调节肠干细胞的途径和辐射性肠病的潜在治疗靶点

IF 6.3 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY
Si-Min Chen, Bing-Jie Guo, An-Qiang Feng, Xue-Lian Wang, Sai-Long Zhang, Chao-Yu Miao
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引用次数: 0

摘要

放疗是癌症患者的关键治疗手段,对他们的治疗效果和生存前景有重大影响。然而,在对腹部、盆腔或腹膜后恶性肿瘤患者进行治疗的过程中,会无意中将邻近的肠道组织暴露在辐射之下,当达到阈值剂量时,就会产生辐射诱发肠病的风险。肠隐窝中的干细胞通过受控增殖和分化,支持肠上皮的关键功能,确保营养物质的有效吸收,同时维护其保护屏障特性。肠干细胞(ISCs)的调控由多种信号通路错综复杂地协调,其中包括 WNT、BMP、NOTCH、EGF、Hippo、Hedgehog 和 NF-κB,每种信号通路都对这些细胞的行为起到复杂的控制作用。营养代谢状态和肠道微生物群等其他调节因子对这些途径起到补充作用,所有这些因素都有助于微调肠隐窝中 ISC 的行为。正是这些信号级联和调节因子之间的和谐相互作用才维持了肠上皮细胞(IECs)的平衡,从而确保了肠道的整体健康和功能。这篇综述深入探讨了干细胞如何在辐射肠病中做出反应的分子基础,旨在阐明治疗干预的潜在生物靶点。此外,我们还总结了目前的几种治疗方法。通过揭示这些机制和治疗方法,我们希望为新型疗法的开发提供一个路线图,从而提高我们减轻辐射引起的肠道损伤的能力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Pathways regulating intestinal stem cells and potential therapeutic targets for radiation enteropathy.

Radiotherapy is a pivotal intervention for cancer patients, significantly impacting their treatment outcomes and survival prospects. Nevertheless, in the course of treating those with abdominal, pelvic, or retroperitoneal malignant tumors, the procedure inadvertently exposes adjacent intestinal tissues to radiation, posing risks of radiation-induced enteropathy upon reaching threshold doses. Stem cells within the intestinal crypts, through their controlled proliferation and differentiation, support the critical functions of the intestinal epithelium, ensuring efficient nutrient absorption while upholding its protective barrier properties. Intestinal stem cells (ISCs) regulation is intricately orchestrated by diverse signaling pathways, among which are the WNT, BMP, NOTCH, EGF, Hippo, Hedgehog and NF-κB, each contributing to the complex control of these cells' behavior. Complementing these pathways are additional regulators such as nutrient metabolic states, and the intestinal microbiota, all of which contribute to the fine-tuning of ISCs behavior in the intestinal crypts. It is the harmonious interplay among these signaling cascades and modulating elements that preserves the homeostasis of intestinal epithelial cells (IECs), thereby ensuring the gut's overall health and function. This review delves into the molecular underpinnings of how stem cells respond in the context of radiation enteropathy, aiming to illuminate potential biological targets for therapeutic intervention. Furthermore, we have compiled a summary of several current treatment methodologies. By unraveling these mechanisms and treatment methods, we aspire to furnish a roadmap for the development of novel therapeutics, advancing our capabilities in mitigating radiation-induced intestinal damage.

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来源期刊
CiteScore
6.30
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