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原位肠道微生物群操纵的靶向方法。

Targeted Approaches for In Situ Gut Microbiome Manipulation.

作者信息

Lee Hui Ling, Shen Haosheng, Hwang In Young, Ling Hua, Yew Wen Shan, Lee Yung Seng, Chang Matthew Wook

机构信息

Department of Biochemistry, Yong Loo Lin School of Medicine, 8 Medical Drive, Singapore 117596, Singapore.

NUS Synthetic Biology for Clinical and Technological Innovation (SynCTI), Life Sciences Institute, National University of Singapore, 28 Medical Drive, Singapore 117456, Singapore.

出版信息

Genes (Basel). 2018 Jul 12;9(7):351. doi: 10.3390/genes9070351.

Abstract

Microbial communities and their collective genomes form the gut microbiome, of which bacteria are the major contributor. Through their secreted metabolites, bacteria interact with the host, influencing human health and physiology. Perturbation of the microbiota and metabolome has been associated with various diseases and metabolic conditions. As knowledge on fundamental host-microbiome interactions and genetic engineering tools becomes readily available, targeted manipulation of the gut microbiome for therapeutic applications gains favourable attention. Manipulation of the gut microbiome can be achieved by altering the microbiota population and composition, or by modifying the functional metabolic activity of the microbiome to promote health and restore the microbiome balance. In this article, we review current works that demonstrate various strategies employed to manipulate the gut microbiome in situ to various degrees of precision.

摘要

微生物群落及其集体基因组构成了肠道微生物组,其中细菌是主要贡献者。细菌通过其分泌的代谢产物与宿主相互作用,影响人类健康和生理机能。微生物群和代谢组的紊乱与各种疾病和代谢状况有关。随着关于宿主与微生物组基本相互作用的知识以及基因工程工具变得唾手可得,针对治疗应用对肠道微生物组进行靶向操纵受到了广泛关注。对肠道微生物组的操纵可以通过改变微生物群的数量和组成来实现,或者通过改变微生物组的功能代谢活性来促进健康并恢复微生物组平衡。在本文中,我们综述了当前的研究工作,这些工作展示了为在原位以不同程度的精确性操纵肠道微生物组而采用的各种策略。

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