• 제목/요약/키워드: Intestinal microflora

검색결과 301건 처리시간 0.028초

유산균에 의한 장내미생물효소의 저해 (Inhibition of Intestinal Bacterial Enzymes by Lactic Acid Bacteria)

  • 김동현;한명주
    • 약학회지
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    • 제39권2호
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    • pp.169-174
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    • 1995
  • By coculturing E. coli HGU-3 with Bifidobacterium KH-2 or Streptococcus faecalis HGO-7 with Bifidobacterium KH-2, the productivity of $\beta$-glucuronidase and $\beta$-glucosidase was inhibited. When lactulose, growth factor of lactic acid bacteria, was added into this medium, the productivity of these enzymes and pH of the medium were dramatically decreased. When intestinal microflora of human and rat were inoculated in the medium containing lactulose, the enyzme productivity and pH of the medium were dramatically decreased. By s.c. injecting DMH into mice, $\beta$-glucuronidase of intestinal bacteria was induced, but the production of the enzymes was inhibited by adminstering lactulose.

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다시마 (Laminaria japonicus) Alginate의 가열가수분해에 따른 물리$\cdot$화학적 및 생물학적 특성에 관한 연구 6. 랫드 분변의 장내균총의 변화에 미치는 저분자 Alginate의 영향 (Studies on Physicochemical and Biological Properties of Depolymerized Alginate from Sea tangle, Laminaria japonicus by Thermal Decomposition 6. Effects of Depolymerized Alginate on fecal Microflora in Rats)

  • 김육용;조영제
    • 한국수산과학회지
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    • 제34권2호
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    • pp.77-83
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    • 2001
  • 저분자 alginate인 HAG-10, HAG-50, HAG-100 및 alginate를 랫드에 장기간 섭취시켰을 때, 분변중의 장내미생물균총의 변화를 관찰하여 소화생리의 특성을 개선시키는 최적의 저분자 alginate를 찾고자 실험하였으며 그 결과를 요약하면 다음과 같다. In vitro에 있어서 대표적인 장내세균에 의한 HAG-10, HAG-50, HAG-100 및 alginate의 기질이용성을 조사한 결과, Bacteroides ovatus는 기질로 이용하였으며, Megamonss hypemegas는 약간의 증식하였으나, 그 외의 대부분의 균주는 기질로써의 이용성을 전혀 나타내지 않았다. 분변중 장내균총의 변화는 $10\%$ HAG-10, $1\%$, $5\%$$10\%$ HAG-50 그리고 $1\%$ alginate에서 Bindobacterium과 Lactobacillus 모두 유의적으로 증가하는 경향을 보였으나 유해미생물들은 현저히 감소하였으며, $5\%$$10\%$ alginate에서는 반대로 유익균의 증식이 억제되고 유해균의 증식이 현저히 촉진되었다. 이상의 결과로부터, 저분자 alginate는 대부분의 장내세균에 대한 기질로서의 이용특성을 나타내지 못하는 전형적인 식이섬유원이었으며, 또한 랫드에 있어서 HAG-50의 섭취는 alginate 고유의 기능적 특성을 그대로 유지하면서 장내세균중 유익균인 Bifdobacterium과 Lactobacillus의 증식을 촉진시키고 유해미생물의 증식을 억제하여 장내미생물균총을 개선시키는 최적의 저분자 alginate임을 알 수 있었다.

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${\beta}-Glucuronidase$ 생산 인체장내 Clostridium sp.의 분리 . 동정 (Isolation and Identification of ${\beta}-Glucuronidase$ producing Clostridium sp. from Fecal Microflora)

  • 박종현;신지영
    • 한국식품과학회지
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    • 제31권5호
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    • pp.1357-1362
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    • 1999
  • 한국인의 장내세균중의 유해효소생성 균주를 분리하여 장내환경 개선연구에 활용하고자 ${\beta}-glucuronidase$$7{\alpha}-dehydroxylase$의 유해효소를 분비하는 장내세균으로 알려진 Clostridium속 균주를 분리하였다. 동일인의 장내세균을 2회에 걸쳐서 검색한 후 최다 우점종이외의 장내세균은 동일인이라도 식이등 외부환경에 의하여 변화될 수 있음을 알았다. 이어서 Neomycin-Nagler 선택배지를 사용하여 Clostridium spp.를 14종 분리하여 이들 균주가 유해효소를 생산하는지를 조사하였다. 일차 선발균주중 Clostridium sp. Isolate-11은 ${\beta}-glucuronidase$를 강력히 생성하여 0.021 unit/mg protein의 활성을 보여주었으나 이들 분리 균주중에서 $7{\alpha}-dehydroxylase$의 역가를 TLC상에서 검출할 수 있는 균주는 발견하지 못했다. Isolate-11를 배양생리학적으로 동정한 결과 이 균은 Clostridium scatologenes인 것으로 잠정동정하였다.

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Metabolism of Wogonoside by Human Fecal Microflora and Its Anti-pruritic Effect

  • Trinh, Hien-Trung;Jang, Seo-Young;Han, Myung-Joo;Kawk, Ho-Young;Baek, Nam-In;Kim, Dong-Hyun
    • Biomolecules & Therapeutics
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    • 제17권2호
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    • pp.211-216
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    • 2009
  • To understand the relationship between the metabolism of wogonoside from the rhizome of Scutellaria baicalensis, and its anti-pruritic effect, we anaerobically incubated it with human fecal microflora, identified its metabolite identified, and investigated its anti-pruritic effect in compound 48/80 or histamineinduced pruritic mice. Wogonoside was metabolized to wogonin, with metabolic activity of $6.9{\pm}5.1\;nmol/h/mg$ wet weight of fecal microflora. Orally administered wogonoside had more potent anti-scratching behavioral effect in compound 48/80 or histamine-treated mice than intraperitoneally treated one, apart from orally administered its metabolite, wogonin, which was more potent than the orally administered one. Wogonoside showed more potent anti-pruritic effects when administered at 5 h prior to the pruritic agent treatment than when administered at 1 h before. However, wogonin orally administered 1 h before the treatment with pruritic agents showed a more potent anti-pruritic effect than when treated at 5 h before. Orally administered wogonoside may be metabolized to wogonin in the intestine and its anti-scratching behavioral effect may be dependent on its metabolism by intestinal microflora.

수유방법에 따른 한국 신생아의 장내균총 조성에 관한 연구 (Composition of the Gastrointestinal Microflora in Korean Breast-fed and Formula -fed Newborn Infants)

  • 문수재
    • Journal of Nutrition and Health
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    • 제31권1호
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    • pp.80-87
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    • 1998
  • Intestinal microflora in 17 breast-fed(BF) and 14 formula-fed (FF) newborn infants at about 1 week after birth were investigated to determine the floral differences of the two lactation groups. The fecal conditions were significantly different between the two groups in that the number of subjects who showed watery feces, and the times of defecation per day, were higher in the BF group. In addition, the mean fecal PH of the BF group was lower than that of the FF group. The dominant species in the BF groups which showed the highest count among the species of microflora was bifidobacteria , while the dominant species in the FF group was streptococci. The frequency of staphylococci and the count of bifidobacteria were significantly higher in the BF group. However, the frquencies of streptococci and Peptococcaceae were higher in the FF group. Through the differences were not significant, the frequency of bvifidobacteria and the count of staphylococci were higher in BF group, whereas the frequencies of bacteriodes, clostridia, enterobacter and the count of clostridia were higher in FF group.

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Dietary Regulations of the Intestinal Barrier Function at Weaning

  • Bosi, Paolo;Gremokolini, Cyrien;Trevisi, Paolo
    • Asian-Australasian Journal of Animal Sciences
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    • 제16권4호
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    • pp.596-608
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    • 2003
  • Weaning is a complex phase when the mammal suffers the action of different stressors that contribute to negatively affect the efficiency of the intestinal mucosa and of the whole local integrated system, that acts as barrier against any nocuous agent. The components of this barrier are mechanical, chemical, and bacteriological; immunological and not. The development of contact with a saprophyte microflora and the maintenance of feed intake after the interruption of motherly nutrition are essential for the maturation of an equilibrated local immune function and for a functional integrity of villi. Opportunities and limits of some dietary strategies that can contribute to reduce negative effects of weaning on health and performance are discussed. Knowledges on the possible mechanism of action of probiotics are upgraded, particularly for their supposed role in the balance between different immune functions (effectory/regulatory). Some tools to control pathogen microflora are reviewed (acids, herbs, immunoglobulin sources) and practical feeding systems are proposed.

소규모 돼지도축공정에서 도체오염 미생물의 변화 (Microbial change of pork carcass during processing in small size slaughterhouse)

  • 홍종해;이경환;이성모
    • 한국동물위생학회지
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    • 제25권1호
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    • pp.31-37
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    • 2002
  • Major hazards existed in slaughterhouse are pathogenic microorganisms originated from intestinal microflora of slaughtered animals. This study was intended for the identification of microbial contamination sources during pork slaughtering in small plants. Total aerobic bacteria, Coliform group, Salmonella spp, Listeria monocytogenes, and Campylobacter jejuni/coli were isolated from the surface sample of pork carcasses. Contamination level among different sampling points of ham, belly and neck did not showed statistical differences. Therefore, the mixed sampling from belly and neck of carcass could be effective for microbiological monitoring. Isolation rates of pathogenic microorganisms showed Salmonella spp 20.9%, Listeria monocytogenes 10.5%, and Campylobacter jejuni/coli 8.1% from 296 sampling points. High prevalence rate of Salmonella spp indicated that the contamination of intestinal microflora occurred due to unsanitary processing control, which required HACCP system in small plants. It was recommended that the prerequisite program should be a key factor for a successful HACCP system implementation especially in small size slaughterhouse.

Effect of Using Organic Acids to Substitute Antibiotic Growth Promoters on Performance and Intestinal Microflora of Broilers

  • Hassan, H.M.A.;Mohamed, M.A.;Youssef, Amani W.;Hassan, Eman R.
    • Asian-Australasian Journal of Animal Sciences
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    • 제23권10호
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    • pp.1348-1353
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    • 2010
  • A grower broiler experiment (from 14 to 35 days of age) was conducted to study the effect of using two commercial mixtures of organic acids (Galliacid$^{(R)}$ and Biacid$^{(R)}$) to substitute antibiotic growth promoter (Eneramycin$^{(R)}$) on performance, carcass characteristics and intestinal microflora. 400 (Ross 308) broiler chicks were used. A basal corn-soybean meal diet were formulated and served as a control treatment. The control diet was supplemented with either 0.06% Galliacid, 0.1% Biacid or 0.02% Eneramycin. Birds fed the Galliacid-supplemented diet had 16% (p<0.001) more gain than the control, while those fed the Biacid- or Enramycinsupplemented diets recorded 3 and 5.5% more gain, respectively. Organic acids mixtures and Enramycin supplementation significantly (p<0.001) improved feed conversion ratio. These results indicated that birds fed either organic acid mixtures or Enramycinsupplemented diets utilized feed more efficiently than those fed the control diet. Galliacid significantly (p<0.01) increased dressing percentage and bursa weight (% body weight). No significant differences were detected on liver, spleen and thymus (% body weight) among treatments. Galliacid or Biacid significantly (p<0.001) decreased intestinal Escherichia coli and Salmonella compared to the control and Enramycin-supplemented diets. Dietary Enramycin significantly (p<0.001) decreased Escherichia coli, but had no effect on Salmonella counts. In conclusion, organic acid mixtures are more efficient than antibiotic growth promoter (Enramycin) in improving broiler performance and decreasing intestinal Escherichia coli and Salmonella spp., and could be successfully used to substitute antibiotic growth promoters in broiler diets. However, not all of the organic acid mixtures gave the same effect either on performance or intestinal bacterial counts.