首页> 外文期刊>Molecular and Cellular Biochemistry: An International Journal for Chemical Biology >Effects of exercise training on excitation-contraction coupling and related mRNA expression in hearts of Goto-Kakizaki type 2 diabetic rats
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Effects of exercise training on excitation-contraction coupling and related mRNA expression in hearts of Goto-Kakizaki type 2 diabetic rats

机译:运动训练对五岛崎崎2型糖尿病大鼠心脏兴奋-收缩偶联及相关mRNA表达的影响

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Although, several novel forms of intervention aiming at newly identified therapeutic targets are currently being developed for diabetes mellitus (DM), it is well established that physical exercise continues to be one of the most valuable forms of non-pharmacological therapy. The aim of the study was to investigate the effects of exercise training on excitation-contraction coupling and related gene expression in the Goto-Kakizaki (GK) type 2 diabetic rat heart and whether exercise is able to reverse diabetes-induced changes in excitation-contraction coupling and gene expression. Experiments were performed in GK and control rats aged 10-11 months following 2-3 months of treadmill exercise training. Shortening, [Ca2+]i and L-type Ca 2+ current were measured in ventricular myocytes with video edge detection, fluorescence photometry and whole cell patch clamp techniques, respectively. Expression of mRNA was assessed in ventricular muscle with real-time RT-PCR. Amplitude of shortening, Ca2+ transients and L-type Ca2+ current were not significantly altered in ventricular myocytes from GK sedentary compared to control sedentary rats or by exercise training. Expression of mRNA encoding Tpm2, Gja4, Atp1b1, Cacna1g, Cacnb2, Hcn2, Kcna3 and Kcne1 were up-regulated and Gja1, Kcnj2 and Kcnk3 were down-regulated in hearts of sedentary GK rats compared to sedentary controls. Gja1, Cav3 and Kcnk3 were up-regulated and Hcn2 was down-regulated in hearts of exercise trained GK compared to sedentary GK controls. Ventricular myocyte shortening and Ca 2+ transport were generally well preserved despite alterations in the profile of expression of mRNA encoding a variety of cardiac muscle proteins in the adult exercise trained GK diabetic rat heart.
机译:尽管目前正在针对糖尿病(DM)开发几种针对新近确定的治疗目标的新型干预手段,但众所周知,体育锻炼仍然是非药物治疗最有价值的形式之一。该研究的目的是研究运动训练对五岛崎崎(GK)2型糖尿病大鼠心脏中的兴奋收缩耦合和相关基因表达的影响,以及运动是否能够逆转糖尿病引起的兴奋收缩变化偶联和基因表达。在2-3个月的跑步机运动训练后,对年龄10-11个月的GK和对照组大鼠进行了实验。分别通过视频边缘检测,荧光光度法和全细胞膜片钳技术测量心室肌细胞的缩短,[Ca2 +] i和L型Ca 2+电流。用实时RT-PCR评估心室肌中mRNA的表达。与久坐不动的大鼠或运动训练相比,久坐的GK的心室肌细胞的缩短幅度,Ca2 +瞬变和L型Ca2 +电流没有明显改变。与久坐的对照组相比,久坐的GK大鼠心脏中编码TPm2,Gja4,Atp1b1,Cacna1g,Cacnb2,Hcn2,Kcna3和Kcne1的mRNA表达上调,而Gja1,Kcnj2和Kcnk3下调。与久坐的GK对照相比,运动训练的GK心脏中的Gja1,Cav3和Kcnk3被上调,而Hcn2被下调。尽管在成年运动训练的GK糖尿病大鼠心脏中编码各种心肌蛋白的mRNA的表达谱发生了改变,但心室肌细胞的缩短和Ca 2+的运输通常得到了很好的保存。

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