• Title/Summary/Keyword: 장내 미생물 균총

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Growth Rate and Antimicrobial Activity of Lactobacillus plantarum Reacting with Bacterial Culture Supernatant (세균 배양액과 반응한 Lactobacillus plantarum의 생장속도 및 항균 활성에 대한 연구)

  • Ha, Eun-Mi
    • Microbiology and Biotechnology Letters
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    • v.43 no.3
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    • pp.187-194
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    • 2015
  • In this study, L. plantarum, when reacting with the culture media of potential pathogenic bacteria, exhibited an increase in growth rate and antimicrobial activity. In order to examine the characteristics and the nature of the reaction with the bacteria, this study carried out experiments involving culturing the test bacteria in M9 minimal media. Subsequently, the supernatant was incrassated by the decompression-drying method. Through colony forming unit assay, it was confirmed that L. plantarum had the function of growth inhibition to various bacteria. After culturing L. plantarum with bacterial media, the growth rate of L. plantarum was measured by absorbance (OD600), the results showed that the growth rate (E. coli treatment group: OD600 = 0.848, S. typhimurium treatment group: OD600 = 0.848) increased, as compared with the non-treated control group (OD600 = 0.48). In contrast, the concentrate itself did not induce the growth of L. plantarum. These results were observed as a universal phenomenon of the Lactobacillus species. Moreover, the increase in antimicrobial activity was observed in L. plantarum, which reacted with the culture media of E. coli and S. typhimurium, through a disc diffusion assay, and the result of growth inhibition against various bacteria was induced. Finally, based on the analysis results of the characteristics of bacteria culture media, which increased the growth rate of L. plantarum and antibacterial activity, the bacterial media had a tolerance for catabolic enzymes, pH 2−8 and heat. Therefore, this substance can be said to be a small molecule which is highly stable under various conditions.

Next-generation Probiotics, Parabiotics, and Postbiotics (Next-generation probiotics, parabiotics 및 postbiotics)

  • Cho, Kwang Keun;Lee, Seung Ho;Choi, In Soon;Lee, Sang Won
    • Journal of Life Science
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    • v.31 no.6
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    • pp.595-602
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    • 2021
  • Human intestinal microbiota play an important role in the regulation of the host's metabolism. There is a close pathological and physiological interaction between dysbiosis of the intestinal microflora and obesity and metabolic syndrome. Akkermansia muciniphila, which was recently isolated from human feces, accounts for about 1-4% of the intestinal microbiota population. The use of A. muciniphila- derived external membrane protein Amuc_1100 and extracellular vesicles (EVs) could be a new strategy for the treatment of obesity. A. muciniphila is considered a next-generation probiotic (NGP) for the treatment of metabolic disorders, such as obesity. Faecalibacterium prausnitzii accounts for about 5% of the intestinal microbiota population in healthy adults and is an indicator of gut health. F. prausnitzii is a butyrate-producing bacterium, with anti-inflammatory effects, and is considered an NGP for the treatment of immune diseases and diabetes. Postbiotics are complex mixtures of metabolites contained in the cell supernatant secreted by probiotics. Parabiotics are microbial cells in which probiotics are inactivated. Paraprobiotics and postbiotics have many advantages over probiotics, such as clear chemical structures, safe dose parameters, and a long shelf life. Thus, they have the potential to replace probiotics. The most natural strategy to restore the imbalance of the intestinal ecosystem normally is to use NGPs among commensal bacteria in the gut. Therefore, it is necessary to develop new foods or drugs such as parabiotics and postbiotics using NGPs.

Probiotics와Prebiotics 유래기능성식품

  • Lee, Myeong-Gi
    • Bulletin of Food Technology
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    • v.15 no.1
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    • pp.55-61
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    • 2002
  • 장내 균총 개선을 위하여 조합시킨 prebiotics와 probiotics는 최고의 건강 증진을 제공할 잠재성을 갖지만, 알맞은 균주선발이 필수적이다. 기능성 식품시장은 연간 15∼20% 성장하고 있고, 그 산업은 33백만 달러의 값어치가 있다(Hilliam, 2000). 기능성 식품은 nutraceuticals, designer foods, medicinal foods, therapeutic foods,superfoods, foodiceuticals와 medifoods로 알려져 있고 그 정의는 전통적인 영양소개념을 넘어선 건강증진 성분을 함유한 식품이라고 할 수 있다(Berner와 O'Donnell,1998). 식품은 phytochemicals, bioactive peptides, $\omega$-3 불포화 지방산, 그리고probiotics 또는 기능성을 갖게 되는 prebiotics의 부가에 의하여 변형될 수 있다(Berner와 O'Donnell, 1998)(표 1). 장관에서 살수 없는 균을 함유한 요구르트의 경우와 같은 다양한 발효 낙농식품 제조에 젖산균을 사용한 이래, 오늘날에는 발효식품에Lactobacillus acidophilus와 bifidobacteria 같은 probiotic 균을 사용하는 경향이다. Probiotic 식품은 살아 있는 미생물을 함유한 식품이고, 그 미생물은 충분한 양이살아 있는 상태로 장 속에 공급되었을 때에 미생물 균총을 개선하여 소비자 건강을 증진시키는 것이라고 할 수 있다(Fuller, 1992). 전통적으로, probiotics는 요구르트와 기타 발효식품에 사용되어 왔지만, 최근에는 드링크, 알약형, 캡슐형, 동결건조물과 같은 형태로도 공급되고 있다. 오늘날, 전세계에 sour cream, buttermilk, 요구르트, 분유와 frozen desserts 같은 식품에 bifidus acidophilus를 함유한 제품이 70개를 넘고 있으며, 일본에서만도 probiotic 미생물을 함유한 형태의 우유제품이 53종류 이상 개발되어 있다. Probiotics는 유럽에서도 매우 인기가 있지만, 주로 요구르트에 한정되어 사용되고 있다(Hilliam, 2000).

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Effects of the Extracts from Gyrophora esculenta and Coriolus versicolor judae Mycelia on the Growth of Intestinal Bacteria (석이버섯과 운지버섯 균사체 추출물이 장내 세균의 생육에 미치는 영향)

  • Park, Kyoung-Ran;Lee, Woon-Jong;Cho, Min-Gyu;Park, Eui-Seok;Jeong, Jun-Young;Kwon, Oh-Sung;Yoon, Hyang-Sik;Kim, Kwang-Yup
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.39 no.6
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    • pp.820-825
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    • 2010
  • The functional food components from various Basidiomycota were investigated to improve human intestinal microflora, especially associated with obesity. EtOH extract from Gyrophora esculenta fruit body and Coriolus versicolor judae mycelia showed antimicrobial activities on Eubacterium limosum, Clostridium perfrigens, Clostridium paraputrificum, Clostridium difficile and Clostridium ramosum, and on Bacteroides fragilis, respectively. Although the 80% EtOH extract from G. esculenta fruit body and hot-water extract from C. versicolor judae mycelia did not reduce weight of the rats in the high fat diet, these extracts showed stability at high temperatures and at wide pH ranges. In the rat group of feeding 80% EtOH extract from G. esculanta fruit body, Bifidobacterium spp. were increased and Clostridium spp. and Eubacterium spp. were decreased compared to the high fat feeding group. Also sensory evaluation was carried out for the development of prototype drink product. These results demonstrated the possibilities of C. versicolor judae and G. esculenta as a functional food components to control intestinal microbial flora.

Effect of Dietary Mulberry leaf on the Composition of Intestinal Microflora in SD Rats (식이 뽕잎이 흰쥐의 장내균총 조성에 미치는 영향)

  • Lee, Heui-Sam;Jeon, Ho-Jung;Lee, Sang-Duk;Moon, Jae-Yu;Kim, Ae-Jung;Ryu, Kang-Sun
    • Korean Journal of Food Science and Technology
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    • v.33 no.2
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    • pp.252-255
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    • 2001
  • This study was performed to investigate the influence of dietary mulberry leaf on the intestinal microflora in rats. Rats were fed each experimental diets containing 1%, 10% of mulberry leaf powder for 4 weeks. Total viable counts and the numbers of Bifidobacterium, Lactobacillus, Clostridium, E. coli and Staphylococcus were determined by nonselective media and various selective media. A decrease in the intestinal population of Clostridium was shown in dietary mulberry leaf group. The E. coli and Staphylococcus populations decreased in dietary mulberry leaf group compared with control group. Methanol extract and fractions of mulberry leaf were subjected to an in vitro screening test for their growth-inhibitory activity. Methanol extract and Water fraction of Mulberry leaves showed weak growth-inhibition of Clostridium perfringens. These results indicate that the composition of gastrointestinal microflora was improved by treatment of mulberry leaves in SD rats and was very effective for growth inhibition of the intestinal harmful bacteria in intestine. Therefore, the mulberry leaves as a newly bio-material can be a useful material for physiologically functional food.

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Effects of Cactus Extracts on Human Intestinal Microflora (선인장 추출물이 인체 장내미생물에 미치는 영향)

  • Ra, Bo-Hyun;Lee, Woon-Jong;Cho, Yun-Won;Kim, Kwang-Yup
    • Journal of agriculture & life science
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    • v.43 no.3
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    • pp.45-54
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    • 2009
  • This study was designed to investigate the effect of cactus (Opuntia ficus-indica var. saboten) extracts on the intestinal bacteria, antioxidative activity and angiotensin -I-converting enzyme(ACE) inhibitory activity. The antimicrobial activities were measured using the 96well-plate method and disc plate method with concentration of 20mg of cactus extract. The stem extract of cactus was inhibitory against Eubacterium limosum, Clostridium perfringens, C. butyricum, C. difficile and Staphylococcus aureus, but was not inhibitory against Bacteroides fragilis, Bifidobacterium bifidum, Lactobacillus acidophilis, Streptococcus thermophilus. The fruit extract of cactus showed no inhibition against Bacteroides fragilis, Bifidobacterium bifidum, Lactobacillus acidophilis, and Streptococcus thermophilis. Their inhibitory activities were not reduced after heat and pH treatment. Antioxidative effects of cactus extracts showed high total polyphenol and flavonoid contents and high activity against free radical DPPH. The stem and fruit extract of cactus showed strong ACE inhibitory activities of 88.8% and 69.2%, respectively. In conclusion cactus (Opuntia ficus-indica var. saboten) extract might be utilized as a functional food material to control intestinal microflora.

LGG와 장건강: LGG의 섭취가 호흡기감염과 장질환에 미치는 효과

  • Korpela, Riitta
    • Food Science and Industry
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    • v.44 no.1
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    • pp.59-62
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    • 2011
  • 전세계적으로 감염성 질환은 주요한 건강 문제이다. 장내 미생물 균총은 해로운 미생물로부터 숙주를 보호할 뿐 아니라 면역계에 있어서 매우 중요한 역할을 한다. 이점이 바로 프로바이오틱스 즉, 건강에 도움을 주며 살아있는 미생물로 정의되는 기본 개념을 탄생시켰다. Lactobacillus rhamnosus GG(이하 LGG) 균은 세계적으로 가장 많이 연구된 프로바이오틱스 균종 중 하나로서, 확인된 효능의 대부분은 주로 위장관 질환에 관한 것이다. 몇몇 연구를 통해 급성 수양성 설사의 치료, 항생제 관련 증상의 예방, 그리고 여행자 설사에 대한 LGG균의 효과가 밝혀졌다. LGG균은 소아에서 호흡기 감염의 발생을 줄이거나 그 합병증을 감소시키는 것으로 보인다. 많은 연구를 통해 LGG 균, LC705, 그리고 프로피오니박테리움 PJS균을 모두 포함한 복합 유산균 제제인 $LGG^{(R)}$ Extra가 위장관 불편감을 줄이고 삶의 질을 향상시키는 것으로 나타났다. 따라서 LGG균의 사용은 감염성 질병의 관리와 위장관 건강을 얻는데 있어 안전하고 쉬운 방법이라 하겠다.

Effect of Dietary Benzoic Acid on Beneficial Microflora and Immune Response in the Intestine of Weaning Pigs (사료내 벤조산 첨가가 이유돼지의 장내 미생물 균총 및 면역체계에 미치는 영향)

  • Oh, Hee Kyung;Choi, Young Hwan;Jin, Ying Hai;Kim, Yoo Yong
    • Journal of Life Science
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    • v.22 no.10
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    • pp.1307-1315
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    • 2012
  • We evaluated the effect of dietary supplements with benzoic acid on intestinal beneficial bacteria concentration and immune response of weaning pigs. Supplementation with benzoic acid at 0.5% or control diet for 35 days resulted in a higher Lactobacillus casei concentration in the cecum. Supplementation with benzoic acid at 0.5% increased concentration of L. plantarum in the cecum. Pigs with the control diet and 0.5% benzoic acid had significantly increased concentration of B. subtillis in the cecum compared to the antibiotic group, while the concentration of B. subtillis in the rectum increased in pigs given 0.3 and 0.5% benzoic acid (p<0.05). Compared with the control group, the level of interleukin-$1{\beta}$ mRNA showed a significant decrease in the proximal small intestine in pigs fed diets supplemented with benzoic acid at 0.5% or antibiotic. Feeding 0.5% benzoic acid resulted in a marked reduction in the expression of IL-6 mRNA in the middle small intestine (p<0.05). Supplementation with benzoic acid at 0.5% or antibiotic resulted in a lower level of tumor necrosis factor-mRNA in the middle intestine. Up to 0.5% benzoic acid may be included in weaning diets for improvement of intestinal beneficial bacteria, thus modulating genes of pro-inflammatory cytokines in the gastrointestinal tract.

Potentials of Synbiotics for Pediatric Nutrition and Baby Food Applications: A Review (소아 영양 및 유아식 응용을 위한 신바이오틱스의 잠재력: 총설)

  • Jung, Hoo Kil;Kim, Sun Jin;Seok, Min Jeong;Cha, Hyun Ah;Yoon, Seul Ki;Lee, Nah Hyun;Kang, Kyung Jin
    • Journal of Dairy Science and Biotechnology
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    • v.33 no.2
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    • pp.111-118
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    • 2015
  • Probiotic, prebiotic, and synbiotic substances as well as microorganisms were added to infant formula in an attempt to influence the intestinal microflora with an aim to stimulate the growth of lactic acid bacteria, especially bifidobacteria and lactobacilli. Over the last 10 years, new synbiotic infant formulas containing probiotics and prebiotics have been proposed in order to simulate the effect of breast-feeding on the intestinal microflora. Owing to their synergistic effect, the new synbiotics are expected to be more helpful than using probiotics and prebiotics individually. Maintenance of the viability of the probiotics during food processing and the passage through the gastrointestinal tract should be the most important consideration, since a sufficient number of bacteria ($10^8cfu/g$) should reach the intended location to have a positive effect on the host. Storage conditions and the processing technology used for the manufacture of products such as infant formula adversely affect the viability of the probiotics. When an appropriate and cost-effective microencapsulation methodology using the generally recognized as safe (GRAS) status and substances with high biological value are developed, the quality of infant formulas would improve. The effect of probiotics may be called a double-effect, where one is an immunomodulatory effect, induced by live probiotics that advantageously alter the gastrointestinal microflora, and the other comprises anti-inflammatory responses elicited by dead cells. At present, a new terminology is required to define the dead microorganisms or crude microbial fractions that positively affect health. The term "paraprobiotics" (or ghost probiotics) has been proposed to define dead microbial cells (not damaged or broken) or crude cell extracts (i.e., cell extracts with complex chemical composition) that are beneficial to humans and animals when a sufficient amount is orally or topically administered. The fecal microflora of bottle-fed infants is altered when the milk-based infant formula is supplemented with probiotics or prebiotics. Thus, by increasing the proportion of beneficial bacteria such as bifidobacteria and lactobacilli, prebiotics modify the fecal microbial composition and accordingly regulate the activity of the immune system. Therefore, considerable attention has been focused on the improvement of infant formula quality such that its beneficial effects are comparable to those of human milk, using prebiotics such as inulin and oligosaccharides and potential specific probiotics such as bifidobacteria, which selectively stimulate the proliferation of beneficial bacteria in the microflora and the indigenous intestinal metabolic activity of the microflora.

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