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The effect of the Ras homolog gene family (Rho), member A/Rho associated coiled-coil forming protein kinase pathway in atrial fibrosis of type 2 diabetes in rats

机译:Ras同源基因家族(Rho),成员A / Rho相关的卷曲螺旋形成蛋白激酶途径在2型糖尿病大鼠心房纤维化中的作用

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Diabetes mellitus promotes atrial structural remodeling, thereby producing atrial arrhythmogenicity. Atrial arrhythmia can substantially increase the risk of premature death. The aim of this study was to investigate the role of Ras homolog gene family, member A (RhoA)/Rho associated coiled-coil forming protein kinase (ROCK) in atrial fibrosis in diabetic hearts, and the effects of fasudil hydrochloride hydrate on atrial fibrosis. An eight-week-old male Sprague-Dawley rat model of type 2 diabetes was established using a high-fat diet combined with streptozotocin [30 mg/kg, once, intraperitoneal (i.p.)]. Animals were randomly divided into three groups: Control rats, untreated diabetic rats that received vehicle, and treated diabetic rats that received Rho kinase inhibitor fasudil hydrochloride hydrate (10 mg/kg/day, i.p., for 14 weeks). The morphological features of atrial fibrosis were observed using Masson staining. The mRNA expression levels of RhoA, ROCK1, ROCK2, type-I and type-III procollagen were assessed with quantitative polymerase chain reaction. The protein levels of RhoA, ROCK1 and ROCK2 were evaluated using western blot analysis. The atria of untreated diabetic rats showed evident atrial fibrosis as compared to the control rats; the mRNA expression levels of RhoA, ROCK1, ROCK2, type-I and type-III procollagen were upregulated; and the protein levels of RhoA, ROCK1 and ROCK2 were increased. The treatment with fasudil hydrochloride hydrate significantly reduced atrial fibrosis, mRNA levels of RhoA, ROCK1, ROCK2, type-I and type-III procollagen, and the protein levels of RhoA, ROCK1 and ROCK2. The results suggested that RhoA/ROCK was involved in atrial fibrosis, and that fasudil hydrochloride hydrate ameliorates atrial fibrosis through the RhoA/ROCK pathway in rats with type 2 diabetes.
机译:糖尿病促进心房结构重塑,从而产生心律失常。房性心律失常可大大增加过早死亡的风险。这项研究的目的是调查Ras同源基因家族,成员A(RhoA)/ Rho相关的卷曲螺旋形成蛋白激酶(ROCK)在糖尿病性心房纤维化中的作用,以及盐酸法舒地尔水合物对心房纤维化的影响。 。使用高脂饮食与链脲佐菌素[30 mg / kg,一次,腹膜内(i.p.)]建立了8周大的2型糖尿病雄性Sprague-Dawley大鼠模型。将动物随机分为三组:对照大鼠,接受媒介物的未治疗的糖尿病大鼠和接受Rho激酶抑制剂盐酸法舒地尔水合物(10mg / kg /天,腹膜内,持续14周)的治疗的糖尿病大鼠。使用Masson染色观察心房纤维化的形态学特征。用定量聚合酶链反应评估RhoA,ROCK1,ROCK2,I型和III型前胶原的mRNA表达水平。使用蛋白质印迹分析评估RhoA,ROCK1和ROCK2的蛋白质水平。与对照组相比,未经治疗的糖尿病大鼠的心房显示出明显的心房纤维化。 RhoA,ROCK1,ROCK2,I型和III型原胶原的mRNA表达水平上调; RhoA,ROCK1和ROCK2蛋白水平升高。用盐酸法舒地尔水合物治疗可显着降低心房纤维化,RhoA,ROCK1,ROCK2,I型和III型前胶原的mRNA水平以及RhoA,ROCK1和ROCK2的蛋白质水平。结果表明,RhoA / ROCK参与了心房纤维化,盐酸法舒地尔水合物通过RhoA / ROCK途径改善了2型糖尿病大鼠的心房纤维化。

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