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机械创伤对 C2C12 成肌细胞和小鼠肛提肌的分化及 ArfGAP3 表达的影响。

Effects of mechanical trauma on the differentiation and ArfGAP3 expression of C2C12 myoblast and mouse levator ani muscle.

机构信息

Department of Obstetrics and Gynecology, Renmin Hospital of Wuhan University, #238 Jiefang Road, Wuhan, 430060, Hubei Province, People's Republic of China.

出版信息

Int Urogynecol J. 2020 Sep;31(9):1913-1924. doi: 10.1007/s00192-019-04212-4. Epub 2020 Jan 27.

Abstract

INTRODUCTION AND HYPOTHESIS

Severe mechanical injury or inadequate repair of the levator ani muscle (LAM) is a key contributor to the development of pelvic floor dysfunction (PFD). We explored the effects of mechanical stress on myoblasts and LAM at the cellular and animal level and the possible mechanism of PFD induced by mechanical trauma.

METHODS

A C2C12 cell mechanical injury model was established with a four-point bending device, and a LAM injury mouse model was established via vaginal distention and distal traction, a common way of simulating the birth injury. The cells were divided into control, 1333 μ strain for 4-h cyclic mechanical strain (CMS), 1333 μ strain for 8-h CMS, and 5333 μ strain for 4-h CMS groups. Mice were divided into control and injury groups. After treatment, mitochondrial membrane potential (ΔΨm), reactive oxygen species (ROS) levels, indicators of oxidative damage, cell apoptosis, muscle and cell morphology, cell differentiation, and expression of adenosine diphosphate (ADP)-ribosylation factor GTPase activating protein 3 (ArfGAP3) were detected.

RESULTS

5333 μ strain for 4-h CMS loading could induce myoblast injury with a reduction of ΔΨm, increased ROS levels, aggravation of oxidative damage-associated proteins NADPH oxidase 2 (NOX2) and xanthine oxidase (XO), and an increased apoptosis rate of C2C12 cells. At the same time, the injury CMS loading can promote the differentiation of myoblasts and increase the expression of ArfGAP3, a factor regulating intracellular transport. Mechanical trauma could also lead to the oxidative damage of LAM, indicated by 8-hydroxy-2'-deoxyguanosine(8-OHdG), NOX2 and XO protein accumulation, and increase the expression of ArfGAP3 in LAM.

CONCLUSIONS

Oxidative stress caused by mechanical trauma induces dysfunction and damage repairing of LAM and C2C12 myoblast, and ArfGAP3 may promote the repairing process.

摘要

引言和假设

提肛肌(LAM)的严重机械损伤或修复不足是盆底功能障碍(PFD)发展的关键因素。我们在细胞和动物水平上探讨了机械应激对成肌细胞和 LAM 的影响,以及机械创伤引起 PFD 的可能机制。

方法

使用四点弯曲装置建立 C2C12 细胞机械损伤模型,通过阴道扩张和远端牵引建立 LAM 损伤小鼠模型,这是一种模拟分娩损伤的常用方法。将细胞分为对照组、1333μ 应变 4 小时循环机械应变(CMS)组、1333μ 应变 8 小时 CMS 组和 5333μ 应变 4 小时 CMS 组。将小鼠分为对照组和损伤组。处理后,检测线粒体膜电位(ΔΨm)、活性氧(ROS)水平、氧化损伤指标、细胞凋亡、肌肉和细胞形态、细胞分化以及二磷酸腺苷(ADP)-核糖基化因子 GTP 酶激活蛋白 3(ArfGAP3)的表达。

结果

5333μ 应变 4 小时 CMS 加载可诱导成肌细胞损伤,表现为ΔΨm 降低、ROS 水平升高、氧化损伤相关蛋白 NADPH 氧化酶 2(NOX2)和黄嘌呤氧化酶(XO)加重以及 C2C12 细胞凋亡率增加。同时,损伤 CMS 加载可促进成肌细胞分化,增加调节细胞内转运的因子 ArfGAP3 的表达。机械创伤还可导致 LAM 的氧化损伤,表现为 8-羟基-2'-脱氧鸟苷(8-OHdG)、NOX2 和 XO 蛋白积累增加,以及 LAM 中 ArfGAP3 的表达增加。

结论

机械创伤引起的氧化应激导致 LAM 和 C2C12 成肌细胞功能障碍和损伤修复,ArfGAP3 可能促进修复过程。

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