JP5980785B2 - New bifidobacteria and their use - Google Patents
New bifidobacteria and their use Download PDFInfo
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- JP5980785B2 JP5980785B2 JP2013532622A JP2013532622A JP5980785B2 JP 5980785 B2 JP5980785 B2 JP 5980785B2 JP 2013532622 A JP2013532622 A JP 2013532622A JP 2013532622 A JP2013532622 A JP 2013532622A JP 5980785 B2 JP5980785 B2 JP 5980785B2
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- bifidobacterium
- ability
- bacteria
- adhere
- mucin
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Classifications
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- C—CHEMISTRY; METALLURGY
- C12—BIOCHEMISTRY; BEER; SPIRITS; WINE; VINEGAR; MICROBIOLOGY; ENZYMOLOGY; MUTATION OR GENETIC ENGINEERING
- C12N—MICROORGANISMS OR ENZYMES; COMPOSITIONS THEREOF; PROPAGATING, PRESERVING, OR MAINTAINING MICROORGANISMS; MUTATION OR GENETIC ENGINEERING; CULTURE MEDIA
- C12N1/00—Microorganisms, e.g. protozoa; Compositions thereof; Processes of propagating, maintaining or preserving microorganisms or compositions thereof; Processes of preparing or isolating a composition containing a microorganism; Culture media therefor
- C12N1/20—Bacteria; Culture media therefor
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- A—HUMAN NECESSITIES
- A23—FOODS OR FOODSTUFFS; TREATMENT THEREOF, NOT COVERED BY OTHER CLASSES
- A23L—FOODS, FOODSTUFFS, OR NON-ALCOHOLIC BEVERAGES, NOT COVERED BY SUBCLASSES A21D OR A23B-A23J; THEIR PREPARATION OR TREATMENT, e.g. COOKING, MODIFICATION OF NUTRITIVE QUALITIES, PHYSICAL TREATMENT; PRESERVATION OF FOODS OR FOODSTUFFS, IN GENERAL
- A23L33/00—Modifying nutritive qualities of foods; Dietetic products; Preparation or treatment thereof
- A23L33/10—Modifying nutritive qualities of foods; Dietetic products; Preparation or treatment thereof using additives
- A23L33/135—Bacteria or derivatives thereof, e.g. probiotics
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- C12N1/00—Microorganisms, e.g. protozoa; Compositions thereof; Processes of propagating, maintaining or preserving microorganisms or compositions thereof; Processes of preparing or isolating a composition containing a microorganism; Culture media therefor
- C12N1/20—Bacteria; Culture media therefor
- C12N1/205—Bacterial isolates
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- C—CHEMISTRY; METALLURGY
- C12—BIOCHEMISTRY; BEER; SPIRITS; WINE; VINEGAR; MICROBIOLOGY; ENZYMOLOGY; MUTATION OR GENETIC ENGINEERING
- C12R—INDEXING SCHEME ASSOCIATED WITH SUBCLASSES C12C - C12Q, RELATING TO MICROORGANISMS
- C12R2001/00—Microorganisms ; Processes using microorganisms
- C12R2001/01—Bacteria or Actinomycetales ; using bacteria or Actinomycetales
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- General Health & Medical Sciences (AREA)
- Microbiology (AREA)
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- Nutrition Science (AREA)
- Food Science & Technology (AREA)
- Polymers & Plastics (AREA)
- Micro-Organisms Or Cultivation Processes Thereof (AREA)
- Coloring Foods And Improving Nutritive Qualities (AREA)
- Measuring Or Testing Involving Enzymes Or Micro-Organisms (AREA)
- Medicines Containing Material From Animals Or Micro-Organisms (AREA)
Description
本発明は、腸管に留まり、かつ腸管で増殖できる新規なビフィドバクテリウム属細菌、及びその利用に関する。 The present invention relates to a novel Bifidobacterium bacterium that remains in the intestine and can grow in the intestine, and uses thereof.
ビフィドバクテリウム属細菌はヒトの腸内菌叢における主要細菌で、便秘や下痢の改善等の整腸作用、血清コレステロール上昇抑制作用、免疫賦活作用等、ヒトの健康に対して有益な作用を有することが知られており、各種発酵飲食品や生菌製剤等の形態で多数の製品が販売されている。 Bifidobacterium is a major bacterium in the intestinal flora of humans and has beneficial effects on human health such as bowel regulation such as constipation and diarrhea improvement, serum cholesterol elevation suppression, and immunostimulation. Many products are sold in the form of various fermented foods and beverages, viable bacteria preparations, and the like.
ビフィドバクテリウム属細菌は主として生菌の状態で上記の効果を発揮すると考えられており、発酵飲食品や生菌製剤中のビフィドバクテリウム属細菌の生残性を高め、より多くの生菌を摂取するための工夫が種々なされてきた。しかし、ビフィドバクテリウム属細菌が単に腸管を通過するだけでは、上記の効果を十分に発揮できない可能性も指摘されており、ビフィドバクテリウム属細菌が腸管に留まり、かつ、腸管内で増殖することが重要であると考えられている。 Bifidobacterium is considered to exert the above-mentioned effects mainly in the state of viable bacteria, increasing the survival of Bifidobacterium in fermented foods and beverages and viable preparations, and increasing the number of living organisms. Various devices for ingesting bacteria have been made. However, it has also been pointed out that the above effect may not be fully exerted by simply passing the Bifidobacterium bacterium through the intestinal tract, and the Bifidobacterium bacterium remains in the intestine and proliferates in the intestine. It is considered important to do.
腸管に留まるためには、腸管への接着能を有することが必要とされる。腸管への接着能を有する細菌として乳酸菌ではラクトバチルスGG(ATCC 53103)、ラクトバチルス・パラカゼイ KW3110等(特許文献1,2)が報告されている。また、報告例は少ないものの、ビフィドバクテリウム属細菌としてはビフィドバクテリウム・ビフィダム WB1003(特許文献3)が報告されている。 In order to remain in the intestinal tract, it is necessary to have the ability to adhere to the intestinal tract. Lactobacillus GG (ATCC 53103), Lactobacillus paracasei KW3110, etc. (Patent Documents 1 and 2) have been reported as lactic acid bacteria as bacteria having the ability to adhere to the intestinal tract. Moreover, although there are few report examples, Bifidobacterium bifidum WB1003 (patent document 3) is reported as a Bifidobacterium genus bacterium.
しかしながら、前記の乳酸菌やビフィドバクテリウム属細菌は、腸管に接着はするが、腸管内で増殖しなければその効果を十分に発揮することは不可能である。 However, the aforementioned lactic acid bacteria and Bifidobacterium bacteria adhere to the intestinal tract, but they cannot fully exert their effects unless they grow in the intestinal tract.
従って本発明は、腸管に留まるだけでなく腸管内で増殖することができるビフィドバクテリウム属細菌を提供することを課題とする。 Accordingly, an object of the present invention is to provide a bacterium belonging to the genus Bifidobacterium that can not only stay in the intestine but also grow in the intestine.
そこで本発明者らは、上記課題を解決するため、腸管細胞への接着能に加えて、腸管粘膜の主成分であるムチン資化能を有することを指標として、数多くのビフィドバクテリウム属細菌をスクリーニングしてきた結果、腸管細胞への接着能及びムチン資化能を有し、腸管に留まるだけでなく腸管内で増殖可能な新規なビフィドバクテリウム属細菌を見出し、本発明を完成した。 Therefore, in order to solve the above-mentioned problems, the present inventors have used a number of Bifidobacterium bacteria as an index of having an ability to assimilate mucin, which is a main component of the intestinal mucosa, in addition to the ability to adhere to intestinal cells. As a result, the present inventors have found a novel Bifidobacterium genus that has an ability to adhere to intestinal cells and an ability to utilize mucin and can not only stay in the intestinal tract but also grow in the intestinal tract, thereby completing the present invention.
すなわち、本発明は、腸管細胞への接着能及びムチン資化能を有することを特徴とするビフィドバクテリウム属細菌を提供するものである。 That is, the present invention provides a Bifidobacterium bacterium characterized by having the ability to adhere to intestinal cells and the ability to assimilate mucin.
また、本発明は、前記ビフィドバクテリウム属細菌を含有することを特徴とする飲食品、特に発酵乳飲食品を提供するものである。
さらに、本発明は、腸管細胞への接着能及びムチン資化能を指標としてビフィドバクテリウム属細菌を選抜することを特徴とする腸管に留まり、腸管内で増殖可能なビフィドバクテリウム属細菌のスクリーニング方法を提供するものである。Moreover, this invention provides the food / beverage products characterized by containing the said Bifidobacterium genus bacteria, especially fermented milk food / beverage products.
Furthermore, the present invention relates to a Bifidobacterium genus that remains in the intestinal tract and is capable of growing in the intestinal tract, wherein the Bifidobacterium genus bacterium is selected using as an index the ability to adhere to intestinal cells and the ability to assimilate mucin. The screening method is provided.
本発明のビフィドバクテリウム属細菌は、腸管細胞への接着能及びムチン資化能を有するため、腸管に留まり、かつ、腸管内で増殖することができ、腸管内においてビフィドバクテリウム属細菌が有する生理効果を効果的かつ持続的に発揮することができる。また、これらの生理効果を有する飲食品、特に発酵乳飲食品の製造に好適に利用することができる。 Since the Bifidobacterium of the present invention has the ability to adhere to intestinal cells and the ability to assimilate mucin, it can stay in the intestine and can grow in the intestine, and the Bifidobacterium in the intestine Can exert the physiological effect of the bacterium effectively and continuously. Moreover, it can utilize suitably for manufacture of the food / beverage products which have these physiological effects, especially fermented milk food / beverage products.
本発明のビフィドバクテリウム属細菌は、腸管細胞への接着能及びムチン資化能を有し、腸管細胞への接着能を有することで腸管に留まることができ、ムチン資化能を有することで腸管内で増殖することができる。 The Bifidobacterium of the present invention has the ability to adhere to intestinal cells and the ability to assimilate mucin, and can remain in the intestine by having the ability to adhere to intestinal cells and has the ability to assimilate mucin Can grow in the intestine.
本発明において、「腸管細胞への接着能を有する」とは、対象となるビフィドバクテリウム属細菌が腸管に留まることができる程度に腸管細胞に接着できる能力を有することを意味し、接着部位や接着の様式等は問わない。具体的には、ヒト大腸がん由来細胞であるHT−29細胞に対し、十分量(HT−29細胞1個当たり50個以上)のビフィドバクテリウム属細菌を2時間作用させたとき、HT−29細胞1個当たり1個以上のビフィドバクテリウム属細菌が接着することを言う。HT−29細胞1個当たり2個以上の細菌が接着することが好ましく、3個以上の細菌が接着することがより好ましく、3〜10個の細菌が接着することがさらに好ましい。接着する細菌数が多いほど、より効率的に腸管に留まることができるため、本発明のビフィドバクテリウム属細菌として好適に用いることができる。 In the present invention, “having the ability to adhere to intestinal cells” means having the ability to adhere to intestinal cells to the extent that the target Bifidobacterium genus bacteria can remain in the intestinal tract. There are no restrictions on the type of adhesion or the like. Specifically, when a sufficient amount (50 or more per HT-29 cell) of Bifidobacterium is allowed to act on HT-29 cells, which are human colon cancer-derived cells, for 2 hours, HT -Refers to the attachment of one or more Bifidobacterium per 29 cells. It is preferable that 2 or more bacteria adhere to one HT-29 cell, more preferably 3 or more bacteria adhere, and further preferably 3 to 10 bacteria adhere. The larger the number of bacteria that adhere, the more efficiently it can stay in the intestinal tract, and therefore it can be suitably used as the Bifidobacterium bacterium of the present invention.
また、「ムチン資化能を有する」とは、対象となるビフィドバクテリウム属細菌を、ムチンのみを糖源とする培地で48時間培養したときの濁度(クレット値、Klett−Summerson比色計、No.66フィルター)が50以上であることを言う。クレット値は75以上が好ましく、100以上がより好ましく、100〜200がさらに好ましい。クレット値が高いほど、腸管内での増殖能が高いため、本発明のビフィドバクテリウム属細菌として好適に用いることができる。 In addition, “having mucin utilization ability” means turbidity (Klett value, Klett-Summerson colorimetry) when the target Bifidobacterium bacterium is cultured in a medium containing only mucin as a sugar source for 48 hours. Total, No. 66 filter) is 50 or more. The kret value is preferably 75 or more, more preferably 100 or more, and still more preferably 100 to 200. The higher the Klett value, the higher the ability to grow in the intestinal tract, so that it can be suitably used as the Bifidobacterium bacterium of the present invention.
ムチン資化能の試験に用いられる培養培地としては、糖源を除いた培地にムチンを添加したものを用いればよく、糖源を除いた培地の組成は、Rogosa培地、M−ILS培地、PY培地、GAM培地、TOSプロピオン酸培地等の組成とすることができる。添加するムチンはヒト腸管由来ムチンが好ましいが、ブタ胃ムチンで代用できる。ムチンの添加量は培地中に0.1〜10質量%が好ましく、0.5〜5質量%がより好ましく、0.5〜2質量%がさらに好ましい。なお、糖源が存在しなくても増殖する菌がまれに存在するため、対照として糖源を除いた培地で対象となるビフィドバクテリウム属細菌を培養し、クレット値を確認しておくことが望ましい。糖源を除いた培地でのクレット値が10以上の場合は、ムチンのみを糖源とする培地のクレット値から糖源を除いた培地でのクレット値を差し引き、上記の判定基準に当てはめればよい。 The culture medium used for the mucin utilization test may be a medium obtained by adding mucin to a medium excluding the sugar source, and the composition of the medium excluding the sugar source is Rogosa medium, M-ILS medium, PY. The composition can be a medium, a GAM medium, a TOS propionic acid medium, or the like. The mucin to be added is preferably human intestinal mucin, but can be substituted with porcine stomach mucin. The amount of mucin added is preferably 0.1 to 10% by mass, more preferably 0.5 to 5% by mass, and still more preferably 0.5 to 2% by mass in the medium. In addition, since there are rare bacteria that can grow even if there is no sugar source, culture the target Bifidobacterium bacterium in a medium excluding the sugar source as a control and confirm the cret value. Is desirable. If the kret value in the medium excluding the sugar source is 10 or more, the klet value in the medium excluding the sugar source is subtracted from the klet value in the medium using only mucin as the sugar source, and the above criteria are applied. Good.
本発明の対象となるビフィドバクテリウム属細菌の種類は特に限定されないが、例えば、ビフィドバクテリウム・ブレーベ(Bifidobacterium breve)、ビフィドバクテリウム・ロンガム(B.longum)、ビフィドバクテリウム・ビフィダム(B.bifidum)、ビフィドバクテリウム・アニマーリス(B.animalis)、ビフィドバクテリウム・ズイス(B.suis)、ビフィドバクテリウム・インファンティス(B.infantis)、ビフィドバクテリウム・アドレセンティス(B.adolescentis)、ビフィドバクテリウム・カテヌラータム(B.catenulatum)、ビフィドバクテリウム・シュードカテヌラータム(B.pseudocatenulatum)、ビフィドバクテリウム・ラクチス(B.lactis)、ビフィドバクテリウム・グロボサム(B.globosum)、ビフィドバクテリウム・アンギュラータム(B.angulatum)、ビフィドバクテリウム・デンティウム(B.dentium)等が挙げられる。中でも、ビフィドバクテリウム・ブレーベ、ビフィドバクテリウム・ロンガム、ビフィドバクテリウム・ビフィダムは以前から乳製品に数多く使用されている安全性が高い菌種で、種々の生理効果も報告されていることから好ましく、特にビフィドバクテリウム・ビフィダムが好ましい。The type of Bifidobacterium genus subject to the present invention is not particularly limited. For example, Bifidobacterium breve ( Bifidobacterium breve ), Bifidobacterium longum ( B. longum ), Bifidobacterium bifidum (B.bifidum), Bifidobacterium Animarisu (B.animalis), Bifidobacterium Zuisu (B.suis), Bifidobacterium infantis (B.infantis), Bifidobacterium address Sen Eustis (B.adolescentis), Bifidobacterium Katenuratamu (B.catenulatum), Bifidobacterium shoe Doka Tenu error Tam (B.pseudocatenulat m), Bifidobacterium lactis (B.lactis), Bifidobacterium Gurobosamu (B.globosum), Bifidobacterium angular Tam (B.angulatum), Bifidobacterium Dentiumu (B. dentium ) and the like. Among them, Bifidobacterium breve, Bifidobacterium longum, and Bifidobacterium bifidum are highly safe species that have been used in dairy products for a long time, and various physiological effects have been reported. In particular, Bifidobacterium bifidum is preferred.
本発明では、後述の実施例に示すように、HT−29細胞1個当たりの接着菌数が1個以上、クレット値が50以上であるビフィドバクテリウム属細菌を選抜した。一般的なビフィドバクテリウム属細菌では、HT−29細胞1個当たりの接着菌数が0.1〜0.6個、クレット値が10〜40程度であるが、上記の判定基準で選抜された本発明のビフィドバクテリウム属細菌は、腸管細胞への接着能及びムチン資化能を有するため、腸管に留まり、腸管内で増殖することができ、ビフィドバクテリウム属細菌が有する生理効果を効果的かつ持続的に発揮することができる。なお、本発明のビフィドバクテリウム属細菌は、胆汁酸含有培地でも増殖し、優れた胆汁酸耐性を有し、経口で生きた状態で腸内に到達できる。 In this invention, as shown in the below-mentioned Example, the Bifidobacterium genus bacteria with 1 or more adhesion | attachment bacteria counts per HT-29 cell and a kret value of 50 or more were selected. In general Bifidobacterium, the number of adherent cells per HT-29 cell is 0.1 to 0.6 and the kret value is about 10 to 40. The Bifidobacterium of the present invention has the ability to adhere to intestinal cells and the ability to assimilate mucin, so that it remains in the intestine and can grow in the intestine, and the physiological effects of Bifidobacterium Can be effectively and continuously exhibited. The Bifidobacterium of the present invention grows even in a bile acid-containing medium, has excellent bile acid resistance, and can reach the intestine in an orally alive state.
このようにして選抜した新規の菌株を、ビフィドバクテリウム・ビフィダム YIT 11926(FERM BP−11504)、ビフィドバクテリウム・ビフィダム YIT 11939(FERM BP−11505)として、平成23年9月6日付で、独立行政法人製品評価技術基盤機構 特許生物寄託センター(茨城県つくば市東1丁目1番地1中央第6)に寄託した。これらの菌株は、以下のような菌学的性質を有する。 The new strains thus selected were designated as Bifidobacterium bifidum YIT 11926 (FERM BP-11504) and Bifidobacterium bifidum YIT 11939 (FERM BP-11505) on September 6, 2011. Deposited at the Patent Biological Depositary Center of the National Institute for Product Evaluation Technology (1st, 1st East, 1st Street, Tsukuba City, Ibaraki Prefecture, 6th). These strains have the following mycological properties.
(1)ビフィドバクテリウム・ビフィダム YIT 11926
本菌は健康成人より分離され、科学的性質は、グラム陽性多形性桿菌、偏性嫌気性菌、至適生育温度37℃である。YIT 11926より得られた16S rDNA塩基配列をデータベースで検索して菌種を同定した。ビフィドバクテリウム・ビフィダム YIT 11926の16S rDNA塩基配列は、ビフィドバクテリウム・ビフィダムDSM20456(accession No.M38018)と99.5%の相同性を示し、ビフィドバクテリウム・ビフィダムと同定された。(1) Bifidobacterium bifidum YIT 11926
The bacterium is isolated from healthy adults and has scientific properties of Gram-positive polymorphic gonococci, obligate anaerobes, and optimal growth temperature of 37 ° C. The 16S rDNA base sequence obtained from YIT 11926 was searched from a database to identify the bacterial species. The 16S rDNA base sequence of Bifidobacterium bifidum YIT 11926 showed 99.5% homology with Bifidobacterium bifidum DSM20456 (accession No. M38018) and was identified as Bifidobacterium bifidum.
(2)ビフィドバクテリウム・ビフィダム YIT 11939
本菌は健康成人より分離され、科学的性質は、グラム陽性多形性桿菌、偏性嫌気性菌、至適生育温度37℃である。YIT 11939より得られた16S rDNA塩基配列をデータベースで検索して菌種を同定した。ビフィドバクテリウム・ビフィダム YIT 11939の16S rDNA塩基配列は、ビフィドバクテリウム・ビフィダムDSM20456(accession No.M38018)と99.6%の相同性を示し、ビフィドバクテリウム・ビフィダムと同定された。(2) Bifidobacterium bifidum YIT 11939
The bacterium is isolated from healthy adults and has scientific properties of Gram-positive polymorphic gonococci, obligate anaerobes, and optimal growth temperature of 37 ° C. The 16S rDNA base sequence obtained from YIT 11939 was searched from a database to identify the bacterial species. The 16S rDNA base sequence of Bifidobacterium bifidum YIT 11939 showed 99.6% homology with Bifidobacterium bifidum DSM20456 (accession No. M38018) and was identified as Bifidobacterium bifidum.
本発明のビフィドバクテリウム属細菌の利用形態は特に制限されず、凍結乾燥したものであってもよく、あるいはこれら細菌を含む培養物として利用することもできるが、いずれの形態であっても、細菌が生菌の状態であることが好ましい。 The utilization form of the bacterium belonging to the genus Bifidobacterium of the present invention is not particularly limited, and may be lyophilized, or may be used as a culture containing these bacteria. The bacterium is preferably in a live state.
本発明のビフィドバクテリウム属細菌は、固体又は液体の医薬用無毒性担体と混合して、慣用の医薬品製剤の形態で利用することもできる。このような製剤としては、例えば、錠剤、顆粒剤、散剤、カプセル剤等の固形剤、溶液剤、懸濁剤、乳剤等の液剤、凍結乾燥製剤等が挙げられる。これらの製剤は製剤上の常套手段により調製することができる。上記の医薬用無毒性担体としては、例えば、グルコース、乳糖、ショ糖、澱粉、マンニトール、デキストリン、脂肪酸グリセリド、ポリエチレングリコール、ヒドロキシエチルデンプン、エチレングリコール、ポリオキシエチレンソルビタン脂肪酸エステル、アミノ酸、ゼラチン、アルブミン、水、生理食塩水等が挙げられる。また、必要に応じて、安定化剤、湿潤剤、乳化剤、結合剤、等張化剤、賦形剤等の慣用の添加剤を適宜添加することもできる。 The Bifidobacterium of the present invention can be mixed with a solid or liquid non-toxic pharmaceutical carrier and used in the form of a conventional pharmaceutical preparation. Examples of such preparations include solid preparations such as tablets, granules, powders and capsules, liquid preparations such as solutions, suspensions and emulsions, and freeze-dried preparations. These preparations can be prepared by conventional means on the preparation. Examples of the non-toxic pharmaceutical carrier include glucose, lactose, sucrose, starch, mannitol, dextrin, fatty acid glyceride, polyethylene glycol, hydroxyethyl starch, ethylene glycol, polyoxyethylene sorbitan fatty acid ester, amino acid, gelatin, albumin , Water, physiological saline and the like. In addition, conventional additives such as stabilizers, wetting agents, emulsifiers, binders, isotonic agents, excipients and the like can be appropriately added as necessary.
本発明のビフィドバクテリウム属細菌は、上記のような製剤とするだけでなく、飲食品に配合して使用することもできる。飲食品に配合する場合は、そのまま、または種々の栄養成分と共に含有せしめればよい。具体的に本発明のビフィドバクテリウム属細菌を飲食品に配合する場合は、飲食品として使用可能な添加剤を適宜使用し、慣用の手段を用いて食用に適した形態、すなわち、顆粒状、粒状、錠剤、カプセル、ペースト等に成形してもよく、また種々の食品、例えば、ハム、ソーセージ等の食肉加工食品、かまぼこ、ちくわ等の水産加工食品、パン、菓子、バター、粉乳に添加して使用したり、水、果汁、牛乳、清涼飲料、茶飲料等の飲料に添加して使用してもよい。なお、飲食品には、動物の飼料も含まれる。 The Bifidobacterium genus bacterium of the present invention can be used not only as a preparation as described above but also in a food or drink. What is necessary is just to make it contain with a various nutrient component as it is, when mix | blending with food-drinks. Specifically, when the Bifidobacterium genus bacterium of the present invention is blended in a food or drink, an additive that can be used as a food or drink is appropriately used, and a form suitable for food using conventional means, that is, a granular form , Granulated, tablets, capsules, pastes, etc., added to various foods such as processed meats such as ham and sausage, fishery processed foods such as kamaboko and chikuwa, bread, confectionery, butter and milk powder Or may be used by adding to beverages such as water, fruit juice, milk, soft drinks and tea drinks. The food and drink includes animal feed.
本発明のビフィドバクテリウム属細菌は、ビフィドバクテリウム属細菌が有する整腸作用等の生理効果を効果的かつ持続的に発揮させることができる。特に、腸管に留まり、腸管内で増殖することができることから、ビフィドバクテリウム属細菌を継続的に摂取しなくても、例えば、隔月、隔週、隔日のように摂取間隔を開けた場合や摂取期間が短くても生理効果が期待できるため、経済的なメリットも大きい。 The Bifidobacterium genus bacterium of the present invention can effectively and continuously exert physiological effects such as the intestinal regulating action of the Bifidobacterium genus bacteria. In particular, because it stays in the intestinal tract and can grow in the intestinal tract, even if it does not continuously ingest Bifidobacterium spp., For example, when the intake interval is opened, such as every other month, every other week, every other day Since the physiological effect can be expected even if the period is short, the economic merit is also great.
さらに飲食品としては、本発明のビフィドバクテリウム属細菌を生菌の状態で含有する発酵乳飲食品、発酵豆乳、発酵果汁、発酵野菜汁等の発酵飲食品が好適に用いられ、特に発酵乳飲食品の利用が好ましい。発酵乳飲食品の製造は常法に従えばよく、例えば発酵乳を製造する場合には、殺菌した乳培地に本発明のビフィドバクテリウム属細菌を単独又は他の微生物と同時に接種培養し、これを均質化処理して発酵乳ベースを得る。次に別途調製したシロップ溶液を添加混合し、ホモゲナイザー等で均質化し、更にフレーバーを添加して最終製品に仕上げればよい。このようにして得られる発酵乳飲食品は、シロップ(甘味料)を含有しないプレーンタイプ、ソフトタイプ、フルーツフレーバータイプ、固形状、液状等のいずれの形態の製品とすることもできる。 Furthermore, as food and drink, fermented milk food and drink, fermented soy milk, fermented fruit juice, fermented vegetable juice and the like containing the Bifidobacterium bacterium of the present invention in the state of viable bacteria are preferably used, particularly fermented. Use of dairy foods and drinks is preferred. Fermented milk foods and drinks may be produced in accordance with conventional methods. For example, when producing fermented milk, the sterilized milk medium is inoculated and cultured with the Bifidobacterium of the present invention alone or simultaneously with other microorganisms, This is homogenized to obtain a fermented milk base. Next, a separately prepared syrup solution may be added and mixed, homogenized with a homogenizer or the like, and then a flavor may be added to finish the final product. The fermented milk food and drink obtained in this way can be made into a product of any form such as a plain type, a soft type, a fruit flavor type, a solid form, and a liquid form that does not contain a syrup (sweetener).
かかる発酵乳飲食品にはシロップ等の甘味料、乳化剤、増粘(安定)剤、各種ビタミン等の任意成分を配合することができる。シロップとしては、グルコース、ショ糖、フルクトース、果糖ブドウ糖液糖、ブドウ糖果糖液糖、パラチノース、トレハロース、ラクトース、キシロース、麦芽糖、蜂蜜、糖蜜等の糖類、ソルビトール、キシリトール、エリスリトール、ラクチトール、パラチニット、還元水飴、還元麦芽糖水飴等の糖アルコール、アスパルテーム、ソーマチン、スクラロース、アセスルファムK、ステビア等の高甘味度甘味料が挙げられる。また、発酵乳飲食品には、ショ糖脂肪酸エステル、グリセリン脂肪酸エステル、ポリグリセリン脂肪酸エステル、ソルビタン脂肪酸エステル、レシチン等の乳化剤、寒天、ゼラチン、カラギーナン、グァーガム、キサンタンガム、ペクチン、ローカストビーンガム、ジェランガム、カルボキシメチルセルロース、大豆多糖類、アルギン酸プロピレングリコール等の増粘(安定)剤を配合してもよい。この他にも、ビタミンA、ビタミンB類、ビタミンC、ビタミンE類等のビタミン類、カルシウム、マグネシウム、亜鉛、鉄、マンガン等のミネラル分、クエン酸、乳酸、酢酸、リンゴ酸、酒石酸、グルコン酸等の酸味料、クリーム、バター、サワークリーム等の乳脂肪、ヨーグルト系、ベリー系、オレンジ系、花梨系、シソ系、シトラス系、アップル系、ミント系、グレープ系、アプリコット系、ペア、カスタードクリーム、ピーチ、メロン、バナナ、トロピカル、ハーブ系、紅茶、コーヒー系等のフレーバー類、ハーブエキス、黒糖エキス等を配合することも可能である。 Such fermented milk foods and drinks can contain optional ingredients such as sweeteners such as syrup, emulsifiers, thickeners (stabilizers), and various vitamins. Syrup includes glucose, sucrose, fructose, fructose glucose liquid sugar, glucose fructose liquid sugar, palatinose, trehalose, lactose, xylose, maltose, honey, molasses and other sugars, sorbitol, xylitol, erythritol, lactitol, palatinit, reduced starch syrup High-sweetness sweeteners such as sugar alcohols such as reduced maltose starch syrup, aspartame, thaumatin, sucralose, acesulfame K, stevia. Fermented milk foods and drinks include sucrose fatty acid esters, glycerin fatty acid esters, polyglycerin fatty acid esters, sorbitan fatty acid esters, lecithin and other emulsifiers, agar, gelatin, carrageenan, guar gum, xanthan gum, pectin, locust bean gum, gellan gum, A thickening (stabilizing) agent such as carboxymethyl cellulose, soybean polysaccharide, propylene glycol alginate and the like may be blended. In addition, vitamins such as vitamin A, vitamin B, vitamin C and vitamin E, minerals such as calcium, magnesium, zinc, iron and manganese, citric acid, lactic acid, acetic acid, malic acid, tartaric acid, glucone Acid flavors such as acids, milk fat such as cream, butter, sour cream, yogurt, berry, orange, quince, perilla, citrus, apple, mint, grape, apricot, pair, custard cream Flavors such as peach, melon, banana, tropical, herbal, tea, and coffee, herb extract, brown sugar extract, and the like can also be blended.
発酵乳飲食品の製造には、本発明のビフィドバクテリウム属細菌以外の微生物を併用することも可能である。このような微生物としては例えば、ビフィドバクテリウム・ブレーベ(Bifidobacterium breve)、ビフィドバクテリウム・ロンガム(B.longum)、ビフィドバクテリウム・ビフィダム(B.bifidum)、ビフィドバクテリウム・アニマーリス(B.animalis)、ビフィドバクテリウム・ズイス(B.suis)、ビフィドバクテリウム・インファンティス(B.infantis)、ビフィドバクテリウム・アドレセンティス(B.adolescentis)、ビフィドバクテリウム・カテヌラータム(B.catenulatum)、ビフィドバクテリウム・シュードカテヌラータム(B.pseudocatenulatum)、ビフィドバクテリウム・ラクチス(B.lactis)、ビフィドバクテリウム・グロボサム(B.globosum)、ビフィドバクテリウム・アンギュラータム(B.angulatum)、ビフィドバクテリウム・デンティウム(B.dentium)等の本発明のビフィドバクテリウム属細菌以外のビフィドバクテリウム属細菌、ラクトバチルス・カゼイ(Lactobacillus casei)、ラクトバチルス・アシドフィルス(L.acidophilus)、ラクトバチルス・プランタラム(L.plantarum)、ラクトバチルス・ブヒネリ(L.buchneri)、ラクトバチルス・ガリナラム(L.gallinarum)、ラクトバチルス・アミロボラス(L.amylovorus)、ラクトバチルス・ブレビス(L.brevis)、ラクトバチルス・ラムノーザス(L.rhamnosus)、ラクトバチルス・ケフィア(L.kefir)、ラクトバチルス・パラカゼイ(L.paracasei)、ラクトバチルス・クリスパタス(L.crispatus)、ラクトバチルス・ゼアエ(L.zeae)、ラクトバチルス・ヘルベティカス(L.helveticus)、ラクトバチルス・サリバリウス(L.salivalius)、ラクトバチルス・ガセリ(L.gasseri)、ラクトバチルス・ファーメンタム(L.fermentum)、ラクトバチルス・ロイテリ(L.reuteri)、ラクトバチルス・デルブルッキィ サブスピーシーズ.ブルガリカス(L.delbrueckii subsp.bulgaricus)、ラクトバチルス・デルブルッキィ サブスピーシーズ.デルブルッキィ(L.delbrueckii subsp.delbrueckii)、ラクトバチルス・ジョンソニー(L.johnsonii)等のラクトバチルス属細菌、ストレプトコッカス・サーモフィルス(Streptococcus thermophilus)等のストレプトコッカス属細菌、ラクトコッカス・ラクチス サブスピーシーズ.ラクチス(Lactococcus lactis subsp.lactis)、ラクトコッカス・ラクチス サブスピーシーズ.クレモリス(Lactococcus lactis subsp.cremoris)等のラクトコッカス属細菌、エンテロコッカス・フェカーリス(Enterococcus faecalis)、エンテロコッカス・フェシウム(E.faecium)等のエンテロコッカス属細菌、バチルス・ズブチリス(Bacillus subtilis)等のバチルス属細菌、サッカロマイセス・セルビシエ(Saccharomyses cerevisiae)、トルラスポラ・デルブルッキィ(Torulaspora delbrueckii)、キャンジダ・ケフィア(Candida kefyr)等のサッカロマイセス属、トルラスポラ属、キャンジダ属等に属する酵母が挙げられる。本発明のビフィドバクテリウム属細菌と共にラクトバチルス属細菌、ストレプトコッカス属細菌、ラクトコッカス属細菌から選ばれる1種以上を併用して発酵乳飲食品を製造すると高い嗜好性が得られ、飲食が容易となるため好ましい。For the production of fermented milk foods and drinks, microorganisms other than the Bifidobacterium of the present invention can be used in combination. Examples of such microorganisms include Bifidobacterium breve ( Bifidobacterium breve ), Bifidobacterium longum ( B. longum ), Bifidobacterium bifidum ( B. bifidum ), Bifidobacterium animalis ( B. animalis ), Bifidobacterium zuis ( B. suis ), Bifidobacterium infantis ( B. infantis ), Bifidobacterium adrecentis ( B. adolescentens ), Bifidobacterium catenuratam (B.catenulatum), Bifidobacterium shoe Doka Tenu error Tam (B.pseudocatenulatum), Bifidobacterium lactis (B.l CTIS), Bifidobacterium Gurobosamu (B.globosum), Bifidobacterium angular Tam (B.angulatum), bifidobacteria of the present invention, such as Bifidobacterium Dentiumu (B.dentium) Bifidobacteria other than bacteria, Lactobacillus casei , Lactobacillus acidophilus, L. plantarum, L. plantarum, L. buchneri L. gallinarum , L. amylovorus , Lactobacillus brevis ( L. brevis) ), Lactobacillus rhamnosus ( L. rhamnosus ), Lactobacillus kefir ( L. kefir), Lactobacillus paracasei ( L. paracasei), Lactobacillus cripatus ( L. cripatus ), Lactobacillus z. ), Lactobacillus helveticus ( L. helveticus), Lactobacillus salivarius ( L. salivarius ), Lactobacillus gasseri ( L. gasseri), Lactobacillus fermentum ( L. fermentum ), Lactobacillus reuteri ( L. fermentum ) reuteri ), Lactobacillus delbrukki Subspecies. Bulgaricus ( L. delbrueckii subsp. Bulgaricus ), Lactobacillus delbrukki subspecies. Deruburukkyi (L.delbrueckii subsp. Delbrueckii), Lactobacillus John Sony (L.johnsonii) Lactobacillus bacteria such as, Streptococcus thermophilus (Streptococcus thermophilus) Streptococcus bacteria such as, Lactococcus lactis subsp. Lactococcus lactis subsp. Lactis , Lactococcus lactis subspecies. Cremoris (Lactococcus lactis subsp. Cremoris) Lactococcus bacteria such as, Enterococcus faecalis (Enterococcus faecalis), Enterococcus faecium (E.faecium) Enterococcus bacteria such as Bacillus subtilis (Bacillus subtilis) bacteria belonging to the genus Bacillus such as, Saccharomyces cerevisiae ( Saccharomyces cerevisiae ), Torulaspora delbruecki ( Tollaspora delbrueckii ), Candida kefir ( Candida kefyr ), etc. When fermented milk foods and drinks are produced by using one or more selected from Lactobacillus bacteria, Streptococcus bacteria, and Lactococcus bacteria together with the Bifidobacterium of the present invention, high palatability is obtained and food and drink are easy This is preferable.
本発明のビフィドバクテリウム属細菌を使用する場合の投与量に厳格な制限はないが、その好適な投与量は生菌数として1日当たり105cfu〜1013cfuであり、特に108cfu〜1012cfuが好ましい。また、継続的な投与ではなく、例えば、隔月、隔週、隔日のように投与間隔を開けた場合や短い摂取期間でもその生理効果が期待できる。Although there is no strict limitation on the dosage when using the Bifidobacterium of the present invention, the suitable dosage is 10 5 cfu to 10 13 cfu per day as the number of viable bacteria, especially 10 8 cfu. -10 12 cfu is preferred. Moreover, the physiological effect can be expected even when the administration interval is opened, such as every other month, every other week, every other day, or even in a short intake period, instead of continuous administration.
腸管細胞への接着能及びムチン資化能を指標とすることで、腸管に留まり、腸管内で増殖可能なビフィドバクテリウム属細菌をスクリーニングすることができる。すなわち、多くの候補菌株の中から、前述の腸管細胞への接着能に関する判定基準、ムチン資化能に関する判定基準を用いてビフィドバクテリウム属細菌を選抜することで、腸管細胞への接着能及びムチン資化能を有し、腸管に留まり、腸管内で増殖可能なビフィドバクテリウム属細菌を得ることができる。 By using the ability to adhere to intestinal cells and the ability to assimilate mucin as indicators, it is possible to screen Bifidobacterium bacteria that remain in the intestinal tract and can grow in the intestinal tract. That is, by selecting Bifidobacterium bacteria using the above-mentioned criteria for adhesion to intestinal cells and the criteria for mucin utilization, the ability to adhere to intestinal cells is selected. In addition, a Bifidobacterium genus having mucin utilization ability, staying in the intestinal tract, and capable of growing in the intestinal tract can be obtained.
また、腸管細胞への接着能のみを有し、腸管に留まるビフィドバクテリウム属細菌や、ムチン資化能のみを有し、腸管内で増殖可能なビフィドバクテリウム属細菌も前述の判定基準を用いて得ることができる。すなわち、腸管細胞への接着能が基準値以上、ムチン資化能が基準値未満の菌株を選抜すれば、腸管細胞への接着能のみを有し、腸管に留まるビフィドバクテリウム属細菌を得ることができ、ムチン資化能が基準値以上、腸管細胞への接着能が基準値未満の菌株を選抜すれば、ムチン資化能のみを有し、腸管内で増殖可能なビフィドバクテリウム属細菌を得ることができる。 In addition, the above-mentioned criteria also apply to Bifidobacterium bacteria that have only the ability to adhere to intestinal cells and remain in the intestinal tract, and Bifidobacterium bacteria that have only mucin-assimilating ability and can grow in the intestinal tract. Can be used. In other words, if a strain having an ability to adhere to intestinal cells that exceeds the reference value and a mucin utilization ability that is less than the reference value is selected, a Bifidobacterium bacterium that has only the ability to adhere to intestinal cells and remains in the intestinal tract is obtained. Bifidobacterium genus that has only mucin-assimilating ability and can grow in the intestinal tract if a strain having a mucin-assimilating ability greater than the reference value and an ability to adhere to intestinal cells is less than the reference value is selected. Bacteria can be obtained.
さらに、ビフィドバクテリウム属細菌以外の細菌についても、前述の判定基準を用いることで、当該細菌が腸管細胞への接着能やムチン資化能を有するか否か判定することができる。 Furthermore, with respect to bacteria other than Bifidobacterium, it is possible to determine whether or not the bacteria have the ability to adhere to intestinal cells and the ability to assimilate mucin by using the above-mentioned criteria.
以下、実施例を挙げて本発明の内容をさらに詳細に説明するが、本発明はこれらにより何ら制約されるものではない。 Hereinafter, the content of the present invention will be described in more detail with reference to examples, but the present invention is not limited by these.
[実施例1]腸管細胞への接着能及びムチン資化能を有するビフィドバクテリウム属細菌の選抜
(1)ムチン資化能
B.adolescentis、B.bifidum、B.breve、B.catenulatum、B.longum、B.pseudocatenulatum、B.angulatum、B.animalis、B.infantis、B.globosum、B.lactis、B.dentium、L.rhamnosusの13菌種の試験菌株を使用した。
ビフィズス菌は0.7%グルコース添加GAM嫌気液体培地に凍結保存した試験菌液を1%接種し、24時間前培養した。乳酸菌(L.rhamnosus)はMRS液体培地に凍結保存した試験菌液を1%接種し、24時間前培養した。M−ILSの乳糖をムチン(和光、ブタ胃製)に置換した培地(ムチン添加量は1%)に前培養菌を1%接種し(初発菌数は107/ml・培地となる)、48時間後にクレット値を測定した。また糖質を加えないM−ILS培地でも48時間培養を行い、クレット値を測定した。[Example 1] Selection of Bifidobacterium having an ability to adhere to intestinal cells and an ability to assimilate mucin (1) ability to assimilate mucin
B. adolescentis , B. et al . bifidum, B. breve , B.B. catenulatum, B. longum , B.B. pseudocateulatum , B.I. angulatum , B. et al . animalis, B. infantis, B. globosum, B. lactis , B. et al . dentium, L. Using the 13 species of test strains of rhamnosus.
Bifidobacteria were inoculated with 1% of a test bacterial solution cryopreserved in a GAM anaerobic liquid medium supplemented with 0.7% glucose and pre-cultured for 24 hours. Lactobacillus ( L. rhamnosus ) was inoculated with 1% of a test bacterial solution cryopreserved in MRS liquid medium and pre-cultured for 24 hours. Inoculate 1% of the pre-cultured culture medium (mucin addition amount is 1%) on the medium in which the lactose of M-ILS is replaced with mucin (Wako, manufactured by porcine stomach) (the initial bacterial count is 10 7 / ml / medium) After 48 hours, the kret value was measured. Moreover, it culture | cultivated also for 48 hours also in the M-ILS culture medium which does not add carbohydrate, and measured the cret value.
(2)腸管細胞への接着能
(1)と同様の13菌種の試験菌株を使用した。
ヒト大腸がん由来の細胞HT−29は10%FBS添加RPMI−1640培地で培養し、使用した。
ビフィズス菌は0.7%グルコース添加GAM嫌気液体培地で、乳酸菌(L.rhamnosus)はMRS液体培地で24時間培養し、PBSで2回洗浄したのち、10%FBS添加RPMI−1640培地にDAPI染色法による菌数が5×108/ml・培地となるように懸濁した。
HT−29をチャンバー付スライドグラスにコンフルエントになるまで培養後、10%FBS添加RPMI−1640に懸濁した菌懸濁液を400μl加えた(HT−29細胞1個当たりの試験菌株菌数は300個となる)。37℃、5%CO2下で2時間インキュベートした後、10%FBS添加RPMI−1640培地で2回、PBSで1回洗浄し、非接着の細菌を取り除き、2%PFAを加えて4℃で一晩固定した。96%エタノール処理後、ビフィズス菌に対しては蛍光色素Cy5で標識したビフィドバクテリウム特異的プローブBif153(腸内細菌学雑誌 18:141−146、2004)、乳酸菌に対しては蛍光色素Cy5で標識した乳酸菌特異的プローブLab158(Microb.Ecol.Health Dis.11:3−12、1999)を用いてハイブリダイゼーションし、DAPI染色剤の添加された封入剤で封入し蛍光顕微鏡システムにて蛍光画像を取得し、画像処理ソフトを用いてHT−29細胞1個当たりの各試験菌株の接着菌数を定量化した。(2) Adhesive ability to intestinal cells The same 13 strains of test strains as in (1) were used.
Human colon cancer-derived cells HT-29 were used after being cultured in RPMI-1640 medium supplemented with 10% FBS.
Bifidobacteria is a GAM anaerobic liquid medium supplemented with 0.7% glucose, and lactic acid bacteria ( L. rhamnosus ) are cultured for 24 hours in MRS liquid medium, washed twice with PBS, and then stained with DAPI in RPMI-1640 medium supplemented with 10% FBS. The suspension was suspended so that the number of bacteria by the method was 5 × 10 8 / ml · medium.
After HT-29 was cultured on a glass slide with a chamber until it became confluent, 400 μl of a cell suspension suspended in RPMI-1640 supplemented with 10% FBS was added (the number of test strains per HT-29 cell was 300. Will be). After incubating at 37 ° C. under 5% CO 2 for 2 hours, the plate was washed twice with RPMI-1640 medium supplemented with 10% FBS and once with PBS to remove non-adherent bacteria and added with 2% PFA at 4 ° C. Fixed overnight. After 96% ethanol treatment, Bifidobacterium-specific probe Bif153 labeled with the fluorescent dye Cy5 for Bifidobacteria (Intestinal Bacteriology Journal 18: 141-146, 2004), and for lactic acid bacteria with the fluorescent dye Cy5 Hybridization was performed using a labeled lactic acid bacteria-specific probe Lab158 (Microb. Ecol. Health Dis. 11: 3-12, 1999), and the mixture was sealed with a mounting medium to which a DAPI stain was added. The number of adherent bacteria of each test strain per HT-29 cell was quantified using image processing software.
(3)結果
表1及び表2に各試験菌株のムチン資化能と接着能を示した。図1、2にHT−29細胞への接着能を有する菌株の画像、図3、4に接着能のない菌株の画像を示した。(3) Results Tables 1 and 2 show the mucin utilization ability and adhesion ability of each test strain. FIGS. 1 and 2 show images of strains having the ability to adhere to HT-29 cells, and FIGS. 3 and 4 show images of strains having no ability to adhere.
ビフィズス菌12菌種のムチン資化能、腸管細胞への接着能を調べたところ、選抜基準(HT−29細胞1個当たりの接着菌数が1個以上かつクレット値が50以上)を満たす新規の2菌株(YIT 11926、YIT 11939)が見出された。
上記の2菌株以外にムチン資化能を有するビフィズス菌の菌株が3株(Y11077、YIT11082、A−43)あったが、これらの3菌株はいずれも腸管細胞への接着能が低かった。また、腸管細胞への接着能は、YIT 11926、YIT 11939以外にYIT10155、31−2、YIT 4044、YIT 4018が有していたが、これらの4菌株はいずれもムチン資化能が低かった。ムチン資化能、腸管細胞への接着能は、同一の種においても菌株毎のバラツキが非常に大きく、同一の種が有する特有の傾向は見られなかった。
L.ラムノーサス GGは腸管への接着能を有する乳酸菌として知られているが(特許文献1)、今回の試験系でもYIT 11939と同等の腸管細胞への接着能を示した。
一方、GG株のムチン資化能について、糖質なしの培地でのクレット値が76を示したことから、GG株は糖源が存在しなくても増殖できる菌と判断され、ムチン添加培地でのクレット値(97)から上記の値(76)を差し引いた値(21)で判定すると、ムチン資化能を有しないと判断された。
上記以外に、多数のビフィズス菌を用いて、ムチン資化能(合計340株)、腸管細胞への接着能(合計60株)を調べたが、上記の選抜基準を満たす菌株は、YIT 11926、YIT 11939以外には得られなかった。Examination of mucin assimilation ability and adhesion ability to intestinal cells of 12 Bifidobacteria species, new selection that satisfies the selection criteria (the number of adherent bacteria per HT-29 cell is 1 or more and the kret value is 50 or more) 2 strains (YIT 11926, YIT 11939) were found.
In addition to the above two strains, there were 3 strains of bifidobacteria having the ability to assimilate mucin (Y11077, YIT11082, A-43). In addition to YIT 11926 and YIT 11939, YIT 10155, 31-2, YIT 4044, and YIT 4018 possessed the ability to adhere to intestinal cells, but these four strains all had low ability to assimilate mucin. As for the ability to assimilate mucin and the ability to adhere to intestinal cells, the variation among strains was very large even in the same species, and no particular tendency of the same species was observed.
L. Rhamnosus GG is known as a lactic acid bacterium having the ability to adhere to the intestinal tract (Patent Document 1), but this test system also showed the same ability to adhere to intestinal cells as YIT 11939.
On the other hand, regarding the mucin utilization ability of GG strain, since the Klett value in the medium without sugar was 76, it was judged that the GG strain could grow even without the sugar source. When the value (21) obtained by subtracting the above-mentioned value (76) from the klet value (97) was determined to have no ability to assimilate mucin.
In addition to the above, a number of bifidobacteria were used to examine the ability to assimilate mucin (total of 340 strains) and the ability to adhere to intestinal cells (total of 60 strains). Yet 11926, It was not obtained except YIT 11939.
また、一部のビフィズス菌については胆汁酸耐性も調べた。具体的に、GAM液体培地で嫌気的に定常期まで培養した菌液30μlを、0.2%の胆汁酸を添加した3mlのGAM液体培地に接種して37℃で嫌気的に培養し、24時間後に菌体濁度(クレット値)をKlett−Summerson比色計(No.66フィルター)で測定した。胆汁酸含有培地での増殖性を示すクレット値が高いことは、消化管内での生存率、増殖率が高いことを示し、胆汁酸含有培地での増殖性がクレット値で100以上であるビフィズス菌は、多数の菌が生きた状態で腸内に到達することができる。 In addition, some bifidobacteria were also examined for bile acid resistance. Specifically, 30 μl of the bacterial solution cultured anaerobically to the stationary phase in the GAM liquid medium was inoculated into 3 ml of the GAM liquid medium supplemented with 0.2% bile acid and cultured anaerobically at 37 ° C. After the time, microbial turbidity (Kret value) was measured with a Klett-Summerson colorimeter (No. 66 filter). A high Klett value indicating growth in a bile acid-containing medium indicates a high survival rate and growth rate in the gastrointestinal tract, and a Bifidobacterium having a Klett value of 100 or more in the bile acid-containing medium. Can reach the intestines with a large number of bacteria alive.
YIT 11926のクレット値は125、YIT 11939は135であり、B.bifidumのタイプストレインであるYIT 4039は、胆汁酸添加GAM培地で殆ど生育が認められなかった。一般的なビフィズス菌の胆汁酸含有培地での増殖性は、クレット値で0〜数十程度であることから、YIT 11926、YIT 11939は高い胆汁酸耐性を有していることが明らかになった。Klett value of YIT 11926 is 125, YIT 11939 is 135, B. YIT 4039, which is a type strain of bifidum , hardly grew on the BAM-added GAM medium. General bifidobacteria proliferating in a bile acid-containing medium has a Klett value of about 0 to several tens. Therefore, it was revealed that YIT 11926 and YIT 11939 have high bile acid resistance. .
[実施例2]発酵乳飲食品の製造
15%脱脂乳に3%グルコースを添加して殺菌し、ビフィドバクテリウム・ビフィダムYIT 11939を1%接種し、37℃で24時間培養してヨーグルトベース210gを得た。一方、砂糖97g、乳化鉄0.2gを水に溶解し、全量を790gとして殺菌し、シロップを得た。上記のようにして得られたヨーグルトベースとシロップを混合し、香料を1g添加した後、15Mpaで均質化して容器に充填して発酵乳飲料を得た。得られた発酵乳飲料は外観・風味ともに良好で、保存安定性も良好であった。[Example 2] Manufacture of fermented milk foods and beverages 15% skimmed milk was sterilized by adding 3% glucose, inoculated with 1% Bifidobacterium bifidum YIT 11939, cultured at 37 ° C for 24 hours, and yogurt base 210 g was obtained. On the other hand, 97 g of sugar and 0.2 g of emulsified iron were dissolved in water and sterilized with a total amount of 790 g to obtain a syrup. The yogurt base and syrup obtained as described above were mixed, 1 g of flavor was added, and then homogenized at 15 MPa and filled in a container to obtain a fermented milk beverage. The obtained fermented milk beverage had good appearance and flavor and good storage stability.
[実施例3]発酵乳飲食品の製造
全粉乳124gを水506gに溶解し、135℃で3秒間殺菌した後、ビフィドバクテリウム・ブレーベを0.5%、ビフィドバクテリウム・ビフィダム YIT 11926を1%、ラクトバチルス・アシドフィルスを0.001%接種し、37℃でpH5.3まで培養し、15MPaで均質化して、菌液630gを得た。一方、パラチノース98g、ニンジンジュース8g、DHA含有油2.5g、乳化カルシルム7g、ラクトフェリン0.1g、ビタミンD0.02g、香料1gを水に溶解し、水を加えて全量を370gとした後、120℃で3秒間殺菌してシロップ液を得た。菌液、シロップ液を混合し、テトラブリック容器に充填して、pH;5.6、酸度;3.4、無脂乳固形分;8.7%、乳脂肪分;3.2%の発酵乳を得た。得られた発酵乳飲料は外観・風味ともに良好で、保存安定性も良好であった。[Example 3] Manufacture of fermented milk food and drink 124 g of whole milk powder was dissolved in 506 g of water and sterilized at 135 ° C. for 3 seconds, and then Bifidobacterium breve was 0.5%, Bifidobacterium bifidum YIT 11926 1% and Lactobacillus acidophilus 0.001% were inoculated, cultured at 37 ° C. to pH 5.3, and homogenized at 15 MPa to obtain 630 g of a bacterial solution. On the other hand, 98 g of palatinose, 8 g of carrot juice, 2.5 g of DHA-containing oil, 7 g of emulsified calcilm, 0.1 g of lactoferrin, 0.02 g of vitamin D and 1 g of fragrance were dissolved in water, and water was added to make the total amount 370 g. Sterilized at 3 ° C. for 3 seconds to obtain a syrup solution. Bacteria solution and syrup solution are mixed and filled in a tetra brick container, pH: 5.6, acidity: 3.4, non-fat milk solid content: 8.7%, milk fat content: 3.2% fermentation I got milk. The obtained fermented milk beverage had good appearance and flavor and good storage stability.
[実施例4]錠剤の製造
下記の処方で各種成分を混合して造粒・乾燥・整粒した後に、打錠して錠剤を製造した。
(処方) (mg)
本発明の細菌菌体の乾燥物1) 20
微結晶セルロース 100
乳糖 80
ステアリン酸マグネシウム 0.5
メチルセルロース 12
1)ビフィドバクテリウム・ビフィダム YIT 11926の生菌体を凍結乾燥して製造した。[Example 4] Manufacture of tablets Various ingredients were mixed according to the following formulation, granulated, dried and sized, and then tableted to produce tablets.
(Prescription) (mg)
Dried product of bacterial cells of the present invention 1) 20
Microcrystalline cellulose 100
Lactose 80
Magnesium stearate 0.5
Methylcellulose 12
1) A living cell of Bifidobacterium bifidum YIT 11926 was produced by lyophilization.
[実施例5]清涼飲料の製造
下記処方により、常法に従って各成分を配合し、均質化して清涼飲料を得た。得られた清涼飲料は褐色瓶に充填後、アルミキャップにて封印し、加熱処理を施した。得られた清涼飲料は外観・風味ともに良好で、保存安定性も良好であった。
(処方) (g)
本発明の細菌菌体の乾燥物1) 5
香料 0.8
水 100
還元澱粉糖化物 24
果糖 18
1)ビフィドバクテリウム・ビフィダム YIT 11939の生菌体を凍結乾燥して製造した。[Example 5] Manufacture of soft drink According to the following prescription, each component was blended according to a conventional method and homogenized to obtain a soft drink. The obtained soft drink was filled in a brown bottle, sealed with an aluminum cap, and heat-treated. The resulting soft drink had good appearance and flavor and good storage stability.
(Prescription) (g)
Dried product of bacterial cells of the present invention 1) 5
Fragrance 0.8
Water 100
Reduced starch saccharified product 24
Fructose 18
1) Bifidobacterium bifidum YIT 11939 was produced by freeze-drying.
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