• Title/Summary/Keyword: 미생물 균총

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Impact of Microbiota on Gastrointestinal Cancer and Anticancer Therapy (미생물 균총이 위장관암과 항암제에 미치는 영향)

  • Kim, Sa-Rang;Lee, Jung Min
    • Journal of Life Science
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    • v.32 no.5
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    • pp.391-410
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    • 2022
  • Human microbiota is a community of microorganisms, including bacteria, fungi, and viruses, that inhabit various locations of the body, such as the gut, oral, and skin. Along with the development of metabolomic analysis and next-generation sequencing techniques for 16S ribosomal RNA, it has become possible to analyze the population for subtypes of microbiota, and with these techniques, it has been demonstrated that bacterial microbiota are involved in the metabolic and immunological processes of the hosts. While specific bacteria of microbiota, called commensal bacteria, positively affect hosts by producing essential nutrients and protecting hosts against other pathogenic microorganisms, dysbiosis, an abnormal microbiota composition, disrupts homeostasis and thereby has a detrimental effect on the development and progression of various types of diseases. Recently, several studies have reported that oral and gut bacteria of microbiota are involved in the carcinogenesis of gastrointestinal tumors and the therapeutic effects of anticancer therapy, such as radiation, chemotherapy, targeted therapy, and immunotherapy. Studying the complex relationships (bacterial microbiota-cancer-immunity) and microbiota-related carcinogenic mechanisms can provide important clues for understanding cancer and developing new cancer treatments. This review provides a summary of current studies focused on how bacterial microbiota affect gastrointestinal cancer and anticancer therapy and discusses compelling possibilities for using microbiota as a combinatorial therapy to improve the therapeutic effects of existing anticancer treatments.

Effects of Season Differences on the Cecal Microbiome of Broiler at Conventional Farms and Welfare System Farms (계절에 따른 일반 농가와 복지 농가 육계의 맹장 내 미생물 균총에 미치는 영향)

  • Junsik Kim;Seol Hwa Park;Minji Kim;Seong Hoon Shim;Hwan Ku Kang;Jin Young Jeong
    • Korean Journal of Poultry Science
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    • v.51 no.2
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    • pp.73-82
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    • 2024
  • The gut microbiome of broilers is a critical factor in overall health and productivity. However, high summer temperatures and high stocking density (conventional farm condition) may cause stress to broilers, resulting in an imbalance in the gut microbiome. This study was conducted to compare the gut microbiome of broilers between spring and summer in welfare (Bosung, Jeollanam-do, South Korea) and conventional farms (Jangsu, Jeollabuk-do, South Korea). A total of 31 broilers were assigned to the following groups: conventional farm in spring (n = 8); conventional farm in summer (n = 8); welfare farm in spring (n = 7); welfare farm in summer (n = 8). Cecal digesta were collected from eight broilers from each farm, and microbiome analysis was performed using 16S rRNA gene sequencing. Beta diversity analysis indicated clear differences in cecal microbiome composition between spring and summerin both welfare and conventional farm. At the phylum level, analysis of conventional farm revealed a higher proportion of Bacteroidetes in spring than in summer. At the genus level, broilers exhibited a higher abundance of Bacteroides and Alistipesin spring compared to summer. In contrast, the difference in microbial flora composition observed in welfare farm was relatively small compared to conventional farm. In conclusion, the results of this study suggest that heat stress can negatively affect the caecum microbiome of broilers. However, improvements in the housing environment can mitigate the effects of heat stress.

Changes in gut microbiota with mushroom consumption (버섯 섭취와 장내 미생물 균총의 변화)

  • Kim, Eui-Jin;Shin, Hyun-Jae
    • Journal of Mushroom
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    • v.19 no.3
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    • pp.115-125
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    • 2021
  • Mushroom consumption causes changes in the immune system and gut microbiota via the actions of mushroom probiotic components. β-Glucan structure-related substances suppress secretion of inflammatory mediators, and induce macrophage activation, enhancing immunity and immune function. Substances other than directly useful components can be metabolized into short-chain fatty acids by gut microbiota. These short-chain fatty acids can then induce immunity, alleviating various diseases. Substances used to stimulate growth of health-promoting gut bacteria, thereby changing the gut microbiota community are defined to be probiotics. Probiotic altered intestinal microflora can prevent various types of bacterial infection from external sources, and can help to maintain immune system balance, thus preventing diseases. Research into beneficial components of Pleurotus eryngii, Lentinula edodes, Pleurotus ostreatus, Flammulina velutipes, Auricularia auricula-judae, and Agaricus bisporus, which are frequently consumed in Korea, changes in microbiota, changes in short-chain fatty acids, and correlations between consumption and health contribute to our understanding of the effects of dietary mushrooms on disease prevention and mitigation.

Ingestion of Gouda Cheese Ameliorates the Chronic Unpredictable Mild Stress in Mice (마우스 모델에서 Gouda Cheese 섭취에 따른 만성 스트레스 개선 효과)

  • Kang, Min Kyoung;Yun, Bohyun;Oh, Sangnam
    • 축산식품과학과 산업
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    • v.9 no.2
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    • pp.58-65
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    • 2020
  • 우울증은 동기, 의욕, 관심, 주의력, 정신기능 및 식욕의 감소를 특징으로 하는 일종의 기분 장애이다. 우울증은 유전적, 내분비 및 환경적 스트레스를 포함한 다양한 원인에 의해 발생하지만 가벼운 우울증은 식이요법으로 개선되는 것으로 보고되었다. 따라서 우울증 환자를 치료하기 위해서는 기능성 및 영양 보충제를 포함한 다양한 식품 공급원이 필요하다. 치즈에는 숙주 건강에 유익한 영향을 미치는 생리 활성 펩타이드가 포함되어 있다. 특히 저지(Jersey) 우유는 홀스타인(Holstein) 우유보다 고형분 함량이 높은 것으로 보고되었다. 이 연구는 저지(Jersey) 와 홀스타인(Holstein) 우유의 가우다 치즈(Gouda cheese)가 만성 스트레스(CUMS, chronic unpredictable mild stress)에 미치는 영향을 조사했다. 치즈를 먹인 만성 스트레스 마우스 모델의 개선적 변화는 젖소 종에 관계없이 통계적으로 유의미하게 효과적으로 나타났다. 흥미롭게도 PCR을 통한 분변 미생물 균총 분석에서 저지 치즈를 섭취함으로써 Bacteroidetes가 증가하고 Firmicutes가 유의적으로 감소하는 것으로 나타났다. 종합하면, 본 연구는 치즈 섭취가 스트레스 개선 작용이 있음을 제시하며, 특히 장내 미생물 균총의 유익한 방향으로의 변화가 관찰되는데, 치즈의 생리활성물질 혹은 장내미생물 균총의 대사물질들이 이러한 행동·정신학적 개선 작용과의 연관성이 있음을 시사한다.

Effects of Heat-stress on Rumen Bacterial Diversity and Composition of Holstein Cows (고온 스트레스 영향에 따른 홀스타인종 젖소의 반추위내 미생물 균총 변화)

  • Kim, Dong Hyeon;Kim, Myung Hoo;Kim, Sang Bum;Ha, Seung Min;Son, Jun Kyu;Lee, Ji Hwan;Hur, Tai Young;Lee, Jae Yeong;Park, Ji Hoo;Choi, Hee Chul;Lee, Hyun Jeong;Park, Beom Young;Ki, Kwang Seok;Kim, Eun Tae
    • Journal of The Korean Society of Grassland and Forage Science
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    • v.39 no.4
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    • pp.227-234
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    • 2019
  • This study was performed to investigate the effect of heat-stressed environment on rumen microbial diversity in Holstein cows. Rectal temperature and respiration rate were measured and rumen fluid was collected under normal environment (NE; Temperature humidity index (THI)=64.6) and heat-stressed environment (HE; THI=87.2) from 10 Holstein cows (60±17.7 months, 717±64.4 kg) fed on the basis of dairy feeding management in National Institute of Animal Science. The rumen bacteria diversity was analyzed by using the Illumina HiSeqTM 4000 platform. The rectal temperature and respiratory rate were increased by 1.5℃ and 53 breaths/min in HE compared to that in NE, respectively. In this study, HE exposure induced significant changes of ruminal microbe. At phylum level, Fibrobacteres were increased in HE. At genus level, Ruminococcaceae bacterium P7 and YAD3003, Butyrivibrio sp. AE2032, Erysipelotrichaceae bacterium NK3D112, Bifidobacterium pseudolongum, Lachnospiraceae bacterium FE2018, XBB2008, and AC2029, Eubacterium celulosolvens, Clostridium hathewayi, and Butyrivibrio hungatei were decreased in HE, while Choristoneura murinana nucleopolyhedrovirus, Calothrix parasitica, Nostoc sp. KVJ20, Anabaena sp. ATCC 33047, Fibrobacter sp. UWB13 and sp. UWB5, Lachnospiraceae bacterium G41, and Xanthomonas arboricola were increased in HE. In conclusion, HE might have an effect to change the rumen microbial community in Holstein cows.

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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항균 펩타이드를 이용한_ 면역강화 사료의 개발

  • Choe, Yun-Jae;Lee, Hong-Gu
    • Feed Journal
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    • v.2 no.8
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    • pp.60-67
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    • 2004
  • 항생제는 병원성 미생물 및 그 밖의 유해한 세포의 발육 또는 기능을 억제하는 물질로써, 가축의 사료에 이러한 항생제를 첨가하여 급여하게 되면 장내에서 유해한 미생물의 증식과 발육을 억제하고 정상적인 균총을 유지함으로써 질병을 예방할 수 있으며, 과도한 장내 미생물의 증식에 의한 불필요한 영양소 손실을 막고 영양소의 소화와 흡수촉진 및 사료 섭취량을 증진시키는 등의 효과를 얻을 수 있기 때문에, 축산업에서 가축의 생산성 향상 및 질병예방을 위하여 일정수준의 항생제가 첨가된 배합사료를 급여하는 것이 일반적이었다.(중략)

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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 (다시마 (Laminaria japonicus) Alginate의 가열가수분해에 따른 물리$\cdot$화학적 및 생물학적 특성에 관한 연구 6. 랫드 분변의 장내균총의 변화에 미치는 저분자 Alginate의 영향)

  • KIM Yuck-Yong;CHO Young-Je
    • Korean Journal of Fisheries and Aquatic Sciences
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    • v.34 no.2
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    • pp.77-83
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    • 2001
  • To clarify functionality of depolymerized alginate obtained by hydrolysis of alginate through a heating process at $121^{\circ}C$ on gastrointestinal physiology, the effects of a depolymerized alginate on fecal microflora and the intestinal environment were studied in rats. Rats were fed with diets containing 1, 5 and $10\%$ of each depolymerized alginate (HAG-10, HAG-50 and HAG-100) and alginate for 35 days, Among 20 species of authentic intestinal bacteria, Bacteroides ovatus showed the abilities to ferment HAG-10 HAG-50, HAG-100 and alginate, The 1, 5 and $10\%$ of HAG-50 and $1\%$ of alginate diets resulted in the increased ratio of Bifidobacterium and Lactobacillus to total bacteria, while the 5 and $10\%$ alginate diets decreased in feces of rats, significantly (p<0.01). These results suggested that $5\%$ HAG-50 diets contribute to an improvement of intestinal microflora in rats.

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