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防御素调节细胞周期:防御素对细胞增殖和分裂的影响。

Defensins regulate cell cycle: Insights of defensins on cellular proliferation and division.

机构信息

Institute of Wound Prevention and Treatment, Shanghai University of Medicine & Health Sciences, Shanghai, 201318, China.

Affiliated Hospital of Sichuan Nursing Vocational College, The Third People's Hospital of Sichuan Province, China.

出版信息

Life Sci. 2024 Jul 15;349:122740. doi: 10.1016/j.lfs.2024.122740. Epub 2024 May 21.

Abstract

Defensins are a class of small antimicrobial peptides that play a crucial role against pathogens. However, recent research has highlighted defensins exhibit the ability to influence cell cycle checkpoints, promoting or inhibiting specific phases such as G1 arrest or S/M transition. By regulating the cell cycle, defensins impact the proliferation of normal and cancerous cells, with implications for cancer development and progression. Dysregulation of defensin expression can disrupt the delicate balance of cell cycle regulation, leading to uncontrolled cell growth and an increased risk of tumor formation. Defensins contribute to the resolution of inflammation, stimulate angiogenesis, and enhance the migration and proliferation of cells involved in tissue repair. Furthermore, The ability of defensins to respond to microenvironmental changes further demonstrates the significance of these peptides in host defense mechanisms and immune function. By adjusting their expression, defensins continue to combat pathogens effectively and maintain homeostasis within the body. This review highlights the multifaceted role of defensins in regulating the cell cycle and their broader implications in cancer progression, tissue repair, and microenvironmental response.

摘要

防御素是一类小的抗菌肽,在对抗病原体方面发挥着关键作用。然而,最近的研究强调了防御素具有影响细胞周期检查点的能力,促进或抑制特定的阶段,如 G1 期阻滞或 S/M 期转变。通过调节细胞周期,防御素影响正常和癌细胞的增殖,对癌症的发展和进展有影响。防御素表达的失调会破坏细胞周期调节的微妙平衡,导致不受控制的细胞生长和肿瘤形成的风险增加。防御素有助于炎症的解决,刺激血管生成,并增强参与组织修复的细胞的迁移和增殖。此外,防御素响应微环境变化的能力进一步证明了这些肽在宿主防御机制和免疫功能中的重要性。通过调整它们的表达,防御素继续有效地对抗病原体并维持体内的动态平衡。这篇综述强调了防御素在调节细胞周期中的多方面作用及其在癌症进展、组织修复和微环境反应中的更广泛意义。

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