4.7 Article

Sini Decoction Ameliorates Colorectal Cancer and Modulates the Composition of Gut Microbiota in Mice

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FRONTIERS IN PHARMACOLOGY
卷 12, 期 -, 页码 -

出版社

FRONTIERS MEDIA SA
DOI: 10.3389/fphar.2021.609992

关键词

colorectal cancer; sini decoction; gut microbiota; traditional chinese medicine; mouse model

资金

  1. Key Project of Chinese National Programs for Research and Development [2016YFD0501009]
  2. National Natural Science Foundation of China [81960742]
  3. Hainan Provincial Natural Science Foundation of (China) [2019RC244]
  4. Scientific Research Foundation of Hainan Tropical Ocean University [RHDXB201801]

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Sini Decoction (SND) has been clinically proven effective in cardiomyopathy and inflammatory bowel diseases, but its role in colitis-associated cancer remains unclear. This study found that SND extract can reduce tumor number and size, decrease CRC biomarkers, upregulate beneficial bacteria, and modulate gut microbial community in mice. SND effectively intervenes in colorectal cancer development by regulating intestinal immunity and changing intestinal microbiota composition.
Sini Decoction (SND), as a classic prescription of Traditional Chinese Medicine (TCM), has been proved to be clinically useful in cardiomyopathy and inflammatory bowel diseases. However, the role and mechanism of SND in colitis-associated cancer remains unclear. This study aims to evaluate the effect of SND on colorectal cancer(CRC) symptoms and further explore the changes of gut microbes mediated by SND extract in azoxymethane (AOM)/dextran sulfate sodium (DSS)-induced CRC mice through 16 S rRNA sequencing. Our results indicated that treatment with SND extract could ameliorate the tumors' malignant degree by decreasing tumor number and size. Also, the expression levels of Cyclooxygenase 2 and Mucin-2, which are typical CRC biomarkers, were reduced compared to the CRC group. In the meantime, SND extract can upregulate CD8(+) T lymphocytes' expression and Occludin in the colonic mucosal layer. Besides, SND inhibited the expression of CD4(+) T cells and inflammatory cytokines in CRC tissue. According to bioinformatics analysis, SND extract was also suggested could modulate the gut microbial community. After the SND treatment, compared with the CRC mice model, the number of pathogenic bacteria showed a significant reduction, including Bacteroides fragilis and Sulphate-reducing bacteria; and SND increased the relative contents of the beneficial bacteria, including Lactobacillus, Bacillus coagulans, Akkermansia muciniphila, and Bifidobacterium. In summary, SND can effectively intervene in colorectal cancer development by regulating intestinal immunity, protecting the colonic mucosal barrier, and SND can change the intestinal microbiota composition in mice.

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