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Microbiota in Tumors: From Understanding to Application

期刊

ADVANCED SCIENCE
卷 9, 期 21, 页码 -

出版社

WILEY
DOI: 10.1002/advs.202200470

关键词

anti-tumor therapy; intratumor microbiota; microbial community heterogeneity; omics technology; source of microbes; tumorigenesis

资金

  1. National Key Research and Development Program of China [2021YFA1101000]
  2. Chinese National Natural Science Funds [U20A201376, U20A20393, 31925013, 82041009, 31871405, 32125016, 92169122, 31701232]
  3. Science and Technology Plan Project of Suzhou [SYS2019020]
  4. Jiangsu National Science Foundation [BK20180043]
  5. Key Project of University Natural Science Foundation of Jiangsu Province [19KJA550003]

向作者/读者索取更多资源

Intratumor microbiota, as a potential component in tumor microenvironments, can affect tumor progression through various mechanisms. Its composition and abundance are highly heterogeneous in different types of tumors. Recent progress in studying intratumor microbiota using omics and immunological methods has provided insights into the development of antitumor treatment strategies.
Microbes with complex functions have been found to be a potential component in tumor microenvironments. Due to their low biomass and other obstacles, intratumor microbiota is poorly understood. Mucosal sites and normal adjacent tissues are important sources of intratumor microbiota, while hematogenous spread also leads to the invasion of microbes. Intratumor microbiota affects the progression of tumors through several mechanisms, such as DNA damage, activation of oncogenic pathways, induction of immunosuppression, and metabolization of drugs. Notably, in different types of tumors, the composition and abundance of intratumor microbiota are highly heterogeneous and may play different roles in the progression of tumors. Because of the concern in this field, several techniques such as omics and immunological methods have been used to study intratumor microbiota. Here, recent progress in this field is reviewed, including the potential sources of intratumor microbiota, their functions and related mechanisms, and their heterogeneity. Techniques that can be used to study intratumor microbiota are also discussed. Moreover, research is summarized into the development of strategies that can be used in antitumor treatment and prospects for possible future research in this field.

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