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Carbachol-induced Suppression of Contraction Rhythm in Spontaneously Beating Cultured Cardiac Myocytes From Neonatal Rats

机译:卡巴胆碱抑制新生大鼠自发搏动的培养心肌细胞收缩节律

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摘要

Nitric oxide (NO) and reactive oxygen species (ROS) are known to play various functional and pathophysiological roles as an intracellular messenger in the heart. In this study, we investigated whether the increased production of NO and/or ROS was involved in the cholinergic regulation of rhythmic contraction in spontaneously beating cultured cardiac myocytes from neonatal rats. Exposure of cultures to carbachol, an agonist of muscarinic acetylcholine receptors (mAchR), produced a dose-dependent decrease in the beat rate of cultured cardiac myocytes, and such a effect was significantly attenuated by pre-treatment with an NOS inhibitor, as well as an NO scavenger. In addition, exposure to an NO donor (SNAP) also decreased the beat rate dose-dependently. Carbachol- or SNAP-induced suppression of the contraction rhythm was significantly attenuated by co-treatment with 5-hydroxydecanoate (5-HD). In contrast, treatment with diazoxide decreased the beat rate dose-dependently. Carbachol treatment increased the intensity of 2',7'-dichlorodihydrofluorescein fluorescence, suggesting that the production of ROS was enhanced by the treatment. In addition, the carbachol- or diazoxide-induced suppression of contraction rhythm was attenuated by co-treatment with 2-mercaptopropionyl glycine, a scavenger of ROS. The present study has suggested that the mAchR-NO-mitoK ATP -ROS pathway is a factor responsible for carbachol-induced suppression of contraction rhythm in cultured cardiac myocytes.
机译:一氧化氮(NO)和活性氧(ROS)作为心脏中的细胞内信使起着各种功能和病理生理作用。在这项研究中,我们调查了自发跳动的新生大鼠心肌细胞的节律性胆碱能调节是否参与了NO和/或ROS的增加产生。将文化暴露于毒蕈碱乙酰胆碱受体(mAchR)的激动剂卡巴胆碱会使培养的心肌细胞的搏动率呈剂量依赖性下降,并且通过用NOS抑制剂以及没有清除剂。另外,暴露于NO供体(SNAP)也使搏动率剂量依赖性降低。与5-羟基癸酸酯(5-HD)共同治疗可显着减弱卡巴胆碱或SNAP诱导的收缩节律抑制。相反,用二氮嗪处理可降低剂量依赖性搏动率。卡巴胆碱处理可提高2',7'-二氯二氢荧光素荧光强度,表明该处理可提高ROS的产生。此外,通过与2-巯基丙酰甘氨酸(ROS的清除剂)共同处理,减弱了卡巴胆碱或二氮嗪诱导的收缩节律的抑制。本研究表明,mAchR-NO-mitoK ATP -ROS途径是负责卡巴胆碱抑制培养的心肌细胞收缩节律的因素。

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