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微小 RNA 能否控制血管平滑肌表型调节及其对损伤的反应?

Can microRNAs control vascular smooth muscle phenotypic modulation and the response to injury?

机构信息

Vascular Biology and Therapeutics Program and Department of Pharmacology, Yale University School of Medicine, New Haven, Connecticut.

出版信息

Physiol Genomics. 2011 May 1;43(10):529-33. doi: 10.1152/physiolgenomics.00146.2010. Epub 2010 Sep 14.

Abstract

Vascular smooth muscle cell (VSMC) migration and proliferation are critical events in vascular proliferative diseases. Recent studies have established microRNAs (miRNAs) as important mediators for the modulation of VSMC phenotype by targeting transcription factors and the cytoskeleton, which act as molecular switches for VSMC differentiation. The importance of miRNAs for VSMC development, differentiation, and function is evident by the fact that loss of the miRNA processing enzyme Dicer in VSMCs results in embryonic lethality due to severe vascular abnormalities. Similar abnormalities are observed in adult miR-143/145 knockout mice, indicating that these miRNAs are important for VSMC differentiation and function. However, since miR-143/145 knockout is not embryonically lethal, additional miRNA must be required during embryonic development of VSMCs. In addition, specific miRNAs such as miR-145, miR-21, and miR-221 have been found to regulate neointimal hyperplasia following vascular injury, which provides interesting possibilities for future therapeutical targets against vascular disease. Herein, we summarize recent advances regarding the role of miRNAs in VSMC phenotype modulation and response to injury.

摘要

血管平滑肌细胞(VSMC)的迁移和增殖是血管增殖性疾病的关键事件。最近的研究已经确定 microRNAs(miRNAs)作为重要的调节因子,通过靶向转录因子和细胞骨架来调节 VSMC 表型,这些因子作为 VSMC 分化的分子开关。miRNAs 对 VSMC 发育、分化和功能的重要性是显而易见的,因为 VSMCs 中 miRNA 加工酶 Dicer 的缺失会导致严重的血管异常而导致胚胎致死。在成年 miR-143/145 敲除小鼠中也观察到类似的异常,表明这些 miRNAs 对 VSMC 的分化和功能很重要。然而,由于 miR-143/145 敲除并不在胚胎致死,因此在 VSMC 的胚胎发育过程中还需要其他 miRNA。此外,已经发现特定的 miRNAs,如 miR-145、miR-21 和 miR-221,可调节血管损伤后的新生内膜增生,这为针对血管疾病的未来治疗靶点提供了有趣的可能性。本文总结了最近关于 miRNAs 在 VSMC 表型调节和对损伤反应中的作用的研究进展。

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