Use of human milk oligosaccharides in calves fattening

HK40137634APending Publication Date: 2026-09-18OLIGOSCI BIOTECH GMBH
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Patent Information

Application Number
HK42026125832
Authority / Receiving Office
HK · HK
Patent Type
Applications
Current Assignee / Owner
Priority Date
2016-08-31
Filing Date
2026-07-07
Publication Date
2026-09-18
Estimated Expiration
2037-08-28
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Abstract

The invention provides an application of human milk oligosaccharide in calf fattening. The present invention relates to the use of human milk oligosaccharides for feeding production animals such as calves. The invention also relates to a milk replacer composition containing human milk oligosaccharides. Another subject of the invention is a method of preventing and treating gastrointestinal diseases, in particular gastrointestinal infections, in young production animals, in particular calves, by administering an effective amount of one or more human milk oligosaccharides. In the context of the present invention, 2 '-fucosyllactose (2-FL) is particularly useful as one or said human milk oligosaccharide.
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Description

(19) State Intellectual Property Office (12) Invention Patent Application (10) Application Publication Number (43) Application Publication Date (21) Application Number 202610048061.8 (22) Application Date 2017.08.29 (30) Priority Data 16186533.2 2016.08.31 EP (62) Divisional Application Data 201780052697.9 2017.08.29 (71) Applicant Olig Biosciences GmbH Address Germany (72) Inventor M. Peracha S. Wimhoff (74) Patent Agency Beijing Kangxin Intellectual Property Agency Co., Ltd. 11240 Patent Attorney Li Haixia (51) Int.Cl. A23K 20 / 163 (2016.01) A23K 50 / 10 (2016.01) A23K 50 / 60 (2016.01) (54) Title of Invention: Use of Human Milk Oligosaccharides in Calf Fattening (57) Abstract: This application provides the use of human milk oligosaccharides in calf fattening. The present invention relates to the use of human milk oligosaccharides in feeding production animals such as calves. The present invention also relates to milk substitute compositions containing human milk oligosaccharides. Another subject of the present invention is a method for preventing and treating gastrointestinal diseases (especially gastrointestinal infections) in young production animals (especially calves) by applying an effective amount of one or more human milk oligosaccharides. In the context of the present invention, 2'-fucosylated lactose (2-FL) is particularly useful as or said human milk oligosaccharides. Claims (1 page), Description (5 pages), CN 121910097 A, 2026.04.24, CN 1 21 91 00 97 A 1. Use of a milk substitute composition containing 2'-fucosylated lactose in the feeding of producing animals, wherein the 2'-fucosylated lactose is prepared in bacterial culture; wherein the content of carbohydrates other than human milk oligosaccharides in the composition does not exceed 50% by weight. 2. The use according to claim 1, wherein the producing animal is any one of calves, lambs, goats, and foals. 3. The use according to claim 1, wherein the producing animal is a calf. 4. The use according to claim 1, wherein the producing animal is a fattening calf. 5. The use according to claim 4, wherein the milk substitute composition containing 2'-fucosylated lactose is used to regulate mucosal immunity in fattening calves. 6. The use as claimed in claim 1, wherein the composition has a protein level of 18% to 22% by weight and a fat level of 10% to 28% by weight.7. Use of a milk substitute composition containing 2'-fucosylvose in the preparation of a medicament for treating or preventing gastrointestinal diseases in production animals, wherein the 2'-fucosylvose is prepared in bacterial culture; wherein the content of carbohydrates other than human milk oligosaccharides in the composition does not exceed 50% by weight. 8. The use of claim 7, wherein the production animal is any one of calves, lambs, goats, and foals. 9. The use of claim 7, wherein the production animal is a fattening calf. 10. The use of claim 9, wherein the milk substitute composition containing 2'-fucosylvose is used to modulate mucosal immunity in fattening calves. 11. The use of claim 7, wherein the composition has a protein level of 18% to 22% by weight and a fat level of 10% to 28% by weight. 12. A method of feeding fattening calves, comprising the step of feeding the fattening calves a milk substitute composition containing 2'-fucosylated lactose, wherein the 2'-fucosylated lactose is prepared in a bacterial culture; wherein the content of carbohydrates other than human milk oligosaccharides in the composition does not exceed 50% by weight. 13. The method of claim 12, wherein the composition has a protein level of 18% to 22% by weight and a fat level of 10% to 28% by weight. Claims 1 / 1 page 2 CN 121910097 A Use of Human Milk Oligosaccharides in Calf Fattening

[0001] This application is a divisional application of Chinese Patent Application No. 201780052697.9 entitled "Use of Human Milk Oligosaccharides in Calf Fattening" filed on August 29, 2017. Technical Field

[0002] The present invention relates to the use of human milk oligosaccharides in feeding production animals such as calves. The present invention also relates to milk substitute compositions comprising human milk oligosaccharides. Another subject of the invention is a method for preventing and treating gastrointestinal diseases (especially gastrointestinal infections) in young producing animals (especially calves) by applying an effective amount of one or more human milk oligosaccharides. In the context of the invention, 2'-fucosylated lactose (2-FL) is particularly useful as one or more of the human milk oligosaccharides. Background Art

[0003] The feeding of healthy calves is the foundation of success in the dairy industry.Healthy calves obtained through optimal agriculture and care, early development of gastroesophageal vestibular function, and economically sound feeding are several goals of calf rearing (Steinwunder et al. (2005) Milchviehfütterung, Tier- und Leistungsgerecht. Leopold Stocker Verlag, Graz; Drochner, W. (2008): Fütterung der Rinder. in: Jeroch et al. (ed.) Ernahrung landwirtschaftlicher Nutztiere, 2nd ed. Eugen Ulmer KG, Stuttgart, pp. 385-467).

[0004] Successful rearing is associated with minimizing animal loss, which is considered the most critical issue. In Germany, losses have increased by 8% to 14% over the years (see, for example, Röhrmoser (1995): Aufzucht des Rindes. in: Matzke et al. (eds.) Wirtschaftliche Milchviehhaltung und Rindermast. 3rd ed., Frankfurt am Main, Verlag Union Agrar, pp. 221–261). The target should be to achieve losses of about 5%. Optimized calf feeding can help achieve this goal. Several preventative measures have been proposed in feeding, such as reducing calf diarrhea (Schrag et al. (1984) Gesunde Kälber-Gesunde Rinder. Die wichtigsten Krankheiten in Aufzucht und Mast. Erkennung, Vorbeuge, Behandlung. 3rd ed. Henbersberg, Schober Verlags-GmbH, pp. 249–276). These measures focus on a well-developed gut microbiota and gut health. The inclusion of various prebiotics in dairy substitutes has been proposed to improve and maintain gut health (Dohms (2004) Aspekte der Darmgesundheit und Chancen fur den Einsatz von Probiotika, 4th ed.).

[0005] Human milk oligosaccharides (HMOs) are a rich and diverse family of unbound polysaccharides that are unique to human milk; for example, as reviewed in Bode (2012) Glycobiology 22 (9), pp. 1147-1162.

[0006] WO-A-2012 / 158517 discloses the use of human milk oligosaccharides, particularly 2'-fucosylated lactose, for promoting the growth of bacteria found in infant feces. This prior art also intends to use human milk oligosaccharides as prebiotics for the nutrition of various mammals; however, no experimental data are provided other than the promotion of Enterobacter growth, and therefore the use of human milk oligosaccharides to feed animals remains speculative. Summary of the Invention

[0007] The technical problem to be solved by the present invention is to provide improved feeding for young producing animals, particularly calves, especially by improving their feeding.

[0008] The solution to the above-mentioned technical problem is provided by the embodiments of the present invention described herein, and as defined in the claims.

[0009] In particular, the present invention relates to novel milk substitute compositions comprising at least one human milk oligosaccharide. Detailed Description

[0010] According to the present invention, a “human milk oligosaccharide” is a sugar molecule composed of at least three carbohydrate entities present in female breast milk or pre-milk. Preferably, an HMO is an oligosaccharide composed of 3, 4, 5, 6, 7, 8, 9, 10 or more sugar entities, and oligosaccharides comprising more than four entities may be linear or branched oligomers. HMOs are typically composed of monosaccharides glucose, galactose, N-acetylglucosamine, N-acetyllactosamine, fucose, and N-acetylneuraminic acid. Most HMOs used in the present invention are based on disaccharides lactose or N-acetyllactosamine, with lactose-based HMOs being particularly preferred.

[0011] In the context of the present invention, preferred human milk oligosaccharides include, but are not limited to, 2'-fucosyllactose (2-FL), 3'-fucosyllactose (3-FL), 3'-sialyllactose (3-SL), 6'-sialyllactose (6-SL), lact-N-tetrasaccharide (LNT), lact-N-neotetrasaccharide (LNnT), lact-N-hexasaccharide (LNH), isoylacto-N-octasaccharide, isoylacto-N-neooctasaccharide, para-lacto-N-octasaccharide, lact-N-fucopentose I (LNFP I), lact-N-fucopentose II (LNFP II), lact-N-fucopentose III (LNFP III), lact-N-fucopentose V (LNFP V), LS-tetrasaccharide a (LST a), LS-tetrasaccharide b (LST b), LS-tetrasaccharide c (LST c), and disialyllacto-N-tetrasaccharide (DSLNT).

[0012] Particularly preferred HMOs for use in this invention are human lactotrisaccharides 3-FL and 2-FL.Recently, biotechnological production of 2-FL has been provided (see WO-A-2010 / 070104), making this basic HMO available on an industrial scale (Jennewein Biotechnologie GmbH, Rheinbreitbach, Germany). Therefore, the HMO in the milk substitute composition is preferably a synthetic HMO prepared in bacterial culture, particularly using genetically modified bacteria taught in WO-A-2010 / 070104. In the context of this invention, 2-FL, particularly synthetic 2-FL as described above, and higher HMOs based on 2-FL are generally preferred, and 2-FL is the most preferred HMO for carrying out this invention.

[0013] This invention also relates to milk substitute compositions comprising more than one specific HMO, wherein a mixture of two or more of the aforementioned HMOs is preferred. Particularly preferred are HMO mixtures in which one of the HMOs in the mixture is 2-FL or 3-FL, or the mixture comprises 2-FL and 3-FL, as well as a third, fourth, fifth, or other HMO. In the context of this invention, the combination of 2-FL and 3-FL is most preferred.

[0014] Of course, the milk substitute compositions of this invention may also contain other sugars besides HMOs. In this document, lactose and N-acetyllactosamine are referred to as other preferred oligosaccharides.

[0015] “milk substitute” or “milk substitute composition” refers to a nutritional composition for feeding production animals, preferably selected from cattle, goats, sheep, pigs, deer and horses, especially infant and young production animals. According to this invention, the terms “milk substitute” and “milk substitute composition” also include the definition provided in Article 3(2) of Regulation (EC) 767 / 2009, wherein “milk substitute” means “a compound feed which is administered in dry form or diluted in a given amount of liquid as a supplement or substitute for hindmilk for feeding young animals, or for feeding young animals such as calves, lambs or goats for slaughter.”

[0016] Therefore, the milk substitute compositions of this invention generally contain one or more HMOs as described above, as well as a basic milk substitute composition. The term "milk substitute composition" in this invention refers to compositions in both a dry form and a liquid form, the liquid form typically obtained by reconstituted the dry composition with water.The basic nutritional composition used to provide the milk replacer composition of the present invention is known in the art (for an overview of calf milk replacers, see, for example, Bovine Alliance on Management, 2 / 5 pages, CN 121910097 A and Nutrition (BAMN), 2008, A GUIDE TO CALF MILK REPLACERS, available online at https: / / www.aphis.usda.gov / animal_health / nahms / dairy / downloads / bamn / BAMN08_GuideMilkRepl.pdf; and Kamphues et al. (2004) Supplemente zu Vorlesungen und Ubungen in der Tierernahrung, Hannover, Verlag M. & H. Schaper Alfred).

[0017] Therefore, the milk replacer compositions of the present invention generally contain at least protein and fat sources, which are optionally reconstituted in an aqueous liquid (wherein the components may be present in an aqueous base in the form of suspensions, emulsions, and / or solutions), and are generally mixed with other ingredients such as carbohydrates, fiber, vitamins, mineral supplements, and other additives such as pharmaceuticals, emulsifiers, thickeners, trace elements, antioxidants, and flavorings.

[0018] Milk replacer compositions are generally classified according to the source of their protein and / or fat components. Typical protein sources for milk replacer compositions, particularly those intended for calf feeding, include skim milk powder, whey powder, and plant protein sources such as soy protein, soy flour, wheat gluten, or wheat isolate. The fat component of milk replacers may be derived from animal fats or vegetable oils.

[0019] Protein and fat levels are important characteristics of the milk replacer compositions used in the present invention. The preferred protein level in calf milk replacer is typically about 18% by weight to about 22% by weight, most preferably about 20% by weight, and the preferred fat level is about 10% by weight to about 28% by weight, more preferably about 18% by weight to about 23% by weight. The levels of these components also vary depending on the type of animal being fed. For example, for breeding calves, the fat level is typically about 13% by weight to about 20% by weight, while for finishing calves (i.e., calves intended for slaughter), the fat level in the milk replacer composition should be increased to about 23% by weight. Another specific consideration in producing milk replacer compositions is the carbohydrate-to-protein ratio. For example, pure dried whey contains about 70% by weight of lactose and about 12% by weight of protein.To implement this invention, the content of carbohydrates, particularly lactose, glucose, and sucrose (excluding HMO content), should preferably not exceed about 50% by weight to prevent undue fermentation in the colon due to high throughput (Kamphues (2004), ibid.).

[0020] A typical basic dairy substitute composition used in this invention contains more than 22% by weight of crude protein, more than 20% by weight of crude fat, no more than about 0.15% by weight of crude fiber, calcium in amounts from about 0.75% by weight to about 1.75% by weight, at least about 0.7% by weight of phosphorus, at least about 20,000 IU / Ib of vitamin A, at least about 5,000 IU / Ib of vitamin D3, and about 100 IU / Ib of vitamin E.

[0021] Based on the total weight of the composition, the milk replacer composition according to the invention typically contains about 0.5% to 10.0% by weight, preferably about 1% to 5% by weight, and most preferably 4% by weight of an amount of HMO (which may be a single type of HMO, such as 2-FL, or a mixture of two or more different HMOs).

[0022] The invention also relates to the use of HMOs (one or more HMOs) for feeding production animals, particularly young production animals such as calves, lambs, goats, and foals. HMOs are particularly useful in calf fattening.

[0023] The invention also relates to a method for feeding production animals, particularly young production animals such as calves, lambs, goats, and foals, comprising the step of feeding the production animals the milk replacer composition of the invention. The feeding method of the invention improves the feed intake and performance parameters of production animals, particularly in the case of calf fattening. The particular benefit of using HMOs as an ingredient in milk replacer compositions as taught herein is the improvement in the overall condition of fed production animals, particularly calves, lambs, goats, and foals, thereby improving the performance parameters of animals fed with milk replacers according to the invention. The milk replacer compositions of the invention reduce animal losses, particularly by preventing intestinal diseases that cause diarrhea, such as bacterial or viral intestinal infections. Without wishing to be bound by any theory, it is believed that HMOs improve the growth of beneficial gut bacteria, thereby reducing the relative number of pathogens, while preventing or at least hindering the binding of pathogens such as pathogenic Enterobacteriaceae and viruses to intestinal receptors. HMOs are also believed to improve the gut microbiota of animals, modulate mucosal immunity, and enhance the animal's resistance to atopic conditions. Specification 3 / 5 pages 5 CN 121910097 A

[0024] In the context of the invention, HMOs are particularly useful in improving the health of production animals such as calves, lambs, goats, and foals.In particular, HMOs (as described above, which can be administered alone or as a mixture of HMOs) are used in the production animals to prevent and treat, and at least reduce, the occurrence (or at least shorten the duration) of gastrointestinal diseases, particularly bacterial and viral gastrointestinal diseases (such as diarrhea). HMOs are also useful in the prevention and treatment of atopic diseases in production animals (preferably those defined above), which are conditions associated with a hypersensitive response of the body to foreign substances. Furthermore, HMOs are useful for improving mucosal immunity in production animals (particularly those mentioned above). According to the invention, HMOs also improve the gut microbiota of production animals such as calves, lambs, goats, and foals. HMOs can be administered alone or in the form of a composition, preferably orally, and can also be in the form of a milk replacer composition as defined herein. The pharmaceutical composition can also be in the form of tablets or capsules administered separately from any feeding composition. Therefore, the present invention also relates to a method for preventing or treating gastrointestinal diseases (e.g., bacterial and viral infections of the gastrointestinal system, such as diarrhea) in producing animals (preferably juvenile producing animals as described above), the method comprising the step of administering to the producing animal a safe and effective amount of at least one HMO or a composition containing two or more HMOs. The present invention also relates to the use of at least one HMO or a composition containing two or more HMOs in the preparation of a medicament for preventing or treating the above-mentioned conditions.

[0025] The present invention is further illustrated by the following non-limiting examples: Example Example 1: Feeding breeding calves with milk replacer containing HMOs Materials and methods: Sixty calves (Deutsche Holstein) were divided into two groups (control group and experimental group, 30 calves in each group) with equal numbers of males (15 / 30) and females (15 / 30) animals. The average age of the calves was 7 days. Each animal in both groups was kept individually fed. At 14 days of age, the calves were divided into two groups, each kept in a different but otherwise identical barn. Animals were fed the milk replacer composition via an automatic water dispenser. The animals had free access to water. In addition, each animal was given 150 g of hay daily. From week 8, a concentrated feed was administered via an automatic dispenser. Both groups were fed the same milk replacer composition except for HMO. The experimental group was fed the basal milk replacer composition plus 4% by weight 2-FL. The control group was fed an additional 4% by weight whey powder instead of HMO. One liter of liquid milk replacer composition contained 125 g of dry milk replacer concentrate.

[0026] The following table shows the feeding protocol:

[0027] Duration of the experiment: 77 days

[0028] Data collection: Feeding was carried out by an automatic feeder with individual animal identification, measuring the food intake of each individual; hay and feed concentrate data were collected by weighing; each animal was weighed daily; body temperature was measured under the tongue at the automatic feeder, and rectal measurements were taken weekly for comparison and control; health status and medication were controlled; feces for intestinal bacterial colonization were analyzed weekly.

[0029] Feed analysis. Analysis of milk replacer, hay and feed concentrate. Instruction manual 4 / 5 pages 6 CN 121910097 A

[0030] Example 2: Feeding fattening calves with milk replacer containing HMO

[0031] Materials and methods: Sixty breeding Fleckvieh calves were divided into two groups (control / experiment), with 30 calves in each group. Both groups contained equal numbers of male (15 / 30) and female (15 / 30) calves. The average age of the animals was 14 days (live weight 50 kg–60 kg). Each group of animals was kept in an identical barn. The animals were fed a milk replacer composition via an automatic water dispenser. The animals had free access to water. In addition, each animal was given 300 g of hay per day. Both groups were fed the same milk replacer composition except for HMO. The experimental group was fed a basal milk replacer composition plus 4% wt% 2-FL. The control group was fed an additional 4% wt% whey powder instead of HMO. At the start of the experiment, 1 liter of liquid feed composition contained 125 g of dry milk replacer concentrate. At the end of the experiment, the concentration of the liquid feed composition was increased to 250 g / L.

[0032] The feeding protocol is as follows:

[0033] Duration of the experiment: The experiment began at approximately 14 days of age and ended with a final slaughter weight of approximately 230 kg to 240 kg (approximately week 22 of the experiment), lasting approximately 140 days.

[0034] Data collection: Feeding was conducted via an automated feeder with individual animal identification, measuring the food intake of each individual; hay and feed concentrate data were collected by weighing; each animal was weighed daily; body temperature was measured sublingually at the automated feeder, and rectal measurements were taken weekly for comparison and control; health status and medication were controlled; fecal analysis was performed weekly for intestinal bacterial colonization. Post-slaughter, the physical condition of each animal was assessed.

[0035] Feed analysis. Analysis of milk replacer and hay.DESCRIPTION Page 5 of 7 CN 121910097 A Abstract Abstract: The present application provides use of human milk oligosaccharides in calf fattening. The present invention relates to the use of human milk oligosaccharides for feeding production animals such as calves. The present invention further relates to milk replacer compositions containing human milk oligosaccharides. A further subject matter of the present invention is a method for preventing and treating gastrointestinal diseases, particularly gastro-intestinal infections, in young production animals, in particular calves, by administering an effective amount of one or more human milk oligosaccharides. Particularly useful in the context of the present invention as the human milk oligosaccharide is 2'-fucosyllactose (2-FL).

Claims

1. Use of a milk substitute composition containing 2'-fucosylated lactose in the feeding of production animals, wherein the 2'-fucosylated lactose is prepared in bacterial culture; wherein the content of carbohydrates other than human milk oligosaccharides in the composition does not exceed 50% by weight.

2. The use as described in claim 1, wherein, The production animal is any one of calves, lambs, goats, and foals.

3. The use as described in claim 1, wherein, The animal used for production is a calf.

4. The use as described in claim 1, wherein, The production animal is a fattening calf.

5. The use as described in claim 4, wherein, The dairy substitute composition containing 2'-fucosylated lactose is used to regulate mucosal immunity in fattening calves.

6. The use as described in claim 1, wherein, The composition has a protein level of 18% to 22% by weight and a fat level of 10% to 28% by weight.

7. Use of a milk substitute composition containing 2'-fucosylated lactose in the preparation of a medicament for treating or preventing gastrointestinal diseases in production animals, wherein the 2'-fucosylated lactose is prepared in a bacterial culture; and wherein the composition contains no more than 50% by weight of carbohydrates other than human milk oligosaccharides.

8. The use as described in claim 7, wherein, The production animal is any one of calves, lambs, goats, and foals.

9. The use as described in claim 7, wherein, The production animal is a fattening calf.

10. The use as described in claim 9, wherein, The dairy substitute composition containing 2'-fucosylated lactose is used to regulate mucosal immunity in fattening calves.

11. The use as described in claim 7, wherein, The composition has a protein level of 18% to 22% by weight and a fat level of 10% to 28% by weight.

12. A method of feeding fattening calves, comprising the step of feeding the fattening calves a milk substitute composition containing 2'-fucosylated lactose, wherein the 2'-fucosylated lactose is prepared in a bacterial culture; wherein the content of carbohydrates other than human milk oligosaccharides in the composition does not exceed 50% by weight.

13. The method of claim 12, wherein, The composition has a protein level of 18% to 22% by weight and a fat level of 10% to 28% by weight.