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细胞骨架解聚剂细胞松弛素 B 可减少高糖引起的人动脉平滑肌氧化应激。

Cytoskeleton-disrupting agent cytochalasin B reduces oxidative stress caused by high glucose in the human arterial smooth muscle.

机构信息

Department of Dental Anesthesiology, Tokushima University Hospital, Tokushima, Japan.

Department of Anesthesiology, Tokushima University Hospital, Tokushima, Japan; Department of Anesthesiology, Aichi Medical University School of Medicine, Aichi, Japan.

出版信息

J Pharmacol Sci. 2020 Dec;144(4):197-203. doi: 10.1016/j.jphs.2020.08.004. Epub 2020 Aug 23.

Abstract

The role of cytoskeleton dynamics in the oxidative stress toward human vasculature has been unclear. The current study examined whether the cytoskeleton-disrupting agent cytochalasin B reduces oxidative stress caused by high glucose in the human arterial smooth muscle. All experiments in the human omental arteries without endothelium or the cultured human coronary artery smooth muscle cells were performed in d-glucose (5.5 mmol/L). The exposure toward d-glucose (20 mmol/L) for 60 min reduced the relaxation or hyperpolarization to an ATP sensitive K channel (KATP) opener levcromakalim (10 to 3 × 10 mol/L and 3 × 10 mol/L, respectively). Cytochalasin B and a superoxide inhibitor Tiron, restored them similarly. Cytochalasin B reduced the NADPH oxidase activity, leading to a decrease in superoxide levels of the arteries treated with high d-glucose. Also, cytochalasin B impaired the F-actin constitution and the membrane translocation of an NADPH oxidase subunit p47phox in artery smooth muscle cells treated with high d-glucose. A clinical concentration of cytochalasin B prevented human vascular smooth muscle malfunction via the oxidative stress caused by high glucose. Regulation of the cytoskeleton may be essential to keep the normal vascular function in patients with hyperglycemia.

摘要

细胞骨架动力学在氧化应激对人血管的作用尚不清楚。本研究探讨了细胞骨架破坏剂细胞松弛素 B 是否能减轻高葡萄糖引起的人动脉平滑肌的氧化应激。在没有人内皮的人类网膜动脉或培养的人冠状动脉平滑肌细胞中,所有实验均在 d-葡萄糖(5.5mmol/L)中进行。暴露于 d-葡萄糖(20mmol/L)60 分钟会降低对三磷酸腺苷敏感钾通道(KATP)激动剂 levcromakalim(分别为 10 至 3×10-9mol/L 和 3×10-9mol/L)的松弛或超极化作用。细胞松弛素 B 和超氧化物抑制剂 Tiron 也能恢复到相似水平。细胞松弛素 B 降低了 NADPH 氧化酶的活性,导致高 d-葡萄糖处理的动脉中超氧化物水平降低。此外,细胞松弛素 B 损害了 F-肌动蛋白的构成和 NADPH 氧化酶亚基 p47phox 在高 d-葡萄糖处理的动脉平滑肌细胞中的膜转位。临床浓度的细胞松弛素 B 通过高葡萄糖引起的氧化应激预防了人血管平滑肌功能障碍。调节细胞骨架对于维持高血糖患者的正常血管功能可能至关重要。

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