环磷酰胺
免疫系统
生物
免疫学
免疫疗法
癌症
癌症研究
先天免疫系统
结直肠癌
肠道菌群
化疗
遗传学
作者
Sophie Viaud,Fabiana Saccheri,Grégoire Mignot,Takahiro Yamazaki,Romain Daillère,Dalil Hannani,David Enot,Christina Pfirschke,Camilla Engblom,Mikaël J. Pittet,Andreas Schlitzer,Florent Ginhoux,Lionel Apétoh,Élisabeth Chachaty,Paul‐Louis Woerther,Gérard Eberl,M Bérard,Chantal Ecobichon,Dominique Clermont,Chantal Bizet
出处
期刊:Science
[American Association for the Advancement of Science]
日期:2013-11-21
卷期号:342 (6161): 971-976
被引量:1991
标识
DOI:10.1126/science.1240537
摘要
Cyclophosphamide is one of several clinically important cancer drugs whose therapeutic efficacy is due in part to their ability to stimulate antitumor immune responses. Studying mouse models, we demonstrate that cyclophosphamide alters the composition of microbiota in the small intestine and induces the translocation of selected species of Gram-positive bacteria into secondary lymphoid organs. There, these bacteria stimulate the generation of a specific subset of "pathogenic" T helper 17 (pT(H)17) cells and memory T(H)1 immune responses. Tumor-bearing mice that were germ-free or that had been treated with antibiotics to kill Gram-positive bacteria showed a reduction in pT(H)17 responses, and their tumors were resistant to cyclophosphamide. Adoptive transfer of pT(H)17 cells partially restored the antitumor efficacy of cyclophosphamide. These results suggest that the gut microbiota help shape the anticancer immune response.
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