Composition for controlling growth of fusicatenibacter bacteria
A composition of kojibiose or oligosaccharides is used to control the proliferation of Fusicatenibacter bacteria in the intestine, addressing the need to manage their growth for disease prevention and improvement.
Patent Information
- Application Number
- PCT/JP2024/042333
- Authority / Receiving Office
- WO · WO
- Patent Type
- Applications
- Current Assignee / Owner
- Priority Date
- 2023-12-01
- Filing Date
- 2024-11-29
- Publication Date
- 2025-06-05
AI Technical Summary
There is a need to control the proliferation of Fusicatenibacter bacteria in the human intestine to prevent or improve various diseases, as their abundance is linked to health conditions such as ulcerative colitis and Parkinson's disease.
A composition containing kojibiose or oligosaccharides with kojibiose as a constituent sugar is used to control the growth of Fusicatenibacter bacteria, acting as a prebiotic or synbiotic to promote or regulate their proliferation.
The use of kojibiose and oligosaccharides effectively increases the number of Fusicatenibacter bacteria in the intestine, which can lead to the prevention or improvement of diseases such as inflammatory bowel disease and Parkinson's disease.
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Figure JP2024042333_05062025_PF_FP_ABST
Abstract
Description
Composition for controlling the growth of bacteria of the genus Fusicatenibacter
[0001] The present invention relates to a composition for controlling the growth of bacteria of the genus Fusicatenibacter.
[0002] Fusicatenibacter bacteria are bacteria found in the human intestinal flora. Non-Patent Document 1 reports that Fusicatenibacter saccharivorans is significantly less abundant in patients with ulcerative colitis than in healthy individuals. This document also reports that administration of heat-killed Fusicatenibacter saccharivorans to a mouse model of oxazolone-induced colitis suppressed inflammation, suggesting a mechanism mediated by suppression of IL-10 and IL-13, whose production was increased by oxazolone. Non-Patent Document 2 reports that patients with low Fusicatenibacter bacterial counts are predicted to have symptoms of Parkinson's disease, and that such a decrease in bacterial counts is not the result of symptom progression. Furthermore, Non-Patent Document 3 reports that Fusicatenibacter bacteria are distributed at high frequencies and in high numbers in adults, but are distributed at low frequencies in elderly people, with bacterial counts being approximately 1 / 10 of those in adults.
[0003] Regarding Fusicatenibacter bacteria, Patent Document 1 describes a composition for promoting the growth of Fusicatenibacter bacteria, which contains indigestible dextrin as an active ingredient. Patent Document 2 also describes a composition containing a live bacterial strain of the Fusicatenibacter genus for use in therapy, and describes that this composition is for use in a method for treating or preventing a disease or disorder selected from the group consisting of diseases, disorders, or conditions of the central nervous system, disorders of intestinal barrier function, diseases associated with increased intestinal permeability, inflammatory diseases, metabolic diseases, and cardiovascular diseases.
[0004] On the other hand, kojibiose is known to have the effect of promoting the growth of bifidobacteria (e.g., Non-Patent Document 4). Furthermore, Patent Document 3 describes an in vivo lipid regulating agent containing one or more active ingredients selected from kojibiose, kojitriose, kojibiosyl glucoside, kojitetraose, and kojitriosyl glucoside. Patent Document 4 also describes a dosage form containing a composition containing a microbiome regulator, and lists sugars or sugar alcohols as components that can be contained in the agent, with kojibiose being listed as an example. It also describes that the agent is used to treat subjects with microbial incompatibility, and lists inflammatory bowel disease as an example of microbial incompatibility. Furthermore, Patent Document 5 describes a method for treating a subject having a disease or disorder associated with an undesirable level of a metabolite, optionally comprising selecting a glycan polymer preparation based on its ability to regulate the production or level of the metabolite, and administering the glycan polymer preparation in an amount effective to regulate the level of the metabolite, thereby treating the disease or disorder. Examples of diseases described in this document include Crohn's disease, Parkinson's disease, and ulcerative colitis. This document also describes that the glycan polymer contains alpha-1,2 glycosidic bonds, and that kojibiose is an example of a glycan subunit starting material.
[0005] JP 2020-83830 A (Patent No. 7164869) WO021 / 098991 (Patent No. 2023-503410 A) JP 2005-281188 A (Patent No. 4746281 A) WO2016 / 172658 (Patent No. 2018-513196 A) WO2018 / 106845 (Patent No. 2020-513410 A)
[0006] Inflamm Bowel Dis. 2016 Dec;22(12):2802-2810.NPJ Parkinsons Dis. 2022 Jun 1;8(1):65.PLoS One. 2015 May 22;10(5):e0126226.Journal of agricultural and food chemistry. 2005, 53, 5192-5199
[0007] Since there are many reports that intestinal bacteria are closely related to health, it may be possible to reduce the risk of various diseases by controlling the growth of important bacteria. In particular, suppressing the age-related decline in Fusicatenibacter bacteria through the intake of prebiotics is thought to be effective in reducing disease risk.
[0008] By controlling the growth of Fusicatenibacter bacteria in the intestines with prebiotics, it is expected that various diseases can be prevented or improved.
[0009] The present invention provides the following: [1] A composition for controlling the growth of bacteria of the genus Fusicatenibacter, comprising any one selected from kojibiose and oligosaccharides having kojibiose as a constituent sugar. [2] The composition according to 1, for use as a prebiotic or synbiotic. [3] A composition for treating any one selected from inflammatory bowel disease and Parkinson's disease, comprising any one selected from kojibiose and oligosaccharides having kojibiose as a constituent sugar. [4] The composition according to 3, wherein the treatment is mediated by controlling the growth of bacteria of the genus Fusicatenibacter in the intestine. [5] A composition for treating a disease or condition that is ameliorated by controlling the growth of bacteria of the genus Fusicatenibacter in the intestine, comprising kojibiose and oligosaccharides having kojibiose as a constituent sugar. [6] The composition according to any one of 1 to 5, wherein the composition is obtained by treating a raw material composition containing lactose and sucrose with glucansucrase. [7] The composition according to any one of 1, 2, and 4 to 6, wherein the growth regulation is growth promotion. [8] The composition according to any one of 1 to 7, wherein the composition contains galactosyl kojibiose as any one selected from kojibiose and oligosaccharides having kojibiose as a constituent sugar. [9] A food information providing method comprising the steps of: acquiring information on the intestinal flora of a subject; deriving information on foods to be provided to the subject based on the information on the intestinal flora; and providing the derived food information to the subject, wherein in the information acquiring step, information on the presence or amount of bacteria of the genus Fusicatenibacter is acquired from the information on the intestinal flora, and in the food information deriving step, information on foods that are compositions containing any one selected from the group consisting of kojibiose and oligosaccharides having kojibiose as a constituent sugar, based on the information on the presence or amount of bacteria of the genus Fusicatenibacter.
[10] A method for controlling Fusicatenibacter bacteria in the intestines of a subject, or a method for supporting the diet or health of a subject, comprising carrying out the method described in 9 and providing the subject with food based on the derived food information.
[11] The method according to 9 or 10, wherein the food is for use as a prebiotic or synbiotic.
[12] The method according to any one of claims 9 to 11, further comprising a step of displaying the food information to be provided on a target terminal.
[13] Use of any one selected from kojibiose and oligosaccharides having kojibiose as a constituent sugar for controlling the growth of bacteria of the genus Fusicatenibacter in intestinal bacterial flora.
[0010]
[21] A composition comprising any one selected from kojibiose and oligosaccharides having kojibiose as a constituent sugar, for use in a method for controlling the growth of bacteria of the genus Fusicatenibacter. Use of any one selected from the group consisting of kojibiose and oligosaccharides having kojibiose as a constituent sugar in the production of a composition for controlling the growth of bacteria of the genus Fusicatenibacter. A method or non-therapeutic method for controlling the growth of bacteria of the genus Fusicatenibacter, comprising the step of administering to a subject a composition comprising any one selected from the group consisting of kojibiose and oligosaccharides having kojibiose as a constituent sugar. Use or non-therapeutic use of a composition comprising any one selected from the group consisting of kojibiose and oligosaccharides having kojibiose as a constituent sugar, for controlling the growth of bacteria of the genus Fusicatenibacter.
[22] The composition, use in production, method or non-therapeutic method, or use or non-therapeutic use according to 21, wherein the composition is for use as a prebiotic or synbiotic.
[23] A composition comprising any one selected from kojibiose and oligosaccharides having kojibiose as a constituent saccharide, for use in a method for treating any one selected from inflammatory bowel disease and Parkinson's disease. Use of any one selected from the group consisting of kojibiose and oligosaccharides having kojibiose as a constituent saccharide in the manufacture of a composition for treating any one selected from inflammatory bowel disease and Parkinson's disease. A method or non-therapeutic method for treating any one selected from inflammatory bowel disease and Parkinson's disease, comprising the step of administering to a subject a composition comprising any one selected from the group consisting of kojibiose and oligosaccharides having kojibiose as a constituent saccharide. Use or non-therapeutic use of a composition comprising any one selected from the group consisting of kojibiose and oligosaccharides having kojibiose as a constituent saccharide for treating any one selected from inflammatory bowel disease and Parkinson's disease.
[24] The composition, use in manufacturing, method or non-therapeutic method, or use or non-therapeutic use according to 23, wherein the treatment is mediated by growth control of bacteria of the genus Fusicatenibacter.
[25] A composition comprising any one selected from kojibiose and oligosaccharides having kojibiose as a constituent saccharide, for use in a method for treating a disease or condition that can be improved by controlling the growth of bacteria of the genus Fusicatenibacter in the intestine. Use of any one selected from the group consisting of kojibiose and oligosaccharides having kojibiose as a constituent saccharide in the manufacture of a composition for treating a disease or condition that can be improved by controlling the growth of bacteria of the genus Fusicatenibacter in the intestine. A method or non-therapeutic method for treating a disease or condition that can be improved by controlling the growth of bacteria of the genus Fusicatenibacter in the intestine, comprising the step of administering to a subject a composition comprising any one selected from the group consisting of kojibiose and oligosaccharides having kojibiose as a constituent saccharide. Use or non-therapeutic use of a composition comprising any one selected from the group consisting of kojibiose and oligosaccharides having kojibiose as a constituent saccharide, for treating a disease or condition that can be improved by controlling the growth of bacteria of the genus Fusicatenibacter in the intestine.
[26] The composition, use in production, method or non-therapeutic method, or use or non-therapeutic use according to any one of items 21 to 25, wherein the composition is obtained by treating a raw material composition containing lactose and sucrose with glucansucrase.
[27] The composition, use in production, method or non-therapeutic method, or use or non-therapeutic use according to any one of items 21, 22, 24 to 26, wherein the growth control is growth promotion.
[28] The composition, use in production, method or non-therapeutic method, or use or non-therapeutic use according to any one of items 21 to 27, wherein the composition contains galactosyl kojibiose as any one selected from kojibiose and oligosaccharides having kojibiose as a constituent sugar.
[29] A method for controlling the growth of bacteria of the genus Fusicatenibacter in intestinal bacterial flora, the method comprising a step of causing intestinal bacterial flora containing bacteria of the genus Fusicatenibacter to contain any one selected from kojibiose and oligosaccharides having kojibiose as a constituent sugar.
[0011] The use of kojibiose or any oligosaccharide containing kojibiose as a prebiotic can increase the number of Fusicatenibacter bacteria in the intestine. Furthermore, increasing the number of Fusicatenibacter bacteria in the intestine is expected to prevent and improve various diseases.
[0012] Changes in the occupancy rate of Fusicatenibacter bacteria in the V3-V4 region amplicon sequence by MiSeq (Illumina) using galactosyl kojibiose (trisaccharide fraction) in a human fecal culture system. Black circles indicate the progress of each subject, and horizontal bars indicate the average value. Chromatograms of the enzyme reaction solution and the trisaccharide and tetrasaccharide fractions after fractionation and purification.
[0013] The present embodiment relates to a composition for controlling the growth of bacteria of the genus Fusicatenibacter, represented by Fusicatenibacter, which contains kojibiose and oligosaccharides having kojibiose as a constituent sugar as active ingredients.
[0014] [Active Ingredient] The composition of this embodiment contains, as an active ingredient, any one selected from the group consisting of kojibiose and oligosaccharides containing kojibiose as a constituent saccharide. When referring to oligosaccharides containing kojibiose, kojibiose itself is not included. In the present invention, the term "any one" is used to mean "at least one" unless otherwise specified. For example, "any one selected from the group consisting of kojibiose and oligosaccharides containing kojibiose" includes kojibiose alone, only one type of oligosaccharide containing kojibiose as a constituent saccharide, kojibiose and one type of oligosaccharide containing kojibiose as a constituent saccharide, and two types of oligosaccharides containing kojibiose as a constituent saccharide. "Containing as an active ingredient" means that the active ingredient is used in the composition in an effective amount to exert the intended function, or is specifically labeled as a component contributing to the intended purpose. In functional food products, active ingredients are sometimes referred to as functional ingredients (ingredients that contribute to specific health purposes (excluding those related to reducing disease risk)).
[0015] The kojibiose and oligosaccharides containing kojibiose as constituent saccharides used in the composition are not particularly limited as long as they have the desired effect. Furthermore, the kojibiose and oligosaccharides containing kojibiose as constituent saccharides used in the composition may be one type or a combination of two or more types.
[0016] Examples of oligosaccharides containing kojibiose as a constituent sugar include the trisaccharides galactosyl kojibiose, kojitriose, selaginose (kojibiosylglucoside), centose, and kojibiosylfructoside, as well as tetrasaccharides in which one molecule of a monosaccharide such as glucose is bound to one of these trisaccharides, such as kojitetraose and kojitriosylglucoside.
[0017] In a preferred embodiment, the composition contains either kojibiose or galactosyl kojibiose. Examples of such a composition include a composition containing kojibiose, a composition containing galactosyl kojibiose, a composition containing kojibiose and galactosyl kojibiose, and a composition containing kojibiose, galactosyl kojibiose, and a tetrasaccharide in which one glucose molecule is bound to galactosyl kojibiose.
[0018] In the present invention, unless otherwise specified, galactosyl kojibiose refers to kojibiose in which galactose is α- or β-linked to any of positions 1 to 8. Theoretically, galactose can be linked to the OH at position 8 in four ways (α-α, α-β, β-α, and β-β), and to the OH at positions 2 to 7 in two ways, so 18 types of galactosyl kojibiose are expected. They are called 8α-α kojibiose, 8α-β kojibiose, 8β-α kojibiose, 8β-β kojibiose, 1α kojibiose, 2β kojibiose, 2α kojibiose, 2β kojibiose, 3α kojibiose, 3β kojibiose, 4α kojibiose, 4β kojibiose, 5α kojibiose, 5β kojibiose, 6α kojibiose, 6β kojibiose, 7α kojibiose, and 7β kojibiose, respectively.
[0019]
[0020] In one embodiment, the composition comprises any one of 18 types of galactosyl kojibiose, namely, 8α-α kojibiose, 8α-β kojibiose, 8β-α kojibiose, 8β-β kojibiose, 1α kojibiose, 2β kojibiose, 2α kojibiose, 2β kojibiose, 3α kojibiose, 3β kojibiose, 4α kojibiose, 4β kojibiose, 5α kojibiose, 5β kojibiose, 6α kojibiose, 6β kojibiose, 7α kojibiose, and 7β kojibiose, and may comprise 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16, 17, or 18 of these.
[0021] In a preferred embodiment, the galactosyl kojibiose contained in the composition is α-D-glucopyranosyl-(1→2)-[β-D-galactopyranosyl-(1→4)-]D-glucopyranoside. This sugar can also be described as a type of glucosyllactose.
[0022] According to the studies of the present inventors, galactosyl kojibiose has been confirmed to have an excellent effect of inhibiting the growth of bacteria of the genus Fusicatenibacter, a type of bacteria of the genus Fusicatenibacter. Here, galactosyl kojibiose is a type of oligosaccharide containing kojibiose as a constituent sugar, and after being administered to a subject, it can be decomposed by lactase in the subject's digestive tract to produce kojibiose. Therefore, any sugar containing kojibiose as a constituent sugar can similarly produce kojibiose in the intestine and exhibit the same effect as galactosyl kojibiose.
[0023] The origin and production method of the kojibiose and oligosaccharides containing kojibiose used in the present invention are not particularly limited, and they may be produced by any method, such as fermentation, enzymatic methods, or organic synthesis. One preferred production method includes a step of treating a raw material composition containing lactose and sucrose with glucansucrase, or lactic acid bacteria expressing glucansucrase, or a processed product thereof, to obtain a composition containing galactosyl kojibiose. In the present invention, glucansucrase refers to an enzyme belonging to glycoside hydrolase (also known as glycosyl hydrolases) family 70 (GH70), unless otherwise specified (see (CAZy) databases and Cantarel et al., Nucleic Acids Res. 37:D233-238, 2009).
[0024] When lactic acid bacteria are used, it is preferable that they are lactic acid bacteria that express glucansucrase. Preferred examples of lactic acid bacteria are lactic acid bacteria belonging to the family Leuconostoc, more preferably lactic acid bacteria belonging to the genus Leuconostoc, and even more preferably Leuconostoc mesenteroides. When lactic acid bacteria are used, it is preferable that they are lactic acid bacteria that constantly express glucansucrase. Preferred examples of lactic acid bacteria include lactic acid bacteria belonging to the Lactobacillaceae family, more preferably lactic acid bacteria belonging to the genus Liquorilactobacillus or Limosilactobacillus, and even more preferably Limosilactobacillus reuteri and Liquorilactobacillus satsumensis. When using lactic acid bacteria, it is preferable that the lactic acid bacteria constantly express glucansucrase, and more preferably that the glucansucrase is of the cell-bound type. Preferred examples of lactic acid bacteria include lactic acid bacteria belonging to the Lactobacillaceae family, more preferably lactic acid bacteria belonging to the genus Liquorilactobacillus, and even more preferably Liquorilactobacillus satsumensis. A particularly preferred example of Liquorilactobacillus satsumensis strain is JCM12392. Note that JCM12392 is referred to as Lactobacillus satsumensis in RIKEN BioResource Center, GENERAL CATALOG No.9, 2012, JAPAN COLLECTION OF MICROORGANISMS, M51.
[0025] In addition, when describing lactic acid bacteria in relation to the present invention, unless otherwise specified, the classification follows the reclassification by Zheng J, Wittouck S, Salvetti E, Franz CMAP, Harris HMB, Mattarelli P, O'Toole PW, Pot B, Vandamme P, Walter J, Watanabe K, Wuyts S, Felis GE, Ganzle MG, Lebeer S.: A taxonomic note on the genus Lactobacillus: Description of 23 novel genera, emended description of the genus Lactobacillus Beijerinck 1901, and union of Lactobacillaceae and Leuconostocaceae. Int J Syst Evol Microbiol. 2020 Apr; 70(4): 2782-2858. According to the classification before the reorganization, Liquorilactobacillus satsumensis is classified as Lactobacillus satsumensis.
[0026] The lactic acid bacteria that express glucansucrase or a processed product thereof is preferably any one selected from the group consisting of live bacteria, killed bacteria, a culture containing bacteria, crushed bacteria, and a purified product of glucansucrase.
[0027] Glucansucrase, or lactic acid bacteria expressing glucansucrase, or processed products thereof, used for producing kojibiose and oligosaccharides containing kojibiose as a constituent sugar can be produced using transformation, chemical synthesis, or genome editing techniques.
[0028] The composition containing galactosyl kojibiose obtained by such a production method can be used as is as a solution containing kojibiose and oligosaccharides composed of kojibiose as a constituent sugar, or can be used after purification with an ion exchange resin, etc. That is, the composition of the present invention may be a composition containing galactosyl kojibiose obtained by treating a composition containing sucrose and lactose with glucansucrase, or a lactic acid bacterium expressing glucansucrase, or a processed product thereof.
[0029] [Uses] (Functions, Actions, and Effects) The composition of this embodiment can be used to control the growth of bacteria belonging to the genus Fusicatenibacter (sometimes simply referred to as Fusicatenibacter bacteria). In a preferred embodiment, the composition can be used to control the growth of Fusicatenibacter bacteria in the human intestine. Controlling the growth of Fusicatenibacter bacteria in the human intestine refers to controlling the growth of Fusicatenibacter bacteria in a state where various bacteria living in the human intestine are present (sometimes referred to as intestinal flora). In the present invention, the term "intestinal flora" refers to the flora in which various bacteria living in the intestine are present, including, for example, the flora contained in feces, but is not limited to the flora present in the intestine. In the present invention, "control" includes upward control (sometimes referred to as promotion or increase) and downward control (sometimes referred to as suppression or decrease), with upward control being preferred. Control of growth can be control of the number of bacteria or control of the occupancy rate, as described below.
[0030] In the present invention, the intestine refers to the digestive organ in humans and animals where bacteria normally reside and which digests and absorbs ingested food. The intestine includes the small intestine and the large intestine, and is preferably the large intestine.
[0031] In a preferred embodiment, the composition is used to control the growth of bacteria belonging to the genus Fusicatenibacter in the intestine.
[0032] Bacteria of the genus Fusicatenibacter include Fusicatenibacter faecihominis and Fusicatenibacter saccharivorans.
[0033] In the present invention, the term "Fusicatenibacter bacteria" refers to bacteria identified as belonging to the genus Fusicatenibacter by molecular phylogenetic analysis based on the 16S rRNA gene. Criteria for determining genera based on molecular phylogenetic analysis based on the 16S rRNA gene are well known to those skilled in the art (Stackebrandt E, Ebers J. Taxonomic parameters revisited: tarnished gold standards. Microbiol Today 2006;33:152-155).
[0034] In the present invention, controlling the growth of a specific bacterium in a bacterial flora means controlling the proportion (occupancy rate) of the specific bacterium in the bacterial flora.
[0035] Whether a certain component inhibits the growth of Fusicatenibacter bacteria in the intestine can be evaluated as follows: Feces containing Fusicatenibacter bacteria provided by a healthy subject is added to an appropriate medium and, if necessary, incubated for a certain period of time. After that, the component to be evaluated is added and incubated under appropriate conditions (e.g., anaerobic incubation at 37°C for 48 hours, similar to intestinal conditions). The number of Fusicatenibacter bacteria in the bacterial flora in the culture is then measured. The measurement results can then be compared with those of a culture incubated under identical conditions except for the addition of a control (e.g., sterilized water) instead of the component to be evaluated.
[0036] The number of bacteria of the genus Fusicatenibacter contained in the bacterial flora can be determined by known methods. One preferred method is to perform 16S metagenomic analysis (sequence analysis of 16S rRNA gene amplicons) on DNA extracted from the culture. When performing 16S metagenomic analysis, DNA extraction can be performed using a commercially available kit. The genomic region to be analyzed is not particularly limited as long as it can identify the bacteria, but the V3-V4 region of the 16S rRNA gene can be used. Methods such as primers, amplification conditions, and amplicon purification for bacterial analysis are also well known to those skilled in the art. It is preferable to use a next-generation sequencer with higher performance for sequence analysis. QIIME 2 is used to analyze the obtained data. TM For 16S metagenomic analysis, those skilled in the art can refer to information such as Sanschagrin S, Yergeau E. Next-generation sequencing of 16S ribosomal RNA gene amplicons. J Vis Exp. 2014;(90):51709. Published 2014 Aug 29. doi:10.3791 / 51709.
[0037] In one embodiment, the composition can be used to treat any of inflammatory bowel disease and Parkinson's disease, and, unless otherwise specified, the treatment is not limited to treatments mediated by controlling the growth of Fusicatenibacter bacteria in the intestine.
[0038] Fusicatenibacter bacteria are found in the human intestinal flora. It has been reported that Fusicatenibacter saccharivorans is significantly less abundant in patients with ulcerative colitis than in healthy individuals. Furthermore, administration of heat-killed Fusicatenibacter saccharivorans to a mouse model of oxazolone-induced colitis suppresses inflammation, which is thought to be mediated by suppression of IL-10 and IL-13, whose production is increased by oxazolone (Non-Patent Document 1). Furthermore, patients with low Fusicatenibacter populations are predicted to have a higher incidence of Parkinson's disease symptoms (Non-Patent Document 2). Furthermore, while Fusicatenibacter bacteria are found at higher frequencies and in higher numbers in adults, their frequency and numbers are lower in elderly individuals (Non-Patent Document 3). Therefore, in one aspect, the composition can be used for treating any of inflammatory bowel disease and Parkinson's disease, which is a treatment mediated by controlling the growth of Fusicatenibacter bacteria in the intestine.
[0039] Inflammatory bowel diseases include ulcerative colitis and Crohn's disease. Parkinson's disease includes early-onset Parkinson's disease, which occurs in patients under the age of 40. Treatment of Parkinson's disease includes treatment of any of the symptoms of Parkinson's disease. Symptoms of Parkinson's disease include motor symptoms such as tremor, bradykinesia, muscle rigidity (rigidity), and difficulty in maintaining posture, and non-motor symptoms such as constipation, frequent urination, sweating, fatigue, decreased sense of smell, orthostatic hypotension, depression, and apathy.
[0040] When used for the treatment of inflammatory bowel disease, the composition may be configured to be free of any of the following: oligosaccharides (e.g., raffinose, stachyose, galactooligosaccharides, isomaltooligosaccharides, lactulose, xylooligosaccharides, agarooligosaccharides, mannooligosaccharides, or fructooligosaccharides), inulin, pectin, modified pectin, guar gum, hydrolyzed guar gum, psyllium seed gum, karaya gum, tragacanth gum, gum arabic, resistant starch, resistant dextrin, polydextrose, cellulose, hemicellulose, soybean polysaccharides, β-glucan, glucomannan, galactomannan, chondroitin sulfate, hyaluronic acid, levan, lignin, alginic acid and salts thereof, agarose, and chitosan.
[0041] The composition can also be used to treat a variety of diseases or conditions that can be improved by controlling the growth of Fusicatenibacter bacteria in the intestine, including inflammatory bowel disease and Parkinson's disease.
[0042] In the present invention, the term "treatment" for a disease or condition includes reducing the risk of onset, delaying onset, prevention, cure, and halting or delaying progression. Treatment also includes maintaining a normal or desirable state, maintaining ability, and alleviating symptoms (preferably temporary symptom relief). Treatment also includes helping to improve from a disease or condition, alleviating a disease or condition, and reducing the risk of developing a disease or condition. Treatment includes radical treatment (treatment that eliminates the cause) and symptomatic treatment (treatment that improves symptoms). Treatment or treatment includes medical procedures performed by physicians and nurses and midwives under the direction of a physician, as well as non-therapeutic procedures performed by persons other than physicians, such as pharmacists, nutritionists (including registered dietitians and sports nutritionists), public health nurses, midwives, nurses, clinical laboratory technicians, sports instructors, pharmaceutical manufacturers, pharmaceutical distributors, food manufacturers, and food distributors. Prevention or reduction of the risk of onset also includes recommending the intake of specific foods and providing nutritional guidance (including nutritional guidance necessary for the convalescence of injured or sick individuals, and nutritional guidance for maintaining and improving health).
[0043] (Subjects) The composition of this embodiment is suitable for subjects for whom it is desirable or necessary to control the proliferation of Fusicatenibacter bacteria in the intestine; elderly subjects; subjects at risk of any of inflammatory bowel disease and Parkinson's disease; and subjects for whom it is desirable or necessary to treat any of inflammatory bowel disease and Parkinson's disease. Elderly subjects refer to those aged 65 or older.
[0044] Subjects for whom it is desirable or necessary to control the growth of Fusicatenibacter bacteria in the intestine include subjects in whom relatively low levels of Fusicatenibacter bacteria have been detected in at least one of their intestines and feces. Furthermore, subjects for whom it is desirable or necessary to control the growth of Fusicatenibacter bacteria in the intestine include subjects who have been found to have a relatively low number or occupancy rate of Fusicatenibacter bacteria in the intestine through any test or analysis, such as an intestinal flora test, a test for substances in the feces, or fecal metabolome analysis, subjects who have been found to be at high risk for either inflammatory bowel disease or Parkinson's disease, and subjects who have been recommended, based on the test or analysis results, by a doctor, nurse, pharmacist, nutritionist, etc., or by a computer program, to take a food, drink, or medicine that controls the growth of Fusicatenibacter bacteria in the intestine.
[0045] Subjects in which relatively low numbers or occupancy rates of Fusicatenibacter bacteria have been detected in at least one of the intestines and feces include, for example, those in which, when a culture medium containing stool collected from the subject is cultured at 37°C under anaerobic conditions for 24 hours, the occupancy rate of Fusicatenibacter bacteria in the culture medium is 4% or less, 3% or less, 2% or less, 1.5% or less, 1% or less, or 0.5% or less.
[0046] In one embodiment, the subject is healthy (not having a medically diagnosed illness). The subject may be a human or a non-human animal.
[0047] The age of the subject is not particularly limited, and the subject may be, for example, a newborn (within 28 days of birth), an infant (less than 1 year of age), a toddler (1 to 6 years of age), a child (7 years of age or older but less than 15 years of age), an adult (15 years of age or older), or a person 65 years of age or older. The composition of this embodiment is particularly suitable for administration to elderly people 65 years of age or older.
[0048] [Composition] (Food composition, etc.) The composition of the present invention can be a food composition or a pharmaceutical composition. Foods and pharmaceuticals include not only those for humans but also those for non-human animals, unless otherwise specified. Foods include general foods, functional foods, nutritional compositions, and also therapeutic foods (those that serve the purpose of treatment; prepared based on a menu prepared by a nutritionist or the like in accordance with a doctor's dietary prescription), dietary therapy foods, ingredient-modified foods, nursing care foods, and foods for medical support, unless otherwise specified. Foods include not only solid foods but also liquid foods, such as beverages, energy drinks, liquid foods, and soups, unless otherwise specified. Functional foods refer to foods that can impart a specific function to the body, and include a wide range of health foods, including foods for specified health uses (including conditional FOSHUs [Foods for Specified Health Uses]), foods with functional claims, health functional foods including foods with nutrient functions, foods for special dietary uses, dietary supplements, health supplements, supplements (e.g., tablets, coated tablets, sugar-coated tablets, enteric-coated preparations, capsules (enteric-coated soft capsules, enteric-coated hard capsules, colon delivery capsules, etc.), liquids, etc.), dietary supplements, food supplements, medical foods (as defined by the U.S. Food and Drug Administration (FDA)), beauty foods (e.g., diet foods), etc. Furthermore, in the present invention, "functional foods" also includes health foods to which a health claim based on the Codex Alimentarius (the Joint FAO / WHO Food Standards Commission) is applicable. Food supplements are supplements to the normal diet and are concentrated with nutrients or other substances that have nutritional or physiological effects, either alone or in combination, and are labeled as "food supplements." Dietary supplements are products (excluding tobacco) intended to supplement the diet, contain one or more of the targeted ingredients, and are labeled as dietary supplements. The ingredients may also be refined products of specific sugars. Refined products include fractionated, partially refined, and crudely refined products. Actual labeling of the product on food products follows the labeling laws of each country.
[0049] (Route of administration, etc.) The composition of the present invention may be administered orally, parenterally, for example, via a tube (gastrostomy, enterostomy), or nasally, but is preferably administered orally. In the present invention, "administer" is used not only to refer to administering a pharmaceutical to a subject, but also to having a subject ingest a non-pharmaceutical food or the like. "Administer" can be read as "intake" (or "cause to take"), and "ingestion" can be read as "administer".
[0050] The composition can be administered to a subject repeatedly or continuously for a long period of time. The period is not particularly limited, but to ensure sufficient efficacy, it is preferable to administer the composition continuously for a relatively long period of time, for example, 3 days or more, 1 week or more, 2 weeks or more, 1 month or more, 3 months or more, 6 months or more, or 1 year or more.
[0051] The compositions may be administered routinely, proactively, such as when at high risk, or when the need arises. The compositions may be administered with a meal, before a meal, after a meal, between meals, or at the onset of the disease or condition that the composition is intended to ameliorate.
[0052] (Dose, Content) In this embodiment, the active ingredient kojibiose or any one selected from oligosaccharides having kojibiose as a constituent sugar can be used in an amount acceptable for food or pharmaceutical use. The dosage of the composition of this embodiment may be any amount that achieves the desired effect. The dosage can be set appropriately taking into consideration various factors such as the age, weight, and symptoms of the subject.
[0053] The daily dosage of the composition can be an amount acceptable for food or pharmaceutical use, and the amount of active ingredient can be 0.5 g or more, 1 g or more, preferably 2 g or more, preferably 3 g or more, more preferably 5 g or more, and even more preferably 10 g or more. Regardless of the lower limit, the upper limit of the active ingredient per day can be 80 g or less, 70 g or less, 60 g or less, 50 g or less, 40 g or less, 30 g or less, 20 g or less, or 15 g or less. When multiple active ingredients are contained in a composition, the amount of active ingredient refers to the total amount of the active ingredients contained.
[0054] Administration may be once a day or multiple times a day, for example, 2 to 10 times. The amount of active ingredient administered per dose can be, for example, 0.5 g or more, 1 g or more, preferably 2 g or more, more preferably 3 g or more, and even more preferably 5 g or more. The upper limit of the amount of active ingredient per dose, regardless of the lower limit, can be 70 g or less, 60 g or less, 50 g or less, 40 g or less, 30 g or less, 25 g or less, or 10 g or less.
[0055] The content of the active ingredient in the composition can be an amount acceptable for food or pharmaceutical use, and can be adjusted appropriately depending on the form of the composition. For example, when the composition is in a form to be eaten or consumed as is, such as fermented milk or a beverage, the content of the active ingredient per 100 g of the composition can be 0.01% or more, preferably 0.1% or more, more preferably 0.3% or more, and even more preferably 0.5% or more. The upper limit of the active ingredient per 100 g of the composition, regardless of the lower limit, can be 8% or less, 5% or less, 4% or less, or even 3% or less. Alternatively, the content of the active ingredient per solid content of the composition can be 0.1% or more, preferably 1% or more, more preferably 3% or more, and even more preferably 5% or more. The upper limit of the active ingredient per solid content, whatever the lower limit, may be 80% or less, 50% or less, 40% or less, or even 30% or less. In the present invention, % means % by mass unless otherwise specified.
[0056] (Other Ingredients, Additives) The composition of the present invention may contain other active ingredients or nutritional ingredients that are acceptable as foods or pharmaceuticals. Examples of such ingredients include lipids (e.g., milk fat, vegetable oil, medium-chain fatty acid-containing oil), proteins (e.g., milk protein, milk protein concentrate (MPC), whey protein concentrate (WPC), whey protein isolate (WPI), α-lactalbumin (α-La), β-lactoglobulin (β-Lg), heat-denatured whey protein, and enzyme-treated whey protein), amino acids (e.g., lysine, arginine, glycine, alanine, glutamic acid, leucine, isoleucine, valine), kojibiose, and sugars containing kojibiose as a constituent sugar. carbohydrates other than oligosaccharides (glucose, sucrose, fructose, maltose, trehalose, erythritol, maltitol, palatinose, xylitol, dextrin), electrolytes (e.g., sodium, potassium, calcium, magnesium), vitamins (e.g., vitamin A, vitamin B1, vitamin B2, vitamin B6, vitamin B12, vitamin C, vitamin D, vitamin E, vitamin K, biotin, folic acid, pantothenic acid, and nicotinic acids), minerals (e.g., copper, zinc, iron, cobalt, manganese), antibiotics, dietary fiber, etc.
[0057] In the present invention, the composition may contain a prebiotic other than the active ingredient. Prebiotics can be defined as indigestible food ingredients that have a beneficial effect on the host and improve the host's health by selectively altering the growth and activity of specific bacteria in the large intestine. The composition may contain one or more prebiotics other than the active ingredient.
[0058] The prebiotics other than the active ingredient are not particularly limited as long as they do not interfere with the effects of the active ingredient contained in the composition. Examples of prebiotics other than the active ingredient include galactooligosaccharides, fructooligosaccharides (GF2, GF3, GF4), xylooligosaccharides, isomaltooligosaccharides, raffinose, lactulose, lactosucrose, soybean oligosaccharides, coffee oligosaccharides, dietary fiber, and gluconic acid.
[0059] The composition can also be used as a synbiotic, and may contain probiotics in addition to the active ingredient. Synbiotics are a combination of probiotics and prebiotics. Probiotics can be defined as microorganisms that have beneficial effects on the host when introduced into the intestines of the host in a live state.
[0060] The probiotics are not particularly limited as long as they do not interfere with the effects of the active ingredients contained in the composition. Known examples of probiotics include certain lactic acid bacteria.
[0061] The composition may further contain additives acceptable for use as food or pharmaceuticals, such as inert carriers (solid or liquid carriers), excipients, surfactants, binders, disintegrants, lubricants, solubilizers, suspending agents, coating agents, colorants, preservatives, buffers, pH adjusters, emulsifiers, stabilizers, sweeteners, antioxidants, flavors, acidulants, and natural products. More specifically, examples of the additives include water, other aqueous solvents, pharmaceutically acceptable organic solvents, collagen, polyvinyl alcohol, polyvinylpyrrolidone, carboxyvinyl polymers, sodium alginate, dextrin, water-soluble dextran, water-soluble dextrin, corn starch, sodium carboxymethyl starch, pectin, xanthan gum, gum arabic, casein, gelatin, agar, glycerin, propylene glycol, polyethylene glycol, petrolatum, paraffin, stearyl alcohol, stearic acid, magnesium stearate, precipitated calcium carbonate, talc, human serum albumin, mannitol, sorbitol, lactose, sucralose, lactose hydrate, candy powder, white sugar, stevia, aspartame, acesulfame potassium, citric acid, lactic acid, malic acid, tartaric acid, phosphoric acid, acetic acid, fruit juice, and vegetable juice.
[0062] (Dosage Form / Form) In one embodiment, the food composition may be prepared in any form, such as a solid, liquid, mixture, suspension, powder, granules, paste, jelly, gel, or capsule. The food composition of the present invention may also be in any form, such as dairy products, supplements (e.g., tablets, coated tablets, sugar-coated tablets, enteric-coated preparations such as enteric coatings, capsules (enteric-coated soft capsules, enteric-coated hard capsules, colon-delivery capsules, etc.), confectioneries, beverages, health drinks, seasonings, processed foods, prepared foods, or soups. More specifically, the composition of the present invention may be in the form of liquid food, semi-liquid food, jelly, gel, powder, infant formula, infant formula, powdered or liquid milk for pregnant or lactating women, fermented milk, bar, mousse, chocolate, biscuits, ice cream, fermented milk, lactic acid bacteria drink, dairy drink, dairy drink, soft drink, fruit juice drink, tablet, cheese, bread, biscuit, cracker, pizza crust, food for the sick, nutritional food, frozen food, or processed food. The formulation may be in the form of granules, powder, paste, concentrated liquid, etc., for mixing with beverages or foods. The granules and powder may be in the form of cubes or sticks (single-serving packets). For the purposes of this invention, modified milk powder refers to a powdered form of raw milk, cow's milk, special cow's milk, or raw buffalo milk, or a food made from these ingredients, processed or used as the main ingredient, to which nutrients necessary for infants have been added, as defined in the Ministerial Ordinance on Milk and Dairy Products (hereinafter referred to as the "Milk and Dairy Products Ordinance"). For the purposes of this invention, modified liquid milk refers to a liquid form of raw milk, cow's milk, special cow's milk, or raw buffalo milk, or a food made from these ingredients, processed or used as the main ingredient, to which nutrients necessary for infants have been added, as defined in the Milk and Dairy Products Ordinance.
[0063] In one aspect, the pharmaceutical composition can be in any dosage form suitable for oral administration, such as a solid formulation such as a tablet, granules, powder, pill, or capsule; a liquid formulation such as a solution, suspension, or syrup; a gel; or an aerosol.
[0064] (Production method, etc.) In one embodiment, in the production of a composition, the stage of blending the active ingredient can be selected as appropriate. The stage of blending is not particularly limited as long as it does not significantly impair the properties of the active ingredient. For example, the active ingredient can be blended by mixing it with raw materials. Alternatively, the active ingredient can be added at the final stage of production to produce a composition containing the active ingredient.
[0065] (Labeling) In one embodiment, the composition can be labeled with its intended use (application), and in another embodiment, the function of the composition or active ingredient or the usage based on that function is labeled. Examples of usage based on the displayed function are as described above for functions, actions, and effects. In addition, the composition of the present invention can be labeled with the fact that it can be used as a prebiotic or as a synbiotic (a combination of probiotics and prebiotics). Note that a period such as "temporary" or "long-term" may be displayed at the beginning of each statement as appropriate.
[0066] In one embodiment, the composition is labeled to recommend administration to a specific subject. Examples of subjects for which the labeling is provided are as described above for subjects.
[0067] Representation can be explicit or implicit. Examples of explicit representations are direct descriptions on tangible objects such as the product itself, packaging, containers, labels, tags, etc., while examples of implicit representations (which can also be called implied) include advertising and promotional activities by place or means such as websites, stores, pamphlets, exhibitions, seminars such as media seminars, books, newspapers, magazines, television, radio, mail, email, and audio.
[0068] In one embodiment, the recommendation to consume the composition is displayed personally. Such a display can be provided via a document (whether written or electronic) addressed to the subject, the subject's tablet, smartphone, personal computer, or social networking site. Furthermore, such a display can be provided together with the results of any test or analysis, such as an intestinal flora test, a fecal substance test, or a fecal metabolome analysis, for the subject. This can also be utilized in precision nutrition (individualized nutrition, which refers to proposing an appropriate diet (nutrition) tailored to an individual's constitution).
[0069] [Providing device, providing method, etc.] In this embodiment, a food information providing device is provided, comprising: an information acquisition unit that acquires information on the intestinal flora of a subject; a derivation unit that derives information on food to be provided to the subject based on the information on the intestinal flora; and a providing unit that provides the derived food information to the subject.
[0070] In a preferred embodiment, the information acquisition unit of the device acquires information on the presence or absence or amount of Fusicatenibacter bacteria from information on the intestinal bacterial flora, and the derivation unit derives information on a food that is a composition containing either kojibiose or an oligosaccharide having kojibiose as a constituent sugar, based on the information on the presence or absence or amount of Fusicatenibacter bacteria.
[0071] In one embodiment, along with obtaining information on the subject's intestinal microbiota, any of the following information about the subject may be obtained: attribute information including any selected from the group consisting of the subject's sex and age; test result information on the subject's physical and health condition including any selected from the group consisting of the subject's height, weight, body mass index (BMI), obesity level, body fat, abdominal circumference, blood pressure, lipids, liver and pancreas function, metabolic system, blood, urine, kidney function, and large intestine; survey results information on the subject's preferences and lifestyle including any selected from the group consisting of the subject's eating habits (preferences), drinking habits, smoking habits, smoking history, exercise habits, and sleep time; and the subject's subjective symptoms, stress, illnesses currently being treated or monitored, medications and health foods being taken, medical history, and experience of pregnancy and childbirth; and other information about the subject's work history and general lifestyle.
[0072] The information may be obtained based on responses obtained from the subject to predetermined questions (eg, responses to a questionnaire).
[0073] In one aspect, the food information providing device can display information about the food to be provided on a target device. In another aspect, the device further includes a display unit that displays the information about the food to be provided. The display unit can be a target device, such as a tablet device, a smartphone, or a personal computer.
[0074] In one aspect, the food information providing device may include an analysis unit that analyzes the bacterial flora of a sample obtained from the subject, and may also include an order receiving unit that receives an order for food from the subject based on the provided food information.
[0075] This embodiment also provides a food information providing method, which includes the following steps: acquiring information on the intestinal flora of a subject; deriving information on foods to be provided to the subject based on the information on the intestinal flora; and providing the derived food information to the subject.
[0076] In a preferred embodiment, in the step of acquiring information, information on the presence or absence or amount of bacteria of the genus Fusicatenibacter is acquired from information on the intestinal bacterial flora, and in the step of deriving food information, information on a food that is a composition containing any one selected from kojibiose and oligosaccharides having kojibiose as a constituent sugar is derived based on the information on the presence or absence or amount of bacteria of the genus Fusicatenibacter.
[0077] Such a method may further include displaying information about the food to be served on a target terminal, which may be, for example, a tablet terminal, a smartphone, or a personal computer.
[0078] This embodiment also provides a method for controlling Fusicatenibacter bacteria in the intestines of a subject or a method for supporting the diet or health of a subject, which method comprises carrying out the above-mentioned food information provision method and further carrying out the following steps: A method for controlling Fusicatenibacter bacteria in the intestines of a subject or a method for supporting the diet or health of a subject, which method comprises a step of providing food to the subject based on the derived food information.
[0079] The food referred to in this embodiment is preferably for use as a prebiotic or synbiotic. The food referred to here can also be referred to as a food composition, and the explanation in the section on compositions above applies as is.
[0080] [Culturing method, etc.] In another embodiment, there is provided a method for culturing bacteria of the genus Fusicatenibacter using any one selected from kojibiose and oligosaccharides having kojibiose as a constituent sugar, or the use of any one selected from kojibiose and oligosaccharides having kojibiose as a constituent sugar in culturing bacteria of the genus Fusicatenibacter. The culturing or use may be carried out in an intestinal bacterial flora. In another embodiment, there is provided a method for controlling the growth of bacteria of the genus Fusicatenibacter in an intestinal bacterial flora, the method comprising a step of incorporating any one selected from kojibiose and oligosaccharides having kojibiose as a constituent sugar into an intestinal bacterial flora containing bacteria of the genus Fusicatenibacter. The incorporating step can be achieved by adding, providing, strengthening, supplementing, or the like, the component of interest.
[0081] The present invention will be described in more detail below using examples, although the technical scope of the present invention is not limited to these examples.
[0082] Culturing Example 1 (Fecal Culture) Feces from healthy adults were suspended in a semi-solid medium for GAM glycolysis "Nissui" (Nissui Pharmaceutical Co., Ltd.) from which the agar had been removed by filtration, and a diluted fecal solution was prepared. Galactosyl kojibiose (α-D-Glcp-(1→2)-[β-D-Galp-(1→4)-]D-Glcp) was added to a concentration of 0.25% (n=60).
[0083] Feces from 60 individuals were promptly aliquoted under refrigerated conditions after excretion and stored frozen at -80°C until use. Each fecal sample was used for testing without mixing. The culture medium used for the test was left to stand overnight in an anaerobic glove box before use. A 96-well deepwell plate was used for culture, and the culture was carried out in an anaerobic environment at 37°C for one day. The prebiotic potential of the added test substance was evaluated by comparing the cultured bacterial flora with that in a control condition in which distilled water was added instead of galactosyl kojibiose.
[0084] (Sample) Galactosyl kojibiose (α-D-Glcp-(1→2)-[β-D-Galp-(1→4)-]D-Glcp) was prepared from the trisaccharide fraction containing galactosyl kojibiose as the main component prepared in Production Example 1.
[0085] (Analysis of intestinal bacterial occupancy using next-generation sequencing) After incubation, DNA was extracted and purified from the diluted fecal samples using the Maxwell RSC PureFood GMO & Authentication Kit (Promega), and amplicon sequencing of the V3-V4 region was performed using MiSeq (Illumina). The resulting .fastq files were analyzed using QIIME2 (https: / / qiime2.org / ) to calculate the occupancy of each intestinal bacterial species.
[0086] When galactosyl kojibiose was added, a significant increase in the occupancy rate of Fusicatenibacter bacteria was observed (Fig. 1, Wilcoxon signed-rank test, p = 3.63x10 -9 )
[0087] [Production Example 1] (Preparation of enzyme solution) Lactobacillus satsumensis JCM12392 was cultured overnight at 30°C using commercially available MRS liquid medium, and then the culture was terminated by cooling to below 10°C. The JCM12392 strain is available from the Japan Collection of Microorganisms, RIKEN BioResource Center (RIKEN BRC) (RIKEN BRC-JCM, Japan) under JCM number JCM12392.
[0088] The resulting culture medium was centrifuged, the supernatant was discarded, and the cells were collected. The cells were then washed by adding an equal volume of citrate phosphate buffer (pH 5.0) and collecting them again. The resulting cells were suspended in the buffer in an amount half the volume of the original culture medium, and the resulting suspension was used as the enzyme solution.
[0089] (Enzyme reaction) 32 w / w% sucrose, 16 w / w% lactose, and 10 w / w% enzyme solution were mixed and allowed to react at 48°C for 18 hours under static conditions. The composition contained 25-30% galactosyl kojibiose, 15-20% lactose, and 30-35% fructose based on the solid content.
[0090] (Purification of galactosyl kojibiose) After the enzyme reaction mixture was passed through a carbon celite column, non-adsorbed substances were removed by passing distilled water through the column. Stepwise elution with aqueous ethanol solutions of varying concentrations yielded a trisaccharide fraction containing galactosyl kojibiose as the main component (Figure 2).
[0091] [Summary] From the above, it can be said that galactosyl kojibiose can be used to control the growth of bacteria of the genus Fusicatenibacter. Furthermore, galactosyl kojibiose may be converted to kojibiose by lactase in the intestine. Therefore, it can be said that kojibiose and oligosaccharides containing kojibiose can be used to control the growth of bacteria of the genus Fusicatenibacter, and further, to treat diseases or conditions that are improved by controlling the growth of bacteria of the genus Fusicatenibacter.
[0092] Fusicatenibacter bacteria are also found in the human intestinal flora. It has been reported that Fusicatenibacter saccharivorans is significantly less abundant in patients with ulcerative colitis than in healthy individuals. Furthermore, administration of heat-killed Fusicatenibacter saccharivorans to a mouse model of oxazolone-induced colitis suppresses inflammation, and this mechanism is thought to be mediated by suppression of IL-10 and IL-13, the production of which is increased by oxazolone (Non-Patent Document 1). Furthermore, patients with low levels of Fusicatenibacter bacteria are predicted to have a higher progression of Parkinson's disease symptoms (Non-Patent Document 2). Furthermore, it has been reported that Fusicatenibacter bacteria are distributed at higher frequencies and in lower numbers in adults, whereas they are distributed at lower frequencies and in lower numbers in elderly individuals (Non-Patent Document 3). Therefore, kojibiose and oligosaccharides containing kojibiose can be used to treat these diseases or conditions. Furthermore, the ingestion of a composition containing kojibiose and oligosaccharides composed of kojibiose as a food product can be said to be useful for supporting the dietary habits and promoting the health of a subject, and is particularly suitable for administration to elderly people aged 65 or older.
[0093] [Food Production Example 1: 100% Orange Juice Beverage] 168 g of 1 / 6 concentrated orange juice, 20 g of the oligosaccharide composition (60% solids) obtained in Production Example 1, and an appropriate amount of flavoring were dissolved in ion-exchanged water to a total volume of 1000 ml. This mixture was filled into a container and sterilized by heating at 65°C for 10 minutes to obtain a 100% orange juice beverage containing a trisaccharide fraction containing galactosyl kojibiose as the main component. This juice beverage contained approximately 0.36-0.42 g / 100 g of galactosyl kojibiose. This juice beverage can be used to control the growth of bacteria of the genus Fusicatenibacter.
[0094] Food Production Example 2: Drinkable Yogurt: Raw material cream, concentrated skim milk, and raw material water were mixed and dissolved, heat-sterilized at 110°C for 30 seconds, and cooled to 43°C. A lactic acid bacteria starter consisting of Lactobacillus bulgaricus and Streptococcus thermophilus was added and fermented until the acidity reached 0.75. The homogenized solution was mixed with raw material water, pectin, sucralose, a trisaccharide fraction containing galactosyl kojibiose as the main component, and flavoring, and heat-sterilized at 80°C for 10 minutes. The resulting solution was mixed and stirred under cooling. The blending ratio of the raw materials is shown in the table below. The resulting drinkable yogurt can be used to treat lipid metabolism disorders.
[0095]
[0096] [Food Production Example 3: Fermented Milk 1] Raw milk was prepared by mixing 500.0 g of raw milk, 53.2 g of skim milk powder, 23.0 g of fresh cream, 403.6 g of tap water, and 50 g of sucrose. The raw milk was heat-sterilized at 95°C, and the heat-sterilized raw milk was cooled. The raw milk was then inoculated with 0.5% Liquorilactobacillus satsumensis concentrate and fermented under static conditions at 48°C for 18 hours. Lactobacillus bulgaricus and Streptococcus thermophilus were then added as lactic acid bacteria starters. The amount of lactic acid bacteria starter added was 20 g. The raw milk to which the lactic acid bacteria starter had been added was filled into a cup container (capacity: 100 ml, plastic). The raw milk filled into the cup container was subjected to static fermentation in a fermentation chamber at 43°C until the lactic acid acidity reached 0.7%. The resulting fermented milk can be used for the treatment of lipid metabolism disorders.
[0097] Food Production Example 4: Fermented Milk 2: Raw milk (500.0 g), skim milk powder (53.2 g), cream (23.0 g), tap water (403.6 g), and trisaccharide fraction (54 g) containing galactosyl kojibiose as the main component were mixed to prepare raw milk. The raw milk was then heat-sterilized at 95°C, and the heat-sterilized raw milk was cooled to 43°C. Lactobacillus bulgaricus and Streptococcus thermophilus were then added as lactic acid starters to the heat-sterilized raw milk. The amount of lactic acid starter added was 20 g. The raw milk containing the lactic acid starter was filled into a plastic cup (capacity: 100 ml). The raw milk filled into the cup was subjected to static fermentation in a fermentation chamber at 43°C until the lactic acid acidity reached 0.7%. The resulting fermented milk can be used for the treatment of diabetes.
[0098] The present invention supports the maintenance and improvement of people's health by providing a composition for controlling the growth of bacteria of the genus Fusicatenibacter, which contains any one selected from the group consisting of kojibiose and oligosaccharides containing kojibiose as a constituent sugar. The present invention also provides a food composition and a method for producing food that support the maintenance and improvement of people's health. Furthermore, the present invention can improve the nutrition of a variety of people, ensure healthy lifestyles, and promote welfare.
Claims
1. A composition for controlling the growth of bacteria of the genus Fusicatenibacter, comprising any one selected from kojibiose and oligosaccharides having kojibiose as a constituent sugar.
2. The composition according to claim 1 for use as a prebiotic or synbiotic.
3. A composition for treating any one selected from inflammatory bowel disease and Parkinson's disease, comprising any one selected from kojibiose and oligosaccharides having kojibiose as a constituent saccharide.
4. The composition according to claim 3, wherein the treatment is mediated by controlling the proliferation of Fusicatenibacter bacteria in the intestine.
5. A composition for treating a disease or condition that is ameliorated by controlling the proliferation of intestinal bacteria of the genus Fusicatenibacter, comprising kojibiose and oligosaccharides having kojibiose as a constituent sugar.
6. A composition according to any one of claims 1 to 5, which is obtained by acting glucansucrase on a raw material composition containing lactose and sucrose.
7. The composition according to any one of claims 1, 2, 4 and 5, wherein the growth control is growth promotion.
8. A composition according to any one of claims 1 to 5, comprising galactosyl kojibiose as a component sugar selected from kojibiose and oligosaccharides having kojibiose as a component sugar.
9. A food information providing method comprising the steps of: acquiring information on the intestinal flora of a subject; deriving information on food to be provided to the subject based on the information on the intestinal flora; and providing the derived food information to the subject, wherein in the information acquiring step, information on the presence or absence or amount of Fusicatenibacter bacteria is acquired from the information on the intestinal flora, and in the food information deriving step, information on a food that is a composition containing any one selected from the group consisting of kojibiose and oligosaccharides having kojibiose as a constituent sugar is derived based on the information on the presence or absence or amount of Fusicatenibacter bacteria.
10. A method for controlling Fusicatenibacter bacteria in the intestines of a subject, or a method for supporting the diet or health of a subject, comprising carrying out the method according to claim 9 and providing food to the subject based on the derived food information.
11. The method according to claim 9 or 10, wherein the food product is for use as a prebiotic or synbiotic.
12. The method according to claim 9, further comprising the step of displaying the provided food information on the target terminal.
13. Use of any one selected from kojibiose and oligosaccharides having kojibiose as a constituent sugar, for controlling the proliferation of bacteria of the genus Fusicatenibacter in intestinal flora.
14. A method for controlling the proliferation of bacteria of the genus Fusicatenibacter in an intestinal bacterial flora, the method comprising a step of causing an intestinal bacterial flora containing bacteria of the genus Fusicatenibacter to contain any one selected from kojibiose and oligosaccharides having kojibiose as a constituent sugar.
Citation Information
Patent Citations
Regulant of in vivo lipid
JP2005281188A
Microbiome control factors and their related uses
JP2018513196A
Glycan polymers and related methods
JP2020513410A
Compositions Comprising Bacterial Strains
JP2023503410A
In vivo lipid regulators
JP4746281B2