invention, the dairy mixture further comprises cheese.
[0048] The cheese used in the present invention is preferably a natural cheese, preferably prepared by enzymatic coagulation of milk, preferably using one or more suitable rennet enzymes. Alternatively, or in addition, coagulation may also involve acidification.
[0049] In some preferred embodiments of the invention, the cheese comprises or further consists of cheese(s) prepared by rennet treatment of cheese milk, such as, for example, Colby cheese, Cheddar cheese, Gouda cheese, Dumbo cheese, Swiss cheese, Mozzarella cheese, or combinations thereof.
[0050] In another preferred embodiment of the invention, the cheese comprises or further consists of a cheese prepared by acidification of cheese milk, optionally with rennet treatment, such as cream cheese, fromage frais, fromage blanc, or a combination thereof.
[0051] The use of cream cheese is particularly preferred, and thus in some preferred embodiments of the invention the cheese comprises or even consists of cream cheese.
[0052] In some preferred embodiments of the invention, the cheese of the dairy mixture comprises or even consists of unripened cheese.
[0053] Preferably, the cheese contributes at most 80% w / w of the protein of the dairy mixture, more preferably at most 75% w / w, even more preferably at most 70% w / w, and most preferably at most 65% w / w.
[0054] More preferably, the cheese contributes at most 50% w / w of the protein of the dairy mixture, more preferably at most 40% w / w, even more preferably at most 10% w / w, and most preferably at most 5% w / w.
[0055] In some preferred embodiments of the invention, cheese contributes at most 40% w / w of the dairy mixture, more preferably at most 35% w / w, even more preferably at most 30% w / w, and most preferably at most 25% w / w.
[0056] More preferably, the cheese contributes at most 20% w / w of the dairy mixture, more preferably at most 15% w / w, even more preferably at most 10% w / w, and most preferably at most 5% w / w.
[0057] In yet another preferred embodiment of the present invention, the dairy mixture does not include cheese.
[0058] The term "fat source" in the context of the present invention relates to a composition comprising fat in an amount of at least 60% w / w. The terms "fat" and "oil" are used interchangeably and include both fats that are liquid at room temperature and fats that are solid or semi-solid at room temperature.
[0059] In some preferred embodiments of the present invention, the dairy mixture of step a) comprises one or more of the following fat sources: butter, AMF, butter oil, whey fat, vegetable oil, and / or mixtures thereof.
[0060] In some preferred embodiments of the present invention, the dairy mixture has a fat content of 5-40% w / w, more preferably 8-35% w / w, most preferably 10-30% w / w.
[0061] In another preferred embodiment of the present invention, the dairy mixture has a fat content of 10-40% w / w, more preferably 15-35% w / w, most preferably 20-30% w / w.
[0062] It should be noted that other ingredients besides the fat source(s) may contribute to the fat content of the dairy mix. Both MCI and cheese typically contain some fat.
[0063] The dairy mixture typically contains at least some carbohydrate, and the desired amount often depends on the organoleptic properties that the resulting processed cheese should have. In some preferred embodiments of the invention, the dairy mixture has a carbohydrate content of at most 15% w / w, more preferably at most 10% w / w, and most preferably at most 5% w / w.
[0064] In some preferred embodiments of the invention, the dairy mixture has a carbohydrate content in the range of 4-15% w / w, more preferably 6-15% w / w, even more preferably 8-15% w / w, and most preferably 10-15%.
[0065] The dairy blend may include other protein sources in addition to MCI and cheese, and such other protein sources may include both animal and / or plant protein sources.
[0066] In some preferred embodiments of the present invention, the dairy blend further comprises one or more of the following protein sources: skim milk powder, whole milk powder, low-lactose milk powder, lactose-free milk powder, buttermilk powder, ultrafiltered milk powder, reconstituted reconstituted milk powder, whey powder, whey protein concentrate (WPC), whey protein isolate (WPI) and whey protein concentrate (SPC), plant protein and any mixtures thereof.
[0067] Melting salts are used in the dairy mix to obtain the appropriate texture of the final processed cheese. In some preferred embodiments of the present invention, the melting salts of the dairy mix include one or more melting salts selected from the group consisting of monosodium phosphate, disodium phosphate, dipotassium phosphate, trisodium phosphate, sodium, sodium acid pyrophosphate, tetrasodium pyrophosphate, sodium aluminum phosphate, sodium citrate, potassium citrate, calcium citrate, sodium tartrate, and potassium sodium tartrate, and any mixture thereof.
[0068] Preferably, the molten salt of the dairy mixture comprises one or more salts selected from the group consisting of monosodium phosphate, disodium phosphate, dipotassium phosphate, trisodium phosphate, sodium metaphosphate, sodium acid pyrophosphate, tetrasodium pyrophosphate, sodium aluminum phosphate, sodium citrate, potassium citrate, calcium citrate, sodium tartrate and potassium sodium tartrate and any mixtures thereof.
[0069] Preferably, the melting salt of the dairy blend is selected from the group consisting of monosodium phosphate, disodium phosphate, dipotassium phosphate, trisodium phosphate, sodium metaphosphate, sodium acid pyrophosphate, tetrasodium pyrophosphate, sodium aluminum phosphate, sodium citrate, potassium citrate, calcium citrate, sodium tartrate and potassium sodium tartrate and any mixtures thereof.
[0070] In some preferred embodiments of the present invention, the dairy mixture comprises melting salt in an amount of 0.2-4% w / w, more preferably 0.5-3.5% w / w, even more preferably 0.7-3.2% w / w, and most preferably 0.8-3.0% w / w.
[0071] In some preferred embodiments of the present invention, the dairy mixture comprises molten salt in an amount of 0.2-3.0% w / w, more preferably 0.5-2.5% w / w, even more preferably 0.6-1.5% w / w, and most preferably 0.7-1.0% w / w.
[0072] The pH of the dairy mixture is preferably in the range of 5.0-6.5. More preferably, the pH of the dairy mixture is in the range of 5.4-6.0, and most preferably in the range of 5.5-5.8. The pH may be adjusted, for example, in step v) of the preferred process for providing a dairy mixture.
[0073] In some preferred embodiments of the present invention, the dairy mixture further comprises one or more acidifying agent(s), preferably selected from the group consisting of glucono delta-lactone (GDL), citric acid, phosphoric acid, lactic acid, lemon juice, lime juice, and any mixture thereof. The acidifying agent(s) may, for example, be added in step v) of the preferred process for providing a dairy mixture.
[0074] An advantage of the present processed cheese is that it has a low sodium content, which is likewise a property of the dairy blend. In some preferred embodiments of the present invention, the dairy blend has a sodium content of at most 1.5% w / w, more preferably at most 1.3% w / w, even more preferably at most 1.2% w / w, and most preferably at most 0.6% w / w.
[0075] Preferably, the dairy mixture has a sodium content in the range of 0.1-1.5% w / w, more preferably 0.4-1.3% w / w, most preferably 0.5-1.2% w / w.
[0076] In another preferred embodiment of the present invention, the dairy mixture has a sodium content in the range of 0.1-1.0% w / w, more preferably 0.2-0.9% w / w, even more preferably 0.3-0.7% w / w, most preferably 0.4-0.6% w / w.
[0077] In some preferred embodiments of the present invention, the dairy mixture has a potassium content of at most 1% w / w, more preferably at most 0.6% w / w, even more preferably at most 0.4% w / w, and most preferably at most 0.2% w / w.
[0078] Preferably, the dairy mixture has a potassium content in the range of 0.01-1% w / w, more preferably 0.02-0.8% w / w, even more preferably 0.03-0.6% w / w, most preferably 0.05-0.3% w / w.
[0079] In some preferred embodiments of the present invention, the dairy mixture has a calcium content of at most 1.0% w / w, more preferably at most 0.8% w / w, most preferably at most 0.6%.
[0080] Preferably, the dairy mixture has a calcium content in the range of 0.1-1.0% w / w, more preferably 0.2-0.8% w / w, most preferably 0.3-0.6% w / w.
[0081] In addition to calcium, the dairy mixture will typically contain magnesium and other divalent metal cations inherent to dairy preparations, preferably each of these at a concentration that is at most 50% w / w of the concentration of calcium, more preferably at most 30% w / w of the concentration of calcium, and most preferably at most 20% w / w of the concentration of calcium.
[0082] The dairy mixture preferably has a magnesium concentration that is at most 50% w / w of the calcium concentration, more preferably at most 30% w / w of the calcium concentration, most preferably at most 20% w / w of the calcium concentration.
[0083] In some preferred embodiments of the invention, the dairy mixture has a solids content of 25-65% w / w, more preferably 30-60% w / w, most preferably 35-55% w / w.
[0084] The dairy mixture may further include one or more flavoring agents that provide the desired flavor to the processed cheese. Any suitable flavoring agent may be used. For example, the dairy mixture may include one or more fruit flavoring agents, such as banana flavor, strawberry flavor, orange flavor, lemon flavor, lime flavor, pineapple flavor, kiwi flavor, papaya flavor, apple flavor, pear flavor, peach flavor, raspberry flavor, cherry flavor, cranberry flavor, blackcurrant flavor, grapefruit flavor, boysenberry flavor, blackberry flavor, fig flavor, redcurrant flavor, gooseberry flavor, pomegranate flavor, and / or melon flavor. Alternatively, or in addition, the dairy mixture may include caramel flavor and / or vanilla flavor.
[0085] The dairy mixture may further include one or more colorants.
[0086] In some preferred embodiments of the present invention, the dairy mixture comprises: a fat content of 5-40% w / w, more preferably 8-35% w / w, most preferably 10-30% w / w, a protein content of 7-35% w / w, more preferably 10-30% w / w, most preferably 12-25% w / w, a carbohydrate content of at most 15% w / w, more preferably at most 10% w / w, most preferably at most 5% w / w, a sodium content of at most 1.5% w / w, more preferably at most 1.3% w / w, most preferably at most 1.2% w / w, - A solids content of 25-65% w / w, more preferably 30-60% w / w, most preferably 35-55% w / w.
[0087] In another preferred embodiment of the present invention, the dairy mixture comprises: a fat content of 5-40% w / w, more preferably 8-35% w / w, most preferably 10-30% w / w, a protein content of 7-35% w / w, more preferably 10-30% w / w, most preferably 12-25% w / w, a carbohydrate content of at most 15% w / w, more preferably at most 10% w / w, most preferably at most 5% w / w, a sodium content of 0.1-1.5% w / w, more preferably 0.4-1.3% w / w, most preferably 0.5-1.2% w / w, a solids content of 25-65% w / w, more preferably 30-60% w / w, most preferably 35-55% w / w, and the MCI contributes at least 35% w / w, more preferably at least 50% w / w, and most preferably at least 70% w / w of the protein of the dairy blend.
[0088] In a further preferred embodiment of the present invention, the dairy mixture comprises a fat content of 5-40% w / w, more preferably 8-35% w / w, most preferably 10-30% w / w, a protein content of 7-35% w / w, more preferably 10-30% w / w, most preferably 12-25% w / w, a carbohydrate content of at most 15% w / w, more preferably at most 10% w / w, most preferably at most 5% w / w, a sodium content of 0.1-1.0% w / w, more preferably 0.2-0.9% w / w, most preferably 0.4-0.6% w / w, a solids content of 25-65% w / w, more preferably 30-60% w / w, most preferably 35-55% w / w, and the MCI contributes at least 35% w / w, more preferably at least 50% w / w, and most preferably at least 70% w / w of the protein of the dairy blend.
[0089] In another preferred embodiment of the present invention, the dairy mixture comprises: a fat content of 5-40% w / w, more preferably 8-35% w / w, most preferably 10-30% w / w, a protein content of 7-35% w / w, more preferably 10-30% w / w, most preferably 12-25% w / w, a carbohydrate content of 4-15% w / w, more preferably 8-15% w / w, most preferably 10-15% w / w, a sodium content of 0.1-1.0% w / w, more preferably 0.2-0.9% w / w, most preferably 0.4-0.6% w / w, preferably one or more flavoring agent(s), more preferably one or more fruit flavoring agent(s) and / or caramel flavor, - A solids content of 25-65% w / w, more preferably 30-60% w / w, most preferably 35-55% w / w.
[0090] In a further preferred embodiment of the present invention, the dairy mixture comprises a fat content of 5-40% w / w, more preferably 8-35% w / w, most preferably 10-30% w / w, a protein content of 7-35% w / w, more preferably 10-30% w / w, most preferably 12-25% w / w, a carbohydrate content of 4-15% w / w, more preferably 8-15% w / w, most preferably 10-15% w / w, a sodium content of 0.1-1.0% w / w, more preferably 0.2-0.9% w / w, most preferably 0.4-0.6% w / w, one or more flavoring agent(s), more preferably one or more fruit flavoring agent(s) and / or caramel flavor, a solids content of 25-65% w / w, more preferably 30-60% w / w, most preferably 35-55% w / w, and and the MCI contributes at least 35% w / w, more preferably at least 50% w / w, and most preferably at least 80% w / w of the protein of the dairy blend.
[0091] It is particularly preferred that the processed cheese is an organic processed cheese, and therefore it is similarly preferred that the ingredients of the dairy mixture are organic.
[0092] The dairy mixture can be prepared and thus presented in many different ways by combining the appropriate ingredients.
[0093] In some preferred embodiments of the present invention, the dairy mixture is provided by: i) providing a composition comprising a fat source, water, and optionally also cheese; ii) subjecting the composition obtained in step i) to heating, preferably to a temperature of 30-75°C, most preferably 30-50°C, to melt the fat; iii) adding at least micellar casein isolate and melting salt, and optionally also NaCl, to the heated composition obtained in step ii); iv) mixing the composition obtained in step iii); v) Adjusting the pH of the composition obtained in step d to about 5.0-6.5, most preferably 5.5-6.0, if the pH is not already in this range, for example by adding an acidifying agent.
[0094] The additional protein source is preferably added in step iii) or in step i) and / or step ii).
[0095] The mixing in step iv) is preferably thorough mixing, preferably providing a uniform distribution of the mixed ingredients throughout the resulting dairy product mixture.
[0096] When the above sequence of steps is used to provide a dairy mixture, the dairy mixture is the composition resulting from step v) if pH adjustment is required, or the composition resulting from step iv) if the pH is already in the range of 5.0-6.5 after thorough mixing of step iv).
[0097] In some preferred embodiments of the present invention, the dairy mixture is prepared by mixing: MCI in an amount of 3-40% w / w, more preferably 4-35% w / w, even more preferably 10-30% w / w, most preferably 12-24% w / w, relative to the weight of the dairy mixture, natural cheese in an amount of 0-40% w / w, more preferably 5-38% w / w, even more preferably 10-36% w / w, most preferably 12-34% w / w, based on the weight of the dairy mixture; a fat source, preferably butter, in an amount of 5-40% w / w, more preferably 8-35% w / w, even more preferably 10-30% w / w, most preferably 12-25% w / w, based on the weight of the dairy mixture; - a molten salt in an amount of 0.2-4% w / w, more preferably 0.5-3.5% w / w, even more preferably 0.7-3.2% w / w, most preferably 0.8-3.0% w / w, relative to the weight of the dairy mixture; sodium chloride in an amount of 0-1.4% w / w, more preferably 0.2-1.2% w / w, even more preferably 0.4-1.1% w / w, most preferably 0.5-1.0% w / w, relative to the weight of the dairy mixture; - optionally one or more further ingredients, preferably including food acids; and - Water in an amount preferably of 5-75% w / w, more preferably 10-65% w / w, even more preferably 20-55% w / w, most preferably 25-50% w / w relative to the weight of the dairy mixture.
[0098] In another preferred embodiment of the present invention, the dairy mixture is prepared by mixing: MCI in an amount of 3-40% w / w, more preferably 4-35% w / w, even more preferably 10-30% w / w, most preferably 12-24% w / w, relative to the weight of the dairy mixture, natural cheese in an amount of 0-40% w / w, more preferably 0-20% w / w, even more preferably 0-10% w / w, most preferably 0-5% w / w, based on the weight of the dairy mixture; a fat source, preferably butter, in an amount of 5-40% w / w, more preferably 8-35% w / w, even more preferably 10-30% w / w, most preferably 12-25% w / w, based on the weight of the dairy mixture; - a molten salt in an amount of 0.2-4% w / w, more preferably 0.5-3.5% w / w, even more preferably 0.7-3.2% w / w, most preferably 0.8-3.0% w / w, relative to the weight of the dairy mixture; sodium chloride in an amount of 0-1.4% w / w, more preferably 0.2-1.2% w / w, even more preferably 0.4-1.1% w / w, most preferably 0.5-1.0% w / w, relative to the weight of the dairy mixture; - optionally one or more further ingredients, preferably including food acids; and - Water in an amount preferably of 5-75% w / w, more preferably 10-65% w / w, even more preferably 20-55% w / w, most preferably 25-50% w / w relative to the weight of the dairy mixture.
[0099] Step b) involves heat treating the dairy mixture to a temperature of at least 80°C.
[0100] The inventors have found that MCI improves the heat stability of dairy mixtures, thereby enabling sterilization heat treatment.
[0101] In some preferred embodiments of the present invention, the heat treatment of step b) comprises: heating the dairy mixture to a temperature of 90-98°C, most preferably 94-96°C, for a period of 4 to 8 minutes, most preferably 5-6 minutes, or - Heating the dairy mixture to a temperature of 120-145°C for a period of 2 to 30 seconds.
[0102] In another preferred embodiment of the invention, the heat treatment of step b) comprises heating the dairy mixture to a temperature of at least 100°C, more preferably at least 120°C, and most preferably at least 140°C, for a period of time sufficient to sterilize the dairy mixture. Preferably, the dairy mixture is sterilized using a heat treatment, in which the dairy mixture is heated to a temperature in the range of 120-145°C for a period of time sufficient to obtain sterilization, typically between 2 and 30 seconds.
[0103] In some particularly preferred embodiments of the present invention, the heat-treated dairy mixture is sterile.
[0104] In the context of the present invention, the term "sterile" means that the sterile composition or product in question is free of viable microorganisms and is therefore free of microbial growth during storage at room temperature. A sterilized composition is aseptic.
[0105] The dairy mix is often at least partially cooled after heat treatment, particularly when temperatures above 95° C. are used. The heat-treated dairy mix is preferably cooled to a temperature in the range of 35-95° C., more preferably 40-90° C. If subsequent filling is to be performed using hot filling, the heat-treated dairy mix is preferably cooled to 70-95° C., most preferably 80-90° C. Cooling may involve, for example, flash cooling, which is preferred when heating temperatures above 100° C. are used, or indirect cooling, which is preferred to temperatures of at most 100° C.
[0106] It is even more particularly preferred that the heat treatment in step b) is carried out under shear and / or is followed by a shear step to ensure that the final processed cheese is a smooth, homogeneous product. The shear step, also known as a creaming step, is well known to those skilled in the art. The shear preferably occurs at a temperature in the range of 35-95°C, more preferably 40-90°C, and most preferably 70-90°C.
[0107] Step c) of the method involves filling the heat-treated dairy mixture into one or more suitable containers.
[0108] The temperature of the dairy mix during filling is preferably high enough to keep the dairy mix pumpable, typically at least 35°C, preferably in the range 35-90°C.
[0109] In some preferred embodiments of the present invention, the filling temperature in step c), i.e. the temperature of the heat-treated dairy mixture during filling, is in the range of 70-90°C, most preferably in the range of 82-88°C.
[0110] In some preferred embodiments of the invention, the filling in step c) is aseptic filling and the container is an aseptic container, which is aseptically sealed after filling. This is particularly preferred when the heat-treated dairy mixture is aseptic or nearly aseptic, providing a long shelf life for the processed cheese.
[0111] The container may be a final container, which holds the process cheese until a consumer opens the container and consumes the process cheese, or it may be an intermediate container, which holds the process cheese until it is subjected to further processing steps, such as a cutting step where the process cheese is cut into slices.
[0112] The processed cheese is preferably in the form of a spread, a block, individually wrapped slices, or slices arranged in contact with each other.
[0113] In a further preferred embodiment of the present invention, the processed cheese is in the form of a processed cheese spread, i.e., a processed cheese that is soft enough to be spread on a slice of bread.
[0114] In an even more preferred embodiment of the present invention, the processed cheese is in the form of a block of processed cheese.
[0115] Methods for controlling the texture and viscosity of processed cheese, for example, by controlling the solids content of the dairy mixture and the selection of melting salts, are well known to those skilled in the art.
[0116] In some preferred embodiments of the present invention, the packaged process cheese is stored for a period of time, preferably at least 1 day, and most preferably at least 3 days, to allow the process cheese to set.
[0117] In some preferred embodiments of the present invention, the storage temperature in step d) is 2-40°C, more preferably 2-8°C, or also preferably 20-40°C.
[0118] In some preferred embodiments of the present invention, the method further comprises cutting the packaged dairy mix obtained from step c) or d). The packaged dairy mix is preferably cut into slices. As will be appreciated, the packaged dairy mix is preferably removed from the container before cutting.
[0119] The method of the present invention is surprisingly compatible with producing processed cheese in the form of slices arranged in a slice-to-slice contact configuration, i.e., stacked so that each slice is in direct contact with another slice without a separating plastic film. This slice arrangement requires the processed cheese slices to have a surface that sets quickly after slicing to avoid the slices sticking together and becoming inseparable. The inventors have found that the process cheese of the invention has this capability and is therefore compatible with a slice-to-slice contact configuration.
[0120] In some preferred embodiments of the invention, the process cheese is in the form of slices of process cheese arranged in slice-to-slice contact, so step e) preferably comprises cutting the packaged dairy mix, i.e., the dairy mix obtained from step c) or step d), into slices and arranging them in slice-to-slice contact.
[0121] In another preferred embodiment of the invention, the process cheese is in the form of individually wrapped slices of process cheese, and thus step e) preferably comprises cutting the dairy mixture resulting from step c) or step d) into slices and individually wrapping the slices.
[0122] The steps of the method are performed in the order a), b), c). If step d) is included, the order of steps is a), b), c), d). If step e) is included, the order is a), b), c), d), e) if step d) is included, and a), b), c), e) if step d) is omitted.
[0123] Another aspect of the invention relates to a processed cheese containing sodium in an amount of at most 1.5% w / w and having: a fat content of 5-40% w / w, more preferably 8-35% w / w, most preferably 10-30% w / w, a protein content of 7-35% w / w, more preferably 10-30% w / w, most preferably 12-25% w / w, a carbohydrate content of at most 15% w / w, more preferably at most 10% w / w, most preferably at most 5% w / w, a solids content of 25-65% w / w, more preferably 30-60% w / w, most preferably 35-55% w / w, and - A pH of 5.0-6.5, more preferably 5.4-6.0, most preferably 5.5-5.8.
[0124] In some preferred embodiments of the invention, the processed cheese contains sodium in an amount of 0.1-1.5% w / w, more preferably 0.4-1.3% w / w, most preferably 0.5-1.2% w / w and has: a fat content of 5-40% w / w, more preferably 8-35% w / w, most preferably 10-30% w / w, a protein content of 7-35% w / w, more preferably 10-30% w / w, most preferably 12-25% w / w, a carbohydrate content of at most 15% w / w, more preferably at most 10% w / w, most preferably at most 5% w / w, a solids content of 25-65% w / w, more preferably 30-60% w / w, most preferably 35-55% w / w, and - A pH of 5.0-6.5, more preferably 5.4-6.0, most preferably 5.5-5.8.
[0125] In another preferred embodiment of the invention, the processed cheese contains sodium in an amount of 0.1-1.0% w / w, more preferably 0.2-0.9% w / w, most preferably 0.4-0.6% w / w and has: a fat content of 5-40% w / w, more preferably 8-35% w / w, most preferably 10-30% w / w, a protein content of 7-35% w / w, more preferably 10-30% w / w, most preferably 12-25% w / w, a carbohydrate content of at most 15% w / w, more preferably at most 10% w / w, most preferably at most 5% w / w, a solids content of 25-65% w / w, more preferably 30-60% w / w, most preferably 35-55% w / w, and - A pH of 5.0-6.5, more preferably 5.4-6.0, most preferably 5.5-5.8.
[0126] The macronutrient and mineral content of the processed cheese is essentially the same as in the dairy mix, and therefore the features and embodiments described in the context of the dairy mix apply equally to the processed cheese unless it is clear that the heat treatment alters the feature in question.
[0127] In some preferred embodiments of the invention, the processed cheese has a carbohydrate content in the range of 4-15% w / w, more preferably 6-15% w / w, even more preferably 8-15% w / w, and most preferably 10-15%.
[0128] For example, it may be preferred for processed cheese to contain sodium in an amount of at most 1.5% w / w and have the following: a fat content of 5-40% w / w, more preferably 8-35% w / w, most preferably 10-30% w / w, a protein content of 7-35% w / w, more preferably 10-30% w / w, most preferably 12-25% w / w, a carbohydrate content of 4-15% w / w, more preferably 8-15% w / w, most preferably 10-15% w / w, a solids content of 25-65% w / w, more preferably 30-60% w / w, most preferably 35-55% w / w, and pH of -5.0-6.5.
[0129] Preferably, the processed cheese has a sodium content of 0.1-1.5% w / w, more preferably 0.4-1.3% w / w, most preferably 0.5-1.2% w / w.
[0130] Alternatively, but also preferably, the processed cheese may have a sodium content in the range 0.1-1.0% w / w, more preferably 0.2-0.9% w / w, even more preferably 0.3-0.7% w / w, and most preferably 0.4-0.6% w / w.
[0131] The inventors have surprisingly discovered that the process cheese of the present invention provides more saltiness per weight percent sodium than a process cheese having a comparable sodium content but based solely on natural cheese.
[0132] Potassium is frequently used as a sodium substitute, but when used at too high a concentration, it has an unpleasant bitter, metallic taste. Therefore, it is often preferred that the inventive processed cheese, and therefore also the dairy blend, have a limited potassium content. In some preferred embodiments of the invention, the processed cheese has a potassium content of at most 1% w / w, more preferably at most 0.6% w / w, even more preferably at most 0.4% w / w, and most preferably at most 0.2% w / w.
[0133] Preferably, the processed cheese has a potassium content in the range 0.01-1% w / w, more preferably 0.02-0.8% w / w, even more preferably 0.03-0.6% w / w, and most preferably 0.05-0.3% w / w.
[0134] In some preferred embodiments of the invention, the processed cheese has a calcium content of at most 1.0% w / w, more preferably at most 0.8% w / w, and most preferably at most 0.6% w / w.
[0135] Preferably, the processed cheese has a calcium content in the range 0.1-1.0% w / w, more preferably 0.2-0.8% w / w, most preferably 0.3-0.6% w / w.
[0136] In addition to calcium, processed cheese typically contains magnesium and other divalent metal cations inherent in dairy preparations, preferably each of these at a concentration that is at most 50% w / w of the concentration of calcium, more preferably at most 30% w / w of the concentration of calcium, and most preferably at most 20% w / w of the concentration of calcium.
[0137] The processed cheese preferably has a magnesium concentration that is at most 50% w / w of the calcium concentration, more preferably at most 30% w / w of the calcium concentration, and most preferably at most 20% w / w of the calcium concentration.
[0138] In some preferred embodiments of the invention, the processed cheese comprises melting salt in an amount of 0.2-4% w / w, more preferably 0.5-3.5% w / w, even more preferably 0.7-3.2% w / w, and most preferably 0.8-3.0% w / w.
[0139] In some preferred embodiments of the invention, the processed cheese comprises melting salt in an amount of 0.2-3.0% w / w, more preferably 0.5-2.5% w / w, even more preferably 0.6-1.5% w / w, and most preferably 0.7-1.0% w / w.
[0140] In some preferred embodiments of the invention, the processed cheese comprises κ-casein in an amount of at least 1% w / w of total protein, more preferably at least 3% w / w, even more preferably at least 5% w / w, and most preferably at least 10% w / w.
[0141] Preferably the processed cheese contains kappa casein in an amount of 1-30% w / w of total protein, more preferably 3-20% w / w, even more preferably 5-15% w / w, most preferably 10-13% w / w.
[0142] For example, it may be preferable for processed cheese to contain kappa casein in an amount of 3-30% w / w of total protein.
[0143] In another preferred embodiment of the invention, the processed cheese is essentially free of para-κ casein, which is typically the case when no cheese is used to make the processed cheese.
[0144] In some preferred embodiments of the invention, the processed cheese has a weight ratio between whey protein and casein of at most 0.5, more preferably at most 0.1, even more preferably at most 0.05, and most preferably at most 0.02.
[0145] The pH of the processed cheese is preferably in the range of 5.0-6.5. More preferably, the pH of the dairy mixture is in the range of 5.4-6.0, and most preferably in the range of 5.5-5.8.
[0146] In some preferred embodiments of the present invention, the process cheese is aseptic, which is particularly useful for long shelf life process cheese that can be stored at ambient temperature.
[0147] In some preferred embodiments of the present invention, the process cheese is an organic process cheese.
[0148] In some particularly preferred embodiments of the present invention, the processed cheese is obtainable by the methods described herein.
[0149] Furthermore, one aspect of the invention relates to the use of the micellar casein isolate defined herein for one or more of the following: - for producing processed cheese and using MCI as an ingredient, which preferably contributes at least 25% w / w of the protein of the processed cheese, more preferably at least 50% w / w, even more preferably at least 70% w / w, and most preferably at least 95% w / w of the protein of the processed cheese, - at least partially replaces the amount of natural cheese used in processed cheese; - Using MCI as an ingredient in processed cheese reduces the amount of melting salt required in processed cheese; - Reducing the sodium content of processed cheese by using MCI as an ingredient in processed cheese; - producing a processed cheese containing sodium in an amount of at most 1.5% w / w, more preferably at most 1.3% w / w, even more preferably at most 1.0, and most preferably at most 0.7% w / w; and -Increasing saltiness / mg sodium in processed cheese.
[0150] Particularly preferred embodiments of the invention are described in the following numbered embodiments: Embodiment 1. The following steps: a) providing a dairy mixture comprising water, melted fat, micellar casein isolate, sodium chloride, and melting salt, wherein the dairy mixture has a pH in the range of 5.0-6.5; b) subjecting the dairy mixture to a heat treatment at a temperature of 80-150°C for a period of 2 seconds to 10 minutes; c) filling the heated dairy mixture into suitable containers, preferably at a temperature of 35-90°C, thereby obtaining a packaged dairy mixture; and d) optionally storing the packaged dairy mix for at least 1 day, preferably at a temperature of 2-40°C; e) optionally cutting the packaged dairy mixture, thereby obtaining a cut dairy mixture; 1. A method for preparing process cheese comprising: The process cheese is the packaged dairy mixture obtained from step c) or d) or the pre-cut, packaged dairy mixture of step e).
[0151] Embodiment 2. A method according to any of the above numbered embodiments, wherein the mci contributes to at least 20% w / w of the protein of the dairy mixture, more preferably at least 25% w / w, even more preferably at least 30% w / w, and most preferably at least 35% w / w.
[0152] Embodiment 3. A method according to any of the above numbered embodiments, wherein the mci contributes to at least 50% w / w of the protein of the dairy mixture, more preferably at least 70% w / w, even more preferably at least 90% w / w, and most preferably at least 95% w / w.
[0153] Embodiment 4. A method according to any of the above numbered embodiments, wherein the mci contributes 40-90% w / w, more preferably 44-85% w / w, even more preferably 48-80% w / w, and most preferably 50-75% w / w of the protein of the dairy blend.
[0154] Embodiment 5. A method according to any one of the above numbered embodiments, wherein the micellar casein isolate has a weight ratio between sodium and protein of at most 0.0057, more preferably at most 0.0023, even more preferably at most 0.0011, and most preferably at most 0.00057.
[0155] Embodiment 6. The method according to any one of the above numbered embodiments, wherein the micellar casein isolate has a weight ratio between potassium and protein of at most 0.011, more preferably at most 0.0057, even more preferably at most 0.0034, and most preferably at most 0.0011.
[0156] Embodiment 7. The method according to any one of the above numbered embodiments, wherein the micellar casein isolate has a weight ratio between calcium and protein of at most 0.046, more preferably at most 0.034, even more preferably at most 0.029, and most preferably at most 0.017.
[0157] Embodiment 8. A method according to any one of the above numbered embodiments, wherein the dairy mixture has a protein content of 7-35% w / w, more preferably 9-30% w / w, and most preferably 11-25% w / w.
[0158] Embodiment 9. A method according to any one of the above numbered embodiments, wherein the dairy mixture has a protein content of 7-30% w / w, more preferably 9-25% w / w, most preferably 11-20% w / w.
[0159] Embodiment 10. A method according to any one of the above numbered embodiments, wherein the dairy mixture comprises native whey protein in an amount of at most 10% w / w, more preferably at most 8% w / w, even more preferably at most 5% w / w, and most preferably at most 2% w / w, based on total protein.
[0160] Embodiment 11. A method according to any one of the above numbered embodiments, wherein the dairy mixture comprises caseinomacropeptide in an amount of at most 8% w / w, more preferably at most 6% w / w, even more preferably at most 3% w / w, and most preferably at most 1% w / w, based on total protein.
[0161] Embodiment 12. A method according to any one of the above numbered embodiments, wherein the dairy mixture comprises casein in an amount of at least 90% w / w, more preferably at least 92% w / w, even more preferably at least 95% w / w, and most preferably at least 98% w / w, based on total protein.
[0162] Embodiment 13. A method according to any one of the above numbered embodiments, wherein the dairy mixture comprises kappa casein in an amount of at least 1% w / w, more preferably at least 3% w / w, even more preferably at least 5% w / w, and most preferably at least 10% w / w, based on total protein.
[0163] Embodiment 14. A method according to any one of the above numbered embodiments, wherein the dairy mixture comprises κ-casein in an amount of 1-30% w / w, more preferably 3-20% w / w, even more preferably at least 5-15% w / w, and most preferably at least 10-13% w / w, based on total protein.
[0164] Embodiment 15. The method according to any one of the above numbered embodiments, wherein the dairy mixture is essentially free of para-κ-casein.
[0165] Embodiment 16. A method according to any one of the above numbered embodiments, wherein the dairy mixture has a weight ratio between whey protein and casein of at most 0.5, more preferably at most 0.1, even more preferably at most 0.05, and most preferably at most 0.02.
[0166] Embodiment 17. The method according to any of the above numbered embodiments, wherein the dairy mixture further comprises cheese.
[0167] Embodiment 18. A method according to any of the above numbered embodiments, wherein the cheese contributes at most 80% w / w of the protein of the dairy mixture, more preferably at most 75% w / w, even more preferably at most 70% w / w, and most preferably at most 65% w / w.
[0168] Embodiment 19. A method according to any of the above numbered embodiments, wherein the cheese contributes at most 50% w / w of the protein of the dairy mixture, more preferably at most 40% w / w, even more preferably at most 10% w / w, and most preferably at most 5% w / w.
[0169] Embodiment 20. A method according to any of the above numbered embodiments, wherein the cheese contributes to at most 40% w / w of the dairy mixture, more preferably at most 35% w / w, even more preferably at most 30% w / w, and most preferably at most 25% w / w.
[0170] Embodiment 21. A method according to any of the above numbered embodiments, wherein the cheese contributes to at most 20% w / w of the dairy mixture, more preferably at most 15% w / w, even more preferably at most 10 w / w, and most preferably at most 5% w / w.
[0171] Embodiment 22. A method according to any one of the above numbered embodiments, wherein the fat of the dairy mixture of step a) comprises one or more of the following sources: butter, AMF, butter oil, whey fat, vegetable oil, and / or mixtures thereof.
[0172] Embodiment 23. A method according to any one of the above numbered embodiments, wherein the dairy mixture has a fat content of 5-40% w / w, more preferably 8-35% w / w, most preferably 10-30% w / w.
[0173] Embodiment 24. A method according to any one of the above numbered embodiments, wherein the dairy mixture has a fat content of 10-40% w / w, more preferably 15-35% w / w, most preferably 20-30% w / w.
[0174] Embodiment 25. A method according to any one of the above numbered embodiments, wherein the dairy mixture further has a carbohydrate content of at most 15% w / w, more preferably at most 10% w / w, and most preferably at most 5% w / w.
[0175] Embodiment 26. A method according to any one of the above numbered embodiments, wherein the micellar casein isolate of the dairy mixture is provided in the form of a powdered micellar casein isolate and / or a liquid micellar casein isolate.
[0176] Embodiment 27. The method according to any one of the above numbered embodiments, wherein the micellar casein isolate comprises at least 60% protein relative to total solids and casein in an amount of at least 90% w / w relative to total protein.
[0177] Embodiment 28. The method according to any of the above numbered embodiments, wherein the dairy blend further comprises skim milk powder, whole milk powder, low-lactose milk powder, lactose-free milk powder, buttermilk powder, ultrafiltered milk powder, reconstituted reconstituted milk powder, whey powder, whey protein concentrate (WPC), whey protein isolate (WPI) and whey protein concentrate (SPC), plant protein and any mixture thereof.
[0178] Embodiment 29. The method according to any one of the above numbered embodiments, wherein the molten salt of the dairy mixture comprises one or more salts selected from the group consisting of monosodium phosphate, disodium phosphate, dipotassium phosphate, trisodium phosphate, sodium metaphosphate, sodium acid pyrophosphate, tetrasodium pyrophosphate, sodium aluminum phosphate, sodium citrate, potassium citrate, calcium citrate, sodium tartrate, and potassium sodium tartrate, and any mixture thereof.
[0179] Embodiment 30. A method according to any one of the above numbered embodiments, wherein the dairy mixture comprises molten salt in an amount of 0.2-4% w / w, more preferably 0.5-3.5% w / w, even more preferably 0.7-3.2% w / w, and most preferably 0.8-3.0% w / w.
[0180] Embodiment 31. The dairy mixture comprises: a fat content of 5-40% w / w, more preferably 8-35% w / w, most preferably 10-30% w / w, a protein content of 7-35% w / w, more preferably 10-30% w / w, most preferably 12-25% w / w, a carbohydrate content of at most 15% w / w, more preferably at most 10% w / w, most preferably at most 5% w / w, a sodium content of at most 1.5% w / w, more preferably at most 1.3% w / w, most preferably at most 1.2% w / w, a solids content of 25-65% w / w, more preferably 30-60% w / w, most preferably 35-55% w / w, 3. The method according to any one of the preceding numbered embodiments, comprising:
[0181] Embodiment 32. A method according to any one of the above numbered embodiments, wherein the pH of the dairy mixture is 5.4-6.0, most preferably 5.5-5.8.
[0182] Embodiment 33. The method according to any one of the above numbered embodiments, wherein the dairy mixture further comprises one or more acidifying agent(s), preferably selected from the group consisting of glucono delta-lactone (GDL), citric acid, phosphoric acid, lactic acid, lemon juice, lime juice, and any mixture thereof.
[0183] Embodiment 34. A method according to any one of the above numbered embodiments, wherein the dairy mixture has a sodium content of at most 1.5% w / w, more preferably at most 1.3% w / w, even more preferably at most 1.2% w / w, and most preferably at most 0.6% w / w.
[0184] Embodiment 35. A method according to any one of the above numbered embodiments, wherein the dairy mixture has a sodium content in the range of 0.1-1.5% w / w, more preferably 0.4-1.3% w / w, and most preferably 0.5-1.2% w / w.
[0185] Embodiment 36. A method according to any one of the above numbered embodiments, wherein the dairy mixture has a sodium content in the range of 0.1-1.0% w / w, more preferably 0.2-0.9% w / w, even more preferably 0.3-0.7% w / w, and most preferably 0.4-0.6% w / w.
[0186] Embodiment 37. A method according to any one of the above numbered embodiments, wherein the dairy mixture has a potassium content of at most 1% w / w, more preferably at most 0.6% w / w, even more preferably at most 0.4% w / w, and most preferably at most 0.2% w / w.
[0187] Embodiment 38. A method according to any one of the above numbered embodiments, wherein the dairy mixture has a potassium content in the range of 0.01-1% w / w, more preferably 0.02-0.8% w / w, even more preferably 0.03-0.6% w / w, and most preferably 0.05-0.3% w / w.
[0188] Embodiment 39. A method according to any one of the above numbered embodiments, wherein the dairy mixture has a calcium content of at most 1.0% w / w, more preferably at most 0.8% w / w, and most preferably at most 0.6% w / w.
[0189] Embodiment 40. A method according to any one of the above numbered embodiments, wherein the dairy mixture has a calcium content in the range of 0.1-1.0% w / w, more preferably 0.2-0.8% w / w, and most preferably 0.3-0.6% w / w.
[0190] Embodiment 41. The heat treatment of step b) is heating the dairy mixture to a temperature of 90-98°C, most preferably 94-96°C, for a period of 4 to 8 minutes, most preferably 5-6 minutes; or - heating the dairy mixture to a temperature of 120-145°C for a period of 2 to 30 seconds; 2. A method according to any one of the preceding numbered embodiments, comprising:
[0191] Embodiment 42. A method according to any one of the above numbered embodiments, wherein the heat treatment of step b) is followed by shearing.
[0192] Embodiment 43. A method according to any one of the above numbered embodiments, wherein the filling temperature in step c) is in the range of 70-90°C, most preferably in the range of 82-88°C.
[0193] Embodiment 44. A method according to any one of the above numbered embodiments, wherein the storage temperature in step d) is 2-40°C, more preferably 2-8°C or 20-40°C.
[0194] Embodiment 45. A processed cheese containing sodium in an amount of at most 1.5% w / w and having: a fat content of 5-40% w / w, more preferably 8-35% w / w, most preferably 10-30% w / w, a protein content of 7-35% w / w, more preferably 10-30% w / w, most preferably 12-25% w / w, a carbohydrate content of at most 15% w / w, more preferably at most 10% w / w, most preferably at most 5% w / w, a solids content of 25-65% w / w, more preferably 30-60% w / w, most preferably 35-55% w / w, and pH of -5.0-6.5.
[0195] Embodiment 46. A processed cheese according to embodiment 45 having a sodium content of 0.1-1.5% w / w, more preferably 0.4-1.3% w / w, most preferably 0.5-1.2% w / w.
[0196] Embodiment 47. A processed cheese according to embodiment 45 having a sodium content in the range of 0.1-1.0% w / w, more preferably 0.2-0.9% w / w, even more preferably 0.3-0.7% w / w, most preferably 0.4-0.6% w / w.
[0197] Embodiment 48. Processed cheese according to any one of embodiments 45-47, wherein the processed cheese comprises melting salt in an amount of 0.2-4% w / w, more preferably 0.5-3.5% w / w, even more preferably 0.7-3.2% w / w, most preferably 0.8-3.0% w / w.
[0198] Embodiment 49. Processed cheese according to any one of embodiments 45-48, wherein the processed cheese comprises kappa casein in an amount of at least 1% w / w, more preferably at least 3% w / w, even more preferably at least 5% w / w, and most preferably at least 10% w / w, based on total protein.
[0199] Embodiment 50. A processed cheese according to any one of embodiments 45-49, wherein the processed cheese comprises kappa casein in an amount of 1-30% w / w, more preferably 3-20% w / w, even more preferably at least 5-15% w / w, and most preferably at least 10-13% w / w, based on total protein.
[0200] Embodiment 51. A processed cheese according to any of embodiments 45-50, essentially free of para-κ-casein.
[0201] Embodiment 52. A processed cheese according to any of embodiments 45-53, having a weight ratio between whey protein and casein of at most 0.5, more preferably at most 0.1, even more preferably at most 0.05, and most preferably at most 0.02.
[0202] Embodiment 53. A processed cheese according to any of the above numbered embodiments, wherein said processed cheese is obtainable by a method according to one or more of embodiments 1-44.
[0203] The present invention has been described above with reference to specific embodiments. However, other embodiments than those described above are equally possible within the scope of the invention. The different features and steps of the various embodiments and aspects of the invention can be combined in ways other than those described herein, unless otherwise stated. Preferred embodiments can be freely combined unless they are mutually exclusive.
[0204] Example Analysis Method Analysis 1: Determination of total protein The content of total protein (pure protein) is determined according to Example 9.2 of WO2018 / 115520.
[0205] Analysis 2: Determination of viscosity The viscosity is determined using a stress-controlled rheometer Physica MCR 301 (Anton Paar, Graz, Austria) equipped with a Peltier temperature control device. The temperature is maintained at 5°C or 20°C by connecting the rheometer to an external water bath (F12, Julabo GmbH, Seelbach, Germany). All measurements are carried out at 5°C or 20°C, and the sample is allowed to equilibrate in the rheometer at the measurement temperature for 5 minutes before starting the shear and measurement. The geometry used is a concentric cylinder measurement system (diameter: 27 mm).
[0206] All samples were subjected to a steady flow test (0-1000 s over 11 min). -1 Shear rate gradient of 145 s -1 The viscosity at is reported as the viscosity value unless otherwise stated.
[0207] Viscosity is given in centipoise (cP). The higher the measured cP value, the higher the viscosity.
[0208] Analysis 3: Insoluble protein material The amount of insoluble protein material in a liquid sample is quantified as the amount of protein removed from the sample by centrifugation at 3000 g for 5 minutes at 22° C. using the following steps: Approximately 20 g of sample is adjusted and equilibrated at 22°C, added to a centrifuge tube, and then centrifuged at 3000 g for 5 minutes at 22°C. Total protein was measured before centrifugation of the samples using Assay 1 (P total ), measured in the supernatant after centrifugation (P 3000g ).
[0209] If the sample is a powder, 10 g of powder is suspended in 90 g of demineralized water and allowed to hydrate with gentle stirring for 1 hour at 22° C. Approximately 20 g of the hydrated sample (e.g., a liquid sample of a suspended powder sample) is analyzed as described above.
[0210] The percentage of insoluble protein material is calculated as follows:
number
[0211] Analysis 4: Determination of ash content Determine the ash content of the food in accordance with NMKL 173:2005 "Ash content in foods, determination by weight."
[0212] Analysis 5: Determination of total solids of the product The total solids of the product can be determined according to NMKL 110 2nd Edition, 2005 (Total solids (water) - determination by weight in milk and dairy products). NMKL is an abbreviation for 'Nordisk Metodikkomite' for Näeringsmidler.
[0213] The water content of the solution can be calculated as 100% minus the relative amount of total solids (% w / w).
[0214] Analysis 6: pH determination All pH values are measured using a pH glass electrode and normalized to 25°C. The pH glass electrode (with temperature compensation) is carefully rinsed and calibrated before use.
[0215] If the sample is in liquid form, the pH is measured directly in the liquid solution at 25°C.
[0216] If the sample is in powder or solid form, 10 grams of powder is dissolved or dispersed in 90 ml of demineralized water at room temperature with vigorous stirring. The pH of the solution is then measured at 25°C.
[0217] Analysis 7: Determination of calcium, magnesium, sodium, potassium, and phosphorus content (ICP-MS method) The total amount of calcium, magnesium, sodium, potassium, and phosphorus is determined according to Example 9.5 of WO2018 / 115520.
[0218] Analysis 8: Determination of total lactose The total lactose content is determined in accordance with ISO 5765-2:2002 (IDF79-2:2002) "Dried milk, dried ice-mixes and processed cheese - Determination of lactose content - Part 2: Enzymatic method utilizing the galactose moiety of the lactose".
[0219] Analysis 9: Determination of total carbohydrates The amount of carbohydrates is determined by using the Sigma Aldrich Total Carbohydrate Assay Kit (Cat MAK104-1KT), where carbohydrates are hydrolyzed and converted to furfural and hydroxyfurfural, which are converted to chromagen, which is monitored spectrophotometrically at 490 nm.
[0220] Analysis 10: Determination of total lipids The amount of lipids is determined according to ISO 1211:2010 (Determination of fat content - Roese-Gottlieb gravimetric method).
[0221] Analysis 11: Determination of casein content relative to total protein The amount of casein is determined according to ISO 17997-1:2004, Milk - Casein - Determination of nitrogen content - Part 1: Indirect method (reference method).
[0222] Analysis 12: Determination of whey protein content relative to total protein The amount of whey protein in the sample is calculated as the amount of total protein minus the amount of casein.
[0223] Assay 13: Determination of kappa-casein content The kappa casein content of the sample is determined according to Holland et al; J. Dairy Sci.; 93; p. 893-900, the sample is first mixed with urea buffer and then homogenized thoroughly.
[0224] Example 1: Two organic slice-contacted processed cheeses with low sodium content This example demonstrates the feasibility of producing slice-to-slice arranged processed cheese using micellar casein isolate without natural cheese (Cheese A) or with some natural cheese in addition to the micellar casein isolate (Cheese B). Both cheeses were fully organic. The two cheeses were produced using the recipes and processes described below. [Table 1]
[0225] Ingredient amounts are provided in % w / w. Micellar casein isolate was prepared from organic skim milk as outlined in Example 1 of PCT / EP2017 / 065315 and had a protein content of 87% w / w, approximately 95% casein relative to total protein, 1% w / w lactose, 1% w / w fat, and 8% ash. The micellar casein isolate contained approximately 0.1% w / w Na, 0.1% w / w Mg, 0.3% w / w K, and 2.5% w / w Ca.
[0226] process -Water, butter and cheese (Cheese B only) were heated to 40°C in a Stephan Cooker UM / SK - The dry ingredients were added to the water and melted butter and mixed thoroughly for 5 minutes at 1500 rpm. The pH of the mixture was adjusted to 5.6 by adding lactic acid. The pH-adjusted mixture was heated to 95°C by direct heating and held at that temperature for 5 minutes. After the heat treatment, the mixture was hot-filled (85°C) into containers and cooled to 5°C. - Packaged processed cheese was stored at 5°C and then cut into slices which were arranged slice to slice contact.
[0227] The nutritional values of the two cheese samples are shown below. [Table 2]
[0228] The pH of Process Cheeses A and B was approximately 5.7. Process Cheese A contained 11% kappa casein based on total protein, and Process Cheese B contained 7% kappa casein based on total protein.
[0229] The cheese slice samples were subjected to sensory evaluation by a test panel trained in dairy tasting and were surprisingly found to have a creamy, smooth, and aromatic taste despite the reduced natural cheese content. Two cheese samples were further found to have significantly higher saltiness levels than would be expected from a low-sodium product.
[0230] Both cheeses were surprisingly found to have low stickiness when sliced, making them very suitable for process cheese slices arranged in slice-to-slice contact.
[0231] MCI has been shown to have good emulsifying and texturizing properties for process cheese production.
[0232] Example 2: Organic Cheese Snacks with Low Sodium Content This example demonstrates the feasibility of producing a completely organic processed cheese-based snack product suitable for children. The processed cheese-based snack product uses only 30% natural cheese and is supplemented with micellar casein isolate. The cheese snack was produced using the recipe described below and the process described in Example 1. [Table 3]
[0233] Ingredient amounts are provided in % w / w.
[0234] The nutritional values of the resulting cheese samples are shown below. [Table 4]
[0235] The pH of Processed Cheese C was approximately 5.7. Processed Cheese C contained κ-casein in an amount of 6% of the total protein.
[0236] The cheese snack samples were subjected to sensory testing by a test panel trained in dairy product tasting.Similar to the cheese slices of Example 1, the cheese snacks were surprisingly found to have a creamy, smooth, and aromatic taste, despite the reduced content of natural cheese.The cheese snacks were also found to have a significantly higher saltiness level than would be expected from a low-sodium product.
[0237] Again, MCI has proven to have good emulsifying and texturizing properties for process cheese production.
[0238] Example 3: Organic Processed Cheese Spread with Low Sodium Content This example demonstrates the feasibility of producing an all-organic processed cheese-based spread product. The processed cheese-based spread product uses only 25% natural cheese and is supplemented with micellar casein isolate. The cheese spread was produced using the recipe and process described below. [Table 5]
[0239] process - Cheese, butter and water were added to a Tetrapak high shear batch mixer and heated to 47°C using indirect heat (50% speed) - The dry ingredients were added to the mixture and mixed at high shear (50-65% speed) under vacuum (500-600 mbar) for 4 minutes. The pH of the mixture was adjusted to pH 5.8 using lactic acid (80% purity). The pH adjusted mixture was then heated to 60°C using indirect heat and low shear (30% speed), then heated to 90°C using direct steam and held at that temperature for 5 minutes (30% speed). The cooked mixture was then subjected to shear for 10-15 minutes (15% speed) at 85°C. Finally, the mixture was hot filled into cups at 85°C, which were sealed and stored chilled at approximately 5°C.
[0240] The nutritional values of the resulting cheese samples are shown below. [Table 6]
[0241] The pH of Processed Cheese D was approximately 5.7. Processed Cheese D contained κ-casein in an amount of 4% of the total protein.
[0242] The cheese spread samples were subjected to sensory testing by a test panel trained in dairy product tasting. Similar to the cheese slices of Example 1 and the cheese snacks of Example 2, the cheese spread was surprisingly found to have a creamy, smooth, and aromatic taste, despite the reduced content of natural cheese. The cheese spread was also found to have a clean, milky taste and a significantly higher saltiness level than would be expected from a low-sodium product.
[0243] The inventors were further surprised to find that even though the cheese spread contained only 25% natural cheese, this did not appear to detract from the firmness, texture and spreadability of the product.
[0244] Again, MCI has proven to have good emulsifying and texturizing properties for process cheese production.
[0245] Example 4: Sweet Processed Cheese Snacks with Low Sodium Content This example demonstrates the feasibility of producing sweet processed cheese snacks, including fruit or caramel flavors. The processed cheese snack product uses only 18% cream cheese and is supplemented with 19% micellar casein isolate. The cheese snacks were produced using the recipe and process described below: [Table 7]
[0246] The micellar casein isolate powder was similar to that used in Example 1, but contained approximately 96% w / w total solids, approximately 80% w / w protein of total solids, and approximately 95% w / w casein of total protein.
[0247] A caramel flavored processed cheese snack was also prepared using the above recipe but substituting cream caramel flavor and brown color for the flavor and color.
[0248] A strawberry flavored processed cheese snack was also prepared using the above recipe but substituting strawberry flavor and red color for the flavor and color.
[0249] process -Cream cheese, butter and water were added to a Sharp Batch Cooker and heated to 45°C using indirect heat while mixing (1000 rpm for 5 minutes) -The dry ingredients were added to the mixture and mixed for 4 minutes. The pH of the mixture was adjusted to pH 5.5 with citric acid. The pH adjusted mixture was then heated to 60°C using indirect heating with low shear (750 rpm), then heated to 92°C and held at that temperature for 5 minutes (750 rpm). Finally, the mixture was hot-filled into cups at 80°C, which were sealed and stored chilled at approximately 5°C.
[0250] The nutritional values of the resulting cheese snacks are shown below. [Table 8]
[0251] The pH of the processed cheese snack was approximately 5.5. The processed cheese snack contained kappa casein in an amount of approximately 8% w / w of total protein.
[0252] The sweet processed cheese snacks were subjected to sensory testing by a test panel trained in dairy product tasting. Similar to the cheese slices of Example 1 and the cheese snacks of Example 2, the sweet processed cheese snacks were found to have a creamy, smooth, and aromatic taste, despite the reduced natural cheese content. The cheese snacks were also found to have a clean, milky taste and a significantly higher saltiness level than would be expected from a low-sodium product. The inventors also observed that processed cheeses based on a significant amount of micellar casein had less umami than conventional processed cheeses, which they believe contributes to the improved taste of the product.
[0253] The inventors were further surprised to find that even though the cheese snack contained only 18% cream cheese, it did not compromise the firmness and texture of the processed cheese product.
[0254] Again, MCI has proven to have good emulsifying and texturizing properties for process cheese production.
Claims
1. 1. A method for preparing a processed cheese containing sodium in an amount of at most 1.5% w / w based on the weight of the processed cheese and kappa casein in an amount of 3-30% w / w based on the total protein, comprising the steps of: a) providing a dairy mixture comprising water, melted fat, micellar casein isolate (MCI), sodium chloride, and melting salt, said dairy mixture having a pH in the range of 5.0-6.5, said MCI contributing at least 35% w / w of protein of said dairy mixture, and said dairy mixture having a sodium content of at most 1.5% w / w; b) subjecting said dairy mixture to a heat treatment at a temperature of 80-150°C for a period of 2 seconds to 10 minutes; c) filling the dairy mixture obtained from step b) into suitable containers, thereby obtaining a packaged dairy mixture; and d) optionally storing the packaged dairy mixture for at least 1 day. A method comprising:
2. 2. The method of claim 1, wherein the temperature during step c) is in the range of 35-90°C.
3. 3. The method of claim 1 or 2, further comprising a step e) of cutting the dairy mixture obtained from step c) or step d), thereby obtaining a cut dairy mixture.
4. The processed cheese is - the packaged dairy mixture obtained from step c), - the packaged dairy mixture obtained from step d), or - the cut dairy mixture of step e) The method according to any one of claims 1 to 3, wherein
5. The method of any one of claims 1 to 4, wherein the MCI contributes at least 50% w / w of the protein of the dairy mixture.
6. The method according to any one of claims 1 to 5, wherein the MCI has a weight ratio between sodium and protein of at most 0.0057.
7. The method according to any one of claims 1 to 6, wherein the dairy mixture has a protein content of 7-35% w / w.
8. 8. The method according to any one of claims 1 to 7, wherein the dairy mixture comprises native whey protein in an amount of at most 10% w / w relative to total protein.
9. 9. The method of any one of claims 1 to 8, wherein the dairy mixture comprises casein in an amount of at least 90% w / w based on total protein.
10. 10. The method of any one of claims 1 to 9, wherein the dairy mixture comprises kappa casein in an amount of at least 3% w / w based on total protein.
11. The method of any of claims 1 to 10, wherein cheese contributes at most 65% w / w of the protein of the dairy mixture.
12. The method according to any one of claims 1 to 11, wherein the pH of the dairy mixture is 5.4-6.
0.
13. 13. The method according to any one of claims 1 to 12, wherein the dairy mixture has a sodium content of at most 1.3% w / w.
14. 14. The method according to any one of claims 1 to 13, wherein the dairy mixture has a potassium content in the range of 0.01-1% w / w.
15. containing sodium in an amount of at most 1.5% w / w; and - a fat content of 5-40% w / w, - a protein content of 7-35% w / w, a carbohydrate content of at most 15% w / w, - a solids content of 25-65% w / w, - a content of kappa casein in an amount of 3-30% w / w relative to the total protein, and pH of -5.0-6.5 A processed cheese having A processed cheese wherein MCI contributes at least 35% w / w of the protein of said processed cheese.
16. 16. The processed cheese of claim 15, wherein the processed cheese contains kappa casein in an amount of 3-20% w / w.
17. Processed cheese according to claim 15 or 16 obtainable according to one or more of claims 1-14.
18. 1. Use of micellar casein isolate (MCI) as an ingredient in the production of processed cheese, wherein the MCI contributes at least 35% w / w of the protein of the processed cheese, for one or more of the following uses: - reducing the amount of melting salt required in processed cheese by using the MCI as an ingredient in the processed cheese; - reducing the sodium content of processed cheese by using the MCI as an ingredient in the processed cheese; and -Increase the saltiness per mg sodium of processed cheese.
Citation Information
Patent Citations
Processed cheese
JP2003033136A
dairy products
JP2004510445A
Molten salt-free cheese and method for producing the same
JP2016195554A
Milk products with increased water binding
US20150150274A1
Thread-forming processed cheese and method for manufacturing same
WO2013031959A1