Protective role of gut commensal microbes against intestinal infections

The human gastrointestinal tract is colonized by multitudes of microorganisms that exert beneficial effects on human health. Mounting evidence suggests that intestinal microbiota contributes to host resistance against enteropathogenic bacterial infection. However, molecular details that account for...

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Published inThe journal of microbiology Vol. 52; no. 12; pp. 983 - 989
Main Authors Yoon, My Young, Lee, Keehoon, Yoon, Sang Sun
Format Journal Article
LanguageEnglish
Published Heidelberg Springer-Verlag 01.12.2014
The Microbiological Society of Korea
Springer Nature B.V
한국미생물학회
Subjects
Online AccessGet full text
ISSN1225-8873
1976-3794
1976-3794
DOI10.1007/s12275-014-4655-2

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Abstract The human gastrointestinal tract is colonized by multitudes of microorganisms that exert beneficial effects on human health. Mounting evidence suggests that intestinal microbiota contributes to host resistance against enteropathogenic bacterial infection. However, molecular details that account for such an important role has just begun to be understood. The commensal microbes in the intestine regulate gut homeostasis through activating the development of host innate immunity and producing molecules with antimicrobial activities that directly inhibit propagation of pathogenic bacteria. Understanding the protective roles of gut microbiota will provide a better insight into the molecular basis that underlies complicated interaction among host-pathogen-symbiont. In this review, we highlighted recent findings that help us broaden our knowledge of the intestinal ecosystem and thereby come up with a better strategy for combating enteropathogenic infection.
AbstractList The human gastrointestinal tract is colonized by multitudes of microorganisms that exert beneficial effects on human health. Mounting evidence suggests that intestinal microbiota contributes to host resistance against enteropathogenic bacterial infection. However, molecular details that account for such an important role has just begun to be understood. The commensal microbes in the intestine regulate gut homeostasis through activating the development of host innate immunity and producing molecules with antimicrobial activities that directly inhibit propagation of pathogenic bacteria. Understanding the protective roles of gut microbiota will provide a better insight into the molecular basis that underlies complicated interaction among host-pathogen-symbiont. In this review, we highlighted recent findings that help us broaden our knowledge of the intestinal ecosystem and thereby come up with a better strategy for combating enteropathogenic infection.[PUBLICATION ABSTRACT]
The human gastrointestinal tract is colonized by multitudes of microorganisms that exert beneficial effects on human health. Mounting evidence suggests that intestinal microbiota contributes to host resistance against enteropathogenic bacterial infection. However, molecular details that account for such an important role has just begun to be understood. The commensal microbes in the intestine regulate gut homeostasis through activating the development of host innate immunity and producing molecules with antimicrobial activities that directly inhibit propagation of pathogenic bacteria. Understanding the protective roles of gut microbiota will provide a better insight into the molecular basis that underlies complicated interaction among host-pathogen-symbiont. In this review, we highlighted recent findings that help us broaden our knowledge of the intestinal ecosystem and thereby come up with a better strategy for combating enteropathogenic infection.The human gastrointestinal tract is colonized by multitudes of microorganisms that exert beneficial effects on human health. Mounting evidence suggests that intestinal microbiota contributes to host resistance against enteropathogenic bacterial infection. However, molecular details that account for such an important role has just begun to be understood. The commensal microbes in the intestine regulate gut homeostasis through activating the development of host innate immunity and producing molecules with antimicrobial activities that directly inhibit propagation of pathogenic bacteria. Understanding the protective roles of gut microbiota will provide a better insight into the molecular basis that underlies complicated interaction among host-pathogen-symbiont. In this review, we highlighted recent findings that help us broaden our knowledge of the intestinal ecosystem and thereby come up with a better strategy for combating enteropathogenic infection.
The human gastrointestinal tract is colonized by multitudesof microorganisms that exert beneficial effects on humanhealth. Mounting evidence suggests that intestinal microbiotacontributes to host resistance against enteropathogenicbacterial infection. However, molecular details that accountfor such an important role has just begun to be understood. The commensal microbes in the intestine regulate gut homeostasisthrough activating the development of host innateimmunity and producing molecules with antimicrobial activitiesthat directly inhibit propagation of pathogenic bacteria. Understanding the protective roles of gut microbiotawill provide a better insight into the molecular basis that underliescomplicated interaction among host-pathogen-symbiont. In this review, we highlighted recent findings that helpus broaden our knowledge of the intestinal ecosystem andthereby come up with a better strategy for combating enteropathogenic infection. KCI Citation Count: 26
The human gastrointestinal tract is colonized by multitudes of microorganisms that exert beneficial effects on human health. Mounting evidence suggests that intestinal microbiota contributes to host resistance against enteropathogenic bacterial infection. However, molecular details that account for such an important role has just begun to be understood. The commensal microbes in the intestine regulate gut homeostasis through activating the development of host innate immunity and producing molecules with antimicrobial activities that directly inhibit propagation of pathogenic bacteria. Understanding the protective roles of gut microbiota will provide a better insight into the molecular basis that underlies complicated interaction among host-pathogen-symbiont. In this review, we highlighted recent findings that help us broaden our knowledge of the intestinal ecosystem and thereby come up with a better strategy for combating enteropathogenic infection.
Author Yoon, My Young
Yoon, Sang Sun
Lee, Keehoon
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Snippet The human gastrointestinal tract is colonized by multitudes of microorganisms that exert beneficial effects on human health. Mounting evidence suggests that...
The human gastrointestinal tract is colonized by multitudesof microorganisms that exert beneficial effects on humanhealth. Mounting evidence suggests that...
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SubjectTerms Animals
anti-infective properties
Bacteria
Bacteria - classification
Bacteria - immunology
Bacteria - metabolism
Bacterial diseases
Bacterial infections
Bacterial Infections - immunology
Biomedical and Life Sciences
ecosystems
Gastrointestinal tract
Gastrointestinal Tract - microbiology
Gastrointestinal Tract - physiopathology
Homeostasis
human health
Humans
Immune system
Immunity, Innate
Immunology
Infections
innate immunity
Intestinal Diseases - immunology
Intestinal Diseases - microbiology
intestinal microorganisms
intestines
Life Sciences
Microbiology
Microbiota
Microorganisms
Minireview
Pathogens
protective effect
Salmonella
Symbiosis - immunology
Symbiosis - physiology
생물학
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