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Unbalanced upregulation of ryanodine receptor 2 plays a particular role in early development of daunorubicin cardiomyopathy

机译:ryanodine受体2的失衡上调在柔红霉素心肌病的早期发展中起特殊作用

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摘要

Calcium release channel on the sarcoplasmic reticulum of cardiomyocytes (ryanodine receptor type 2, RyR2) plays a critical role in the regulation of calcium and was identified as a crucial factor for development of chronic anthracycline cardiomyopathy. Its early stages are less well described although these determine the later development. Hence, we tested the effect of repeated, short-term anthracycline (daunorubicin) administration on cardiac performance, cardiomyocyte function and accompanied changes in calcium regulating proteins expression. Ten-twelve weeks old male Wistar rats were administered with 6 doses of daunorubicin (DAU, 3 mg/kg, i.p., every 48 h), controls (CON) received vehicle. Left ventricular function (left ventricular pressure, LVP; rate of pressure development, +dP/dt and decline, -dP/dt) was measured using left ventricular catheterization under tribromethanol anaesthesia (15 ml/kg b.w.). Cell shortening was measured in enzymatically isolated cardiomyocytes. The expressions of RyR2 and associated intracellular calcium regulating proteins, cytoskeletal proteins (alpha-actinin, alpha-tubul in) as well as oxidative stress regulating enzymes (gp91phox, MnSOD) were detected in ventricular tissue samples using immunoblotting. mRNA expressions of cardiac damage markers (Nppa and Nppb, atrial and brain natriuretic peptides; Myh6, Myh7 and Myh7b, myosin heavy chain alpha and beta) were detected using RT-PCR. Thiobarbituric acid reactive substances concentration was measured to estimate oxidative stress. DAU rats exhibited significantly depressed left ventricular features (LVP by 14%, +dP/dt by 36% and -dP/dt by 30%; for all P<0.05), in line with concomitant increase in Nppa and Nppb gene expressions (3.23- and 2.18-fold, for both P<0.05), and a 4.34-fold increase in Myh7 (P<0.05). Controversially, we observed increased cell shortening of isolated cardiac cells by 31% (p<0.05). DAU administration was associated with a twofold upregulation of RyR2 (P<0.05), but not of other examined Ca2+ regulating proteins remained. In addition, we observed a significant reduction in alpha-tubulin (by 46% when compared to CON P<0.05). Indicators of oxidative injury were unaffected. In conclusion, unbalanced RyR2 overexpression plays a particular role in early development of daunorubicin cardiomyopathy characterized by discrepant in situ versus in vitro cardiac performance.
机译:心肌细胞质网上的钙释放通道(2型ryanodine受体,RyR2)在钙的调节中起着关键作用,并被确定为慢性蒽环类心肌病发展的关键因素。尽管它们决定了以后的发展,但其早期阶段的描述较少。因此,我们测试了短期重复应用蒽环类药物(柔红霉素)对心脏性能,心肌细胞功能以及钙调节蛋白表达变化的影响。十十二周大的雄性Wistar大鼠接受6剂量的柔红霉素(DAU,3 mg / kg,腹腔注射,每48小时一次),对照(CON)接受赋形剂。在三溴乙醇麻醉下(15 ml / kg b.w.),使用左心室导管测量左心室功能(左心室压力,LVP;压力发展速度,+ dP / dt和下降率,-dP / dt)。在酶促分离的心肌细胞中测量细胞缩短。使用免疫印迹法检测心室组织样品中RyR2及其相关的细胞内钙调节蛋白,细胞骨架蛋白(α-肌动蛋白,α-微管蛋白)的表达以及氧化应激调节酶(gp91phox,MnSOD)的表达。使用RT-PCR检测心脏损伤标志物(Nppa和Nppb,心房和脑利钠肽; Myh6,Myh7和Myh7b,肌球蛋白重链α和β)的mRNA表达。测量硫代巴比妥酸反应性物质的浓度以估计氧化应激。 DAU大鼠表现出明显的左心室压抑特征(LVP降低14%,+ dP / dt降低36%,-dP / dt降低30%;对于所有P <0.05),与Nppa和Nppb基因表达的同时增加相一致(3.23) -和2.18倍,对于P <0.05),和Myh7增加4.34倍(P <0.05)。有争议的是,我们观察到离体心脏细胞的细胞缩短增加了31%(p <0.05)。 DAU的施用与RyR2的两倍上调有关(P <0.05),但其他检测到的Ca 2 + 调节蛋白却没有。此外,我们观察到α-微管蛋白显着降低(与CON P <0.05相比降低了46%)。氧化损伤的指标不受影响。总之,不平衡的RyR2过表达在柔红霉素型心肌病的早期发展中起着特殊的作用,其特征是原位与体外心脏表现的差异。

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