• 제목/요약/키워드: Prebiotics

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In vitro 발효에서 Prebiotics와 Probiotics가 돼지 장내미생물과 발효산물에 미치는 영향 (Effects of Prebiotics and Probiotics on Swine Intestinal Microflora and Fermentation Products In Vitro Fermentation)

  • 김동운;채수진;김영화;정현정;이성대;박준철;조규호;사수진;김인철;김인호
    • 미생물학회지
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    • 제49권1호
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    • pp.24-29
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    • 2013
  • 본 연구는 prebiotics와 probiotics가 in vitro 배양조건에서 돼지 장내 미생물 및 발효산물에 미치는 영향에 대하여 검토 하였다. prebiotics로써 이소말토-올리고당(IMO), 부분분해 치커리이눌린(CI), 라피노스(RA), 사이클로덱스트린(CD)을 사용하였으며 probiotics로는 Lactobacillus reuteri를 사용하였다. In vitro 발효시험은 육성돈 사료를 소화효소로 가수분해 시킨 사료와 5%의 돈분 그리고 prebiotics와 probiotics를 첨가 또는 무첨가하여 24시간 동안 배양시켰다. 배양 후 발효액 내의 미생물, 가스, pH, 암모니아, 황화수소, 단쇄지방산을 분석하였다. 엔테로박테리아는 prebiotics와 probiotics 첨가구가 대조구와 비교하여 유의적으로 감소하였으며, 락토바실러스 수는 유의적으로 증가하였다. 발효액의 pH는 대조구에 비하여 첨가구에서 낮았으며 prebiotics보다 prebiotics+probiotics 첨가구에서 더욱 낮았다. 암모니아, 황화수소 및 스카톨의 농도는 prebiotics+probiotics 구보다 prebiotics 첨가시 유의적으로 감소하였다. 단쇄지방산은 prebiotics 보다 prebiotics+probiotics 구에서 유의적으로 많이 생성되었다. 본 시험의 결과 prebiotics 첨가는 암모니아, 황화수소 및 스카톨의 농도를 감소시키는데 효과가 있었으며, prebiotics+probiotics는 유산균과 단쇄지방산의 농도를 증가시키는 효과가 있었다. In vitro에서 얻어진 실험 결과가 실제로 돼지에 급여 시 같은 결과가 얻어질런지에 대한 추가적인 연구가 필요하다.

프리바이오틱스 최신 연구 현황 및 제품 개발 동향 (Prebiotics: An overview of current researches and industrial applications)

  • 황혜원;이동우
    • 식품과학과 산업
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    • 제52권3호
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    • pp.241-260
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    • 2019
  • Prebiotics are defined as substrates that are selectively utilized by host microorganisms conferring various health benefits. Current prebiotic researches not only focus on non-digestible oligosaccharides, but also extend to polyphenols and peptides. However, the extended scope of prebiotic research pertains its original purposes: promotion of beneficial bacteria in host guts and production of valuable metabolites. Maintenance of optimal gut microflora plays a key role in host health care benefits including anti-cancer activity, immune response modulation, blood lipid level reduction, increased mineral absorption, and weight loss. With increasing probiotics markets, prebiotics have also received much attention in functional food markets. Hence, many global food companies tempt to develop new prebiotics applicable for preventing human diseases as well as modulating immune system. In this review, we discuss current status of prebiotics research, market progress, and future perspectives of prebiotics.

POTENTIAL APPLICATION OF PREBIOTICS AND PROBIOTICS

  • Kim Saehun
    • 한국식품영양과학회:학술대회논문집
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    • 한국식품영양과학회 2001년도 International Symposium on Food,Nutrition and Health for 21st Century
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    • pp.178-186
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    • 2001
  • The importance of probiotics and prebiotics in health-promoting effect on the host is increasing. Recent studies on gastrointestinal system have contributed to further understanding of the mechanisms involved in the interaction between probiotics and prebiotics. In his presentation, the beneficial effects of probiotics and prebiotics, and applications of microencapsulation technique for the application of prebiotics and probiotics are described.

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프리바이오틱스의 기능에 관한 연구 고찰 (Prebiotics: A Review)

  • 윤진아;신경옥
    • 한국식품영양학회지
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    • 제30권2호
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    • pp.191-202
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    • 2017
  • This study was conducted to investigate the characteristics of major prebiotics and the related studies, and to provide basic data for future research. Prebiotics are defined as 'nondigestible food ingredients that beneficially affect the host by selectively stimulating the growth and/or activity of one or a limited number of bacteria in the colon, and thus improve host health'. Well-known prebiotics are inulin, oligofructose, and galacto-oligosaccharide. Prebiotics assist in the health activity of lactic acid bacteria by acting as a substrate for lactic acid bacteria, with their unique physical and chemical properties. Bifidobacteria are known to be beneficial bacteria that prevent intestinal inflammation, maintain intestinal microflora balance, inhibit carcinogenesis, reduce cholesterol, and enhance immunity. However, Bifidobacteria, Lactobacillus, Bacillus, and Weissella are also found in animal-based fermented foods such as milk, cheese, yogurt, and salted fish. Prebiotics can act as a substrate for lactic acid bacteria, helping the activity of lactic acid bacteria and improving health. Therefore, the authors suggest that investigation into the category and effectiveness of prebiotics should be extended in the future through research.

Effect of Prebiotics on Intestinal Microflora and Fermentation Products in Pig In Vitro Model

  • Kim, Dong-Woon;Chae, Su-Jin;Cho, Sung-Back;Hwang, Ok-Hwa;Lee, Hyun-Jeong;Chung, Wan-Tae;Park, Jun-Cheal;Kim, In-Cheul;Kim, In-Ho
    • Journal of Animal Science and Technology
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    • 제52권3호
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    • pp.199-204
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    • 2010
  • The objective of this study was to evaluate the effect of the different types and levels of prebiotics on intestinal microflora and fermentation products in the in vitro fermentation model. The prebiotcs used in this study were IMO (iso-malto oligosaccharide), CI (partially digested chicory-inulin), RA (raffinose) and CD (cyclodextrin). Experimental diet for growing pigs was predigested by digestive enzymes and this hydrolyzed diet was mixed with buffer solution containing 5% fresh swine feces. Then, the mixture was fermented with or without prebiotics at the concentrations of 0.5 and 1.0% for 24 h. Samples were taken at 24 h, and viable count of micoflora, gas, pH, volatile organic compounds and short-chain fatty acids were determined. The viable count of Enterobacteriaceae was significantly decreased (p<0.001) in all treatments added with prebiotics in comparison to control without prebiotics. However, the increase of lactic acid bacteria was observed in the prebiotics treatment. Gas production increased as the level of prebiotics increased. The pH values in the fermentation fluid decreased in a dose-dependent manner with increasing the concentration of prebiotics. The fermentation with prebiotics resulted in the reduction of malodorous compounds such as ammonia, hydrogen sulfide, indole and skatole. The increase in short-chain fatty acid (SCFA) production was observed in the treatments with prebiotics. In conclusion, the results of this study demonstrated that the fermentation with prebiotics was effective in reducing the formation of malodorous compounds and increasing lactic acid bacteria and SCFA. These effects depended on the concentration of prebiotics. Moreover, further study is needed to determine whether the in vitro efficacy on the reduction of malodorous compounds and increase of SCFA would also be observed in animals.

Plant Cell Wall Polysaccharides as Potential Resources for the Development of Novel Prebiotics

  • Yoo, Hye-Dong;Kim, Do-Jung;Paek, Seung-Ho;Oh, Seung-Eun
    • Biomolecules & Therapeutics
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    • 제20권4호
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    • pp.371-379
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    • 2012
  • Prebiotic oligosaccharides, with a degree of polymerization (DP) of mostly less than 10, exhibit diverse biological activities that contribute to human health. Currently available prebiotics are mostly derived from disaccharides and simple polysaccharides found in plants. Subtle differences in the structures of oligosaccharides can cause significant differences in their prebiotic properties. Therefore, alternative substances supplying polysaccharides that have more diverse and complex structures are necessary for the development of novel oligosaccharides that have actions not present in existing prebiotics. In this review, we show that structural polysaccharides found in plant cell walls, such as xylans and pectins, are particularly potential resources supplying broadly diverse polysaccharides to produce new prebiotics.

프로바이오틱스, 프리바이오틱스 및 신바이오틱스 연구동향 (Trends in studies on probiotics, prebiotics, and synbiotics)

  • 문기성
    • 식품과학과 산업
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    • 제52권3호
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    • pp.208-219
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    • 2019
  • Probiotics are very closely related to gut microbiome and recognized as beneficial microorganisms for our health. They have various biological effects such as inhibition of pathogenic bacteria, activation of beneficial bacteria, prevention of diarrhea and constipation, enhanced immune activity etc. Prebiotics, non-digestible carbohydrates such as galactooligosaccharide and fructooligosaccharide, are utilized by beneficial gut bacteria such as bifidobacteria and lactobacilli, resulting in production of short chain fatty acids which inhibit pathogenic bacteria in the gut and function for human health. Synbiotics are introduced for synergistic effects when probiotics are combined with prebiotics and now commercially available. At the moment many functional ingredients are developed and commercialized. Probiotics, prebiotics, and synbiotics might be hot items in the functional food market and the values will increase according to the results of human gut microbiome researches. To meet the situation, systematic and scientific studies as well as marketing effects should be accompanied.

Prebiotics in the Infant Microbiome: The Past, Present, and Future

  • Miqdady, Mohamad;Mistarihi, Jihad Al;Azaz, Amer;Rawat, David
    • Pediatric Gastroenterology, Hepatology & Nutrition
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    • 제23권1호
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    • pp.1-14
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    • 2020
  • The latest definition of a prebiotic is "a substrate that is selectively utilized by host microorganisms conferring a health benefit"; it now includes non-food elements and is applicable to extra-intestinal tissues. Prebiotics are recognized as a promising tool in the promotion of general health and in the prevention and treatment of numerous juvenile diseases. Prebiotics are considered an immunoactive agent, with the potential for long-lasting effects extending past active administration of the prebiotic. Because of its extremely low risk of serious adverse effects, ease of administration, and strong potential for influencing the composition and function of the microbiota in the gut and beyond, the beneficial clinical applications of prebiotics are expanding. Prebiotics are the third largest component of human breast milk. Preparations including galactooligosaccharides (GOS), fructooligosaccharides (FOS), 2'-fucosyllactose, lacto-N-neo-tetraose are examples of commonly used and studied products for supplementation in baby formula. In particular, the GOS/FOS combination is the most studied. Maintaining a healthy microbiome is essential to promote homeostasis of the gut and other organs. With more than 1,000 different microbial species in the gut, it is likely more feasible to modify the gut microbiota through the use of certain prebiotic mixtures rather than supplementing with a particular probiotic strain. In this review, we discuss the latest clinical evidence regarding prebiotics and its role in gut immunity, allergy, infections, inflammation, and functional gastrointestinal disorders.

Synbiotics (mixture of probiotics and prebiotics) ameliorates DSS-induced ulcerative colitis in vivo.

  • Jeon, Yong-Deok;AYE, AYE;Song, Young-Jae;Kang, Sa-Haeng;Soh, Ju-Ryun;Kim, Dae-Ki;Myung, Hyun;Jin, Jong-Sik
    • 한국자원식물학회:학술대회논문집
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    • 한국자원식물학회 2019년도 추계학술대회
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    • pp.107-107
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    • 2019
  • Ulcerative colitis (UC) is one of inflammatory bowel disease (IBD), characterized by chronic inflammatory response and dysregulation of immune function. The severity of US has been influenced by environmental factors and food habit. The immune modulatory, anti-inflammatory and steroidal medicine have been used for the treatment of UC. However, long-term administration of those medicine is accompanied with side-effect. So, it is necessary to develop the non side-effect medicine using natural product. Prebiotics influences intestinal condition and food consumption. The heredity, immunity and environmental condition are related with occurrence of UC. In recent study, UC patients had lower level of prebiotics such as Lactobacillus and Bifidobacterium compared with healthy people. Also, previous study announced that imbalance of enteric flora aggravates the severity of UC. The effectiveness of probiotics might affect colon ability and viable bacteria also could promote the proliferation of beneficial intestinal bacteria. Prebiotics, such as herbal medicine, could lead to balance of intestinal bacteria or increase beneficial bacteria. So, proper choice of herbal medicine could control the intestinal condition. This study aimed to investigate the effect of mixture of probiotics and prebiotics (synbiotics) on dextran sulfate sodium (DSS)-induced UC in vivo. The synbiotics consist of Lactobacillus buchneri, Polymnia sonchifolia and Glycine max Merr. in this study. To evaluate the effect of synbiotics, 3% DSS was administered in BALB/c mice and synbiotics was daily administered for experimental days. The administration of synbiotics regulated colon length shortening, body weight change and disease activity index effectively. Also, extract of synbiotics upregulated survival ability of Lactobacillus buchneri in gut condition. These results suggest that mixture of probiotics and prebiotics, called as synbiotics, could influence intestinal condition also regulate the colon disease. Synbiotics might be a therapeutic agent for treatment of UC.

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