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具核梭杆菌作为结直肠癌发病机制中的二次打击放大器:通过肠-肾轴交汇局部与全身机制

英文原题:Fusobacterium nucleatum as a two-hit amplifier in colorectal cancer pathogenesis: intersection of local and systemic mechanisms via the gut-kidney axis.

查看英文原题

Fusobacterium nucleatum as a two-hit amplifier in colorectal cancer pathogenesis: intersection of local and systemic mechanisms via the gut-kidney axis.

PubMed 2026/02/28(内容时间) Fujita Med J

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中文摘要

结直肠癌(CRC)是一种由遗传、环境和生活方式因素驱动的复杂恶性肿瘤。肠道微生物失调是CRC肿瘤发生和进展的关键促进因素。具核梭杆菌是一种口腔共生菌,而非被动的定植菌,它是恶性肿瘤的强效促进因子。本综述探讨了具核梭杆菌促进CRC进展的分子机制,重点关注一种间接全身性机制和三种直接局部机制。第一,脂多糖-Toll样受体4轴维持慢性炎症环路,重塑肿瘤微环境。第二,成纤维细胞激活蛋白2-T细胞免疫球蛋白和免疫受体酪氨酸抑制基序结构域的相互作用通过抑制T细胞和NK 细胞的细胞毒活性促进免疫逃逸。第三,梭杆菌黏附素A-E-钙黏蛋白/Wnt通路作为强效的“二次打击”,放大β-catenin信号传导,并在已存在腺瘤性息肉病大肠杆菌基因突变的细胞中驱动增殖。除这些局部效应外,本综述还强调了一种涉及肠-肾轴的新型间接机制。

具体而言,推测具核梭杆菌促进全身吲哚硫酸盐水平升高,这是一种尿毒症毒素,通过促增殖信号传导强化全身反馈环路。这些协同机制通过促进免疫抑制、慢性炎症和代谢重编程,共同重塑肿瘤微环境。

在此框架内,具核梭杆菌与遗传病变协同作用,加速疾病进展。该框架为开发创新性诊断方法和针对微生物的疗法——如噬菌体疗法和疫苗——以显著改善CRC患者的预后提供了关键基础。

展开英文摘要原文

Colorectal cancer (CRC) is a complex malignancy driven by genetic, environmental, and lifestyle factors. A critical contributor to CRC tumor initiation and progression is gut microbial dysbiosis. Fusobacterium nucleatum , an oral commensal bacterium, is a potent promoter of malignancy rather than a passive colonizer. This review examines the molecular mechanisms by which F. nucleatum promotes CRC progression, focusing on one indirect systemic and three direct local mechanisms. First, the lipopolysaccharide-Toll-like receptor 4 axis sustains a chronic inflammatory loop that remodels the tumor microenvironment. Second, the fibroblast activation protein 2-T cell immunoglobulin and immunoreceptor tyrosine-based inhibitory motif domain interaction facilitates immune evasion by suppressing T cell and natural killer cell cytotoxic activity.

Third, the Fusobacterium adhesin A-E-cadherin/Wnt pathway acts as a potent "second hit," amplifying β-catenin signaling and driving proliferation in cells with pre-existing mutations in adenomatous polyposis coli. Beyond these local effects, this review highlights a novel indirect mechanism involving the gut-kidney axis. Specifically, F. nucleatum is hypothesized to contribute to systemic levels of indoxyl sulfate, a uremic toxin that reinforces a systemic feedback loop via pro-proliferative signaling.

These synergistic mechanisms collectively remodel the tumor microenvironment by promoting immune suppression, chronic inflammation, and metabolic reprogramming. Within this framework, F. nucleatum collaborates with genetic lesions to accelerate disease progression. This framework provides a crucial foundation for developing innovative diagnostics and microbe-targeted therapies-such as phage therapy and vaccines-to substantially improve the prognosis of patients with CRC.

论文信息

作者
Shimizu H
单位
Faculty of Life and Environmental Sciences, Shimane University, Matsue, Shimane, Japan.Japan
期刊
Fujita medical journal2026 May
原文标识
PubMed 42079406 · DOI 10.20407/fmj.2025-042