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微小 RNA-375 抑制 Kruppel 样因子 5 改善糖尿病性肢体缺血危象中的血管生成。

MicroRNA-375 repression of Kruppel-like factor 5 improves angiogenesis in diabetic critical limb ischemia.

机构信息

Department of Medicine, Cardiovascular Division, Brigham and Women's Hospital, Harvard Medical School, Boston, MA, 02115, USA.

Department of Physiology, INCLIVA Biomedical Research Institute, University of Valencia, 46010, Valencia, Spain.

出版信息

Angiogenesis. 2023 Feb;26(1):107-127. doi: 10.1007/s10456-022-09856-3. Epub 2022 Sep 8.

Abstract

Peripheral artery disease (PAD) is an occlusive disease of limb arteries. Critical limb ischemia (CLI) is an advanced form of PAD that is prognostically worse in subjects with diabetes and can result in limb loss, gangrene, and death, although the underlying signaling mechanisms that contribute to its development remain poorly understood. By comparing plasma samples from diabetic humans with PAD and mouse models of PAD, we identified miR-375 to be significantly downregulated in humans and mice during progression to CLI. Overexpression of miR-375 was pro-angiogenic in endothelial cells in vitro and induced endothelial migration, proliferation, sprouting, and vascular network formation, whereas miR-375 inhibition conferred anti-angiogenic effects. Intramuscular delivery of miR-375 improved blood flow recovery to diabetic mouse hindlimbs following femoral artery ligation (FAL) and improved neovessel growth and arteriogenesis in muscle tissues. Using RNA-sequencing and prediction algorithms, Kruppel-like factor 5 (KLF5) was identified as a direct target of miR-375 and siRNA knockdown of KLF5 phenocopied the effects of miR-375 overexpression in vitro and in vivo through regulatory changes in NF-kB signaling. Together, a miR-375-KLF5-NF-kB signaling axis figures prominently as a potential therapeutic pathway in the development CLI in diabetes.

摘要

外周动脉疾病(PAD)是肢体动脉的闭塞性疾病。严重肢体缺血(CLI)是 PAD 的一种晚期形式,在糖尿病患者中预后更差,可导致肢体丧失、坏疽和死亡,尽管导致其发展的潜在信号机制仍知之甚少。通过比较有 PAD 的糖尿病人类和 PAD 小鼠模型的血浆样本,我们发现 miR-375 在向 CLI 进展过程中在人类和小鼠中显著下调。miR-375 的过表达在体外对内皮细胞具有促血管生成作用,并诱导内皮细胞迁移、增殖、发芽和血管网络形成,而 miR-375 抑制则具有抗血管生成作用。肌肉内递送 miR-375 可改善糖尿病小鼠股动脉结扎(FAL)后后肢血流恢复,并改善肌肉组织中的新血管生长和动脉生成。通过 RNA 测序和预测算法,鉴定出 Krüppel 样因子 5(KLF5)是 miR-375 的直接靶标,siRNA 敲低 KLF5 在体外和体内通过 NF-κB 信号的调节变化模拟了 miR-375 过表达的作用。总之,miR-375-KLF5-NF-κB 信号轴作为糖尿病 CLI 发病的潜在治疗途径引人注目。

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