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肠道菌群在机体健康中的作用及其抗生素影响 被引量:1

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摘要 就胃肠道微生物在促进动物机体健康,对机体免疫系统的影响和在疾病中的作用进行阐述,并进一步探讨抗生素如何诱导菌群失调和免疫稳态失衡从而导致疾病的问题。
出处 《饲料研究》 CAS 北大核心 2013年第8期48-50,共3页 Feed Research
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  • 1Pieter Van den Abbeele, Tom'Van de Wiele. The host selects mucosal and luminal associations of coe- volved gut microorganisms:a novel concept. FEMS. Microbiol. Rev. ,2011 (35) :681 - 704.
  • 2Carles Ubeda, Eric G Pamer. Antibiotics, microbiota, and immune defense. Cell,2012,33 (9) :458 -462.
  • 3Inna Sekirov, Shannon. Gut Microbiota in Health and Disease. American Physiological Society, 2010 (90) : 859 - 904.
  • 4Swidsinski A, Ladhoff A, Pernthaler A, et al . Muco- salflora in inflammatory bowel disease. Gastroenter- ology,2002 (122) :44 - 54.
  • 5Antonopoulos D A, Huse S M. Reproducible commu- nity dynamics of the gastrointestinal microbiota fol- lowing antibiotic perturbation. Infect Immun. , 2009 (77) :2367 -2375.
  • 6Chang J Y, Antonopoulos D A, Kalra A, et al. De- creased diversity of the fecal Microbiome in recur- rent Clostridium difficile - associated diarrhea. J. In- fect Dis. ,2008 (197) :435 - 438.
  • 7Croswell A, Amir E. Prolonged impact of antibiotics on intestinal microbial ecology and susceptibility to enteric Salmonella infection. Infect Immunn. , 2009 (77) :2741 - 2753.
  • 8Sekirov I,Tam N M, Jogova M, et al. Antibiotic - in-duced perturbations of the intestinal microbiota mi- crobiota alter host susceptibility to enteric infection. Infect Immun. ,2008 (76) :4726 -4736.
  • 9Yap I K, Li J V. Metabonomic and microbiological a- nalysis of the dynamic effect of vancomycin -induced gut microbiota modification in the mouse. J. Pro- teome Res. ,2008 (7):3718 - 3728.
  • 10Garner C D. Perturbation of the small intestine micro- bial ecology by streptomycin alters pathology in a Sal- monella enteric serovar Typhimurium murine model of infection. Infect. Immun. ,2009(77) :2691 -2702.

二级参考文献74

  • 1Ben-YosefM, Jurkevitch E, Yuval B. Effect of bacteria on nutritional status and reproductive success of the Mediterranean fruit fly Ceratitis capitata [J]. Physiol Entomol, 2008, 33:145-154.
  • 2Carey JR. Insect biodemography [J]. Annu Rev Entomol, 2001, 46: 79-110.
  • 3Teaford MF, Ungar PS. Diet and the evolution of the earliest human ancestors [J]. Proc Natl Acad Sci USA, 2000, 97:13506-13511.
  • 4Ungar PS, Grine FE, Teaford MF. Diet in early Homo: a review of the evidence and a new model of adaptive versatility [J]. Annu Rev Anthropol, 2006, 35:209-228.
  • 5Aiello LC , Wheeler P. The expensive-tissue hypothesis: the brain and the digestive system in human and primate evolution [J]. Curr Anthropol, 1995, 36:199-221.
  • 6Ley RE, Lozupone CA, Hamady M, et al. Worlds within worlds: evolution of the vertebrate gut microbiota [J]. Nat Rev Microbiol, 2008, 6:776-778.
  • 7Perry GH, Dominy NJ, Claw KG, et al. Diet and the evolution of human amylase gene copy number variation [J]. Nature Genet, 2007, 39:1256-1260.
  • 8Falush D, Wirth T, Linz B, et al. Traces of human migrations in Helicobacter pylori populations [J]. Science, 2003, 299:1582-1585.
  • 9Flint HJ, Bayer EA, Rincon MT, et al. Polysaccharide utilization by gut bacteria: potential for new insights from genomic analysis [J]. Nat Rev Microbiol, 2008, 6:121-131.
  • 10Xu J, Mahowald MA, Ley RE, et al. Evolution of symbiotic bacteria in the distal human intestine [J]. PLoS Biol, 2007, 5:1574-1586.

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