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「腸内細菌を調整する成分は大腸がん細胞の増殖マーカーに影響するか」の検索結果

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(gut microbiota[MeSH] OR intestinal microbiota OR gut bacteria) AND (colorectal neoplasms[MeSH] OR colon cancer OR colorectal cancer) AND (cell proliferation[MeSH] OR proliferation markers OR Ki-67 OR PCNA)

💡 腸内細菌、大腸がん、増殖マーカーの3要素をMeSH用語と同義語で組み合わせて検索

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  • High-Fat Diet Promotes Colorectal Tumorigenesis Through Modulating Gut Microbiota and Metabolites.

    Jia Yang, Hong Wei, Yunfei Zhou 他 · Gastroenterology · 2022

    Dietary fat intake is associated with increased risk of colorectal cancer (CRC). We examined the role of high-fat diet (HFD) in driving CRC through modulating gut microbiota and metabolites. HFD or control diet was fed to mice littermates in CRC mouse models of an azoxymethane (AOM) model and Apcmin/+ model, with or without antibiotics cocktail treatment. Germ-free mice for fecal microbiota transp…

    📄 PubMed で読む (PMID: 34461052)
  • Indole-3-lactic acid suppresses colorectal cancer via metabolic reprogramming.

    Shizhen Zhou, Kai Wang, Jiandong Huang 他 · Gut microbes · 2025

    Research indicates that abnormal gut microbiota metabolism is linked to colorectal cancer (CRC) progression, but the role of microbiota-related tryptophan metabolism disruption remains unclear. Using metagenomic sequencing and targeted Trp metabolomics, our research identified that CRC patients had abnormal indole-3-lactic acid (ILA) levels, which were related to tumor malignancy. Exogenous ILA ad…

    📄 PubMed で読む (PMID: 40409349)
  • Reuterin in the healthy gut microbiome suppresses colorectal cancer growth through altering redox balance.

    Hannah N Bell, Ryan J Rebernick, Joshua Goyert 他 · Cancer cell · 2022

    Microbial dysbiosis is a colorectal cancer (CRC) hallmark and contributes to inflammation, tumor growth, and therapy response. Gut microbes signal via metabolites, but how the metabolites impact CRC is largely unknown. We interrogated fecal metabolites associated with mouse models of colon tumorigenesis with varying mutational load. We find that microbial metabolites from healthy mice or humans ar…

    📄 PubMed で読む (PMID: 34951957)
  • Peptostreptococcus stomatis promotes colonic tumorigenesis and receptor tyrosine kinase inhibitor resistance by activating ERBB2-MAPK.

    Pingmei Huang, Fenfen Ji, Alvin Ho-Kwan Cheung 他 · Cell host & microbe · 2024

    Peptostreptococcus stomatis (P. stomatis) is enriched in colorectal cancer (CRC), but its causality and translational implications in CRC are unknown. Here, we show that P. stomatis accelerates colonic tumorigenesis in ApcMin/+ and azoxymethane/dextran sodium sulfate (AOM-DSS) models by inducing cell proliferation, suppressing apoptosis, and impairing gut barrier function. P. stomatis adheres to C…

    📄 PubMed で読む (PMID: 39059397)
  • Therapeutic potential of Clostridium butyricum anticancer effects in colorectal cancer.

    Hui Xu, Haidan Luo, Jiayu Zhang 他 · Gut microbes · 2023

    Probiotic roles of Clostridium butyricum (C.B) are involved in regulating disease and cancers, yet the mechanistic basis for these regulatory roles remains largely unknown. Here, we demonstrate that C.B reprograms the proliferation, migration, stemness, and tumor growth in CRC by regulating pivotal signal molecules including MYC. Destabilization of MYC by C.B supplementation suppresses cancer cell…

    📄 PubMed で読む (PMID: 36941257)
  • 5-hydroxytryptamine produced by enteric serotonergic neurons initiates colorectal cancer stem cell self-renewal and tumorigenesis.

    Pingping Zhu, Tiankun Lu, Zhenzhen Chen 他 · Neuron · 2022

    Colorectal cancer stem cells (CSCs) contribute to colorectal tumorigenesis and metastasis. Colorectal CSCs reside within specialized niches and harbor self-renewal and differentiation capacities. However, the niche regulations of CSCs remain unclear. Here, we show that intestinal nerve cells are required for CSC self-renewal and colorectal tumorigenesis. Enteric serotonergic neurons produce 5-hydr…

    📄 PubMed で読む (PMID: 35550066)
  • Intestinal crypt microbiota modulates intestinal stem cell turnover and tumorigenesis via indole acetic acid.

    Shuning Zhang, Lihua Peng, Shyamal Goswami 他 · Nature microbiology · 2025

    Intestinal crypts harbour a specific microbiota but whether and how these bacteria regulate intestinal stem cells (ISCs) or influence colorectal cancer (CRC) development is unclear. Here we screened crypt-resident bacteria in organoids and found that indole acetic acid (IAA) secreted by Acinetobacter radioresistens inhibits ISC turnover. A. radioresistens inhibited cellular proliferation in tumour…

    📄 PubMed で読む (PMID: 39972061)
  • Lipid accumulation inhibition strategies alleviate Fusobacterium nucleatum-infected colorectal cancer.

    Zhongkun Zhou, Yuqing Niu, Yunhao Ma 他 · Microbiome · 2025

    Fusobacterium nucleatum (F. nucleatum) is prevalent in colorectal cancer (CRC), and it can promote proliferation and induce chemoresistance via multiple pathways. The development of treatment strategies for F. nucleatum-infected CRC is of great importance. Shotgun metagenomic and metabolomic analyses of human feces, as well as metabolomic analysis of human blood, were performed to reveal the dysbi…

    📄 PubMed で読む (PMID: 40770383)
  • Clostridium butyricum, a butyrate-producing probiotic, inhibits intestinal tumor development through modulating Wnt signaling and gut microbiota.

    Danfeng Chen, Duochen Jin, Shumin Huang 他 · Cancer letters · 2020

    Gut microbiota dysbiosis is closely involved in intestinal carcinogenesis. A marked reduction in butyrate-producing bacteria has been observed in patients with colorectal cancer (CRC); nevertheless, the potential benefit of butyrate-producing bacteria against intestinal tumor development has not been fully investigated. We found that Clostridium butyricum (C. butyricum, one of the commonly used bu…

    📄 PubMed で読む (PMID: 31734354)
  • ENPP2 inhibitor improves proliferation in AOM/DSS-induced colorectal cancer mice via remodeling the gut barrier function and gut microbiota composition.

    Junling Yan, Wenting Duan, Qinhan Gao 他 · Pharmacological research · 2023

    In our previous multicenter study, we delineated the inherent metabolic features of colorectal cancer (CRC). Therein, we identified a member of the ectonucleotide pyrophosphatase/ phosphodiesterase family (ENPP2) as a significant differential metabolite of CRC. In this study, the role of ENPP2 in CRC has been demonstrated using established in vitro and in vivo models including ENPP2 gene knockdown…

    📄 PubMed で読む (PMID: 37524154)