Physiologisches Institut, Justus-Liebig-Universität, Aulweg 149, 35392, Giessen, Germany.
Naunyn Schmiedebergs Arch Pharmacol. 2011 Dec;384(6):535-42. doi: 10.1007/s00210-011-0680-4. Epub 2011 Sep 1.
Intermedin, a novel member of the calcitonin/calcitonin gene-related peptide family identified from vertebrate genomes, may directly affect cardiac function but current studies revealed no clear picture. The aims of our study were to compare direct contractile effects of intermedin on cardiomyocytes to that on the whole organ and to investigate whether intermedin improves postischemic recovery independent of an effect on acute reperfusion injury. Isolated adult rat ventricular cardiomyocytes were electrically paced and cell shortening was monitored as a readout associated to cardiac performance. Calcium transients were analyzed by Fura-2AM loading of these cells. Isolated rat hearts were investigated by Langendorff perfusion under nonischemic conditions and after 45-min no-flow ischemia followed up by 30-min reperfusion prior to drug testing. Intermedin caused a positive contractile effect on cardiomyocytes that was mediated by protein kinase A activation and accompanied by improved calcium transients. In contrast, intermedin reduced left ventricular developed pressure in Langendorff-perfused rat hearts. This negative inotropic effect was attenuated by inhibition of nitric oxide synthesis. In postischemic hearts (impaired nitric oxide synthesis), the negative inotropic effect was attenuated but no positive inotropic effect occurred. However, intermedin caused robust vasodilation in nonischemic and postischemic hearts. Our findings suggest that the peptide binds preferentially to vascular cells in the intact organ. The loss of nitric oxide induction in postischemic hearts attenuates a negative inotropic effect of intermedin but does not improve cardiac performance independent of acute reperfusion injury.
中介素是从脊椎动物基因组中鉴定出的降钙素/降钙素基因相关肽家族的一个新成员,它可能直接影响心脏功能,但目前的研究还没有明确的结果。我们的研究目的是比较中介素对心肌细胞的直接收缩作用与对整个器官的作用,并研究中介素是否能改善缺血后的恢复,而不依赖于对急性再灌注损伤的影响。分离的成年大鼠心室肌细胞通过电起搏并监测细胞缩短作为与心脏功能相关的读出。通过 Fura-2AM 负载这些细胞来分析钙瞬变。通过 Langendorff 灌注在非缺血条件下和 45 分钟无血流缺血后研究分离的大鼠心脏,然后在进行药物测试前进行 30 分钟再灌注。中介素对心肌细胞产生正性收缩作用,这是通过蛋白激酶 A 激活介导的,并伴有钙瞬变的改善。相比之下,中介素降低了 Langendorff 灌注大鼠心脏的左心室发展压。这种负性变力作用被一氧化氮合成抑制剂减弱。在缺血后心脏(一氧化氮合成受损)中,这种负性变力作用减弱,但没有出现正性变力作用。然而,中介素在非缺血和缺血心脏中引起强烈的血管扩张。我们的发现表明,该肽在完整器官中优先与血管细胞结合。缺血后心脏中一氧化氮诱导的丧失减弱了中介素的负性变力作用,但不改善心脏功能,而不依赖于急性再灌注损伤。