4.7 Article

YYFZBJS ameliorates colorectal cancer progression in ApcMin/+ mice by remodeling gut microbiota and inhibiting regulatory T-cell generation

Journal

CELL COMMUNICATION AND SIGNALING
Volume 18, Issue 1, Pages -

Publisher

BMC
DOI: 10.1186/s12964-020-00596-9

Keywords

Colorectal Cancer; Apc(Min/+) mice; Gut microbiota; Fecal microbiota transplantation; Regulatory T cell; Immune; Traditional Chinese herb medicine

Categories

Funding

  1. National Natural Science Foundation of China [81830120, 81874399]
  2. Science Foundation for Shanghai Committee of Science Project [16XD1403600, 2016039, 19401972000, 19401972200]
  3. three-year Plan of Action for the Development of Traditional Chinese Medicine in Shanghai [ZY(2018-2020)-CCCX-2003-03]
  4. National Natural Cultivation Project of Shuguang Hospital [SGKJ-201830]

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Background: Progression of Colorectal cancer (CRC) is influenced by single or compounded environmental factors. Accumulating evidence shows that microbiota can influence the outcome of cancer immunotherapy. T cell, one of the main populations of effector immune cells in antitumor immunity, has been considered as a double-edged sword during the progression of CRC. Our previous studies indicate that traditional Chinese herbs (TCM) have potential anticancer effects in improving quality of life and therapeutic effect. However, little is known about the mechanism of TCM formula in cancer prevention. Methods: Here, we used C57BL/6 JApc(Min/+)mice, an animal model of human intestinal tumorigenesis, to investigate the gut bacterial diversity and their mechanisms of action in gastrointestinal adenomas, and to evaluate the effects of Yi-Yi-Fu-Zi-Bai-Jiang-San (YYFZBJS) on of colon carcinogenesis in vivo and in vitro. Through human-into-mice fecal microbiota transplantation (FMT) experiments from YYFZBJS volunteers or control donors, we were able to differentially modulate the tumor microbiome and affect tumor growth as well as tumor immune infiltration. Results: We report herein, YYFZBJS treatment blocked tumor initiation and progression inApc(Min/+)mice with less change of body weight and increased immune function. Moreover, diversity analysis of fecal samples demonstrated that YYFZBJS regulated animal's natural gut flora, includingBacteroides fragilis,Lachnospiraceaeand so on. Intestinal tumors from conventional and germ-free mice fed with stool from YYFZBJS volunteers had been decreased. Some inflammation' expression also have been regulated by the gut microbiota mediated immune cells. Intestinal lymphatic, and mesenteric lymph nodes (MLN), accumulated CD4+ CD25+ Foxp3 positive Treg cells were reduced by YYFZBJS treatment inApc(Min/+)mice. Although YYFZBJS had no inhibition on CRC cell proliferation by itself, the altered Tregs mediated by YYFZBJS repressed CRC cancer cell growth, along with reduction of the phosphorylation of beta-catenin. Conclusions: In conclusion, we demonstrated that gut microbiota and Treg were involved in CRC development and progression, and we propose YYFZBJS as a new potential drug option for the treatment of CRC.

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