Namekata Iyuki, Shimada Hideaki, Kawanishi Toru, Tanaka Hikaru, Shigenobu Koki
Department of Pharmacology, Toho University Faculty of Pharmaceutical Sciences, Miyama 2-2-1 Funabashi, Chiba 274-8510, Japan.
Eur J Pharmacol. 2006 Aug 14;543(1-3):108-15. doi: 10.1016/j.ejphar.2006.06.012. Epub 2006 Jun 14.
The cardioprotective effects of SEA0400, a novel Na(+)-Ca(2+) exchanger inhibitor, were examined in isolated guinea pig myocardial tissue and ventricular myocytes. In a coronary-perfused right ventricular tissue preparation, SEA0400 had no cardiosuppressive effect during normoxia and experimental ischemia, but enhanced the recovery of contractile force during reperfusion. SEA0400 had no effect on tissue ATP content during normoxia, but attenuated its decrease during ischemia. Treatment of ventricular myocytes with an ischemia mimetic solution (high K(+), glucose free, pH 6.0, gassed with N(2)) resulted in the depolarization of the mitochondrial membrane potential and an increase in cytoplasmic and mitochondrial Ca(2+) concentration, which had a similar time course. SEA0400 significantly delayed these changes. These results suggest that SEA0400 maintains mitochondrial function and tissue ATP content during ischemia through the inhibition of cytoplasmic and mitochondrial Ca(2+) overload.
新型钠钙交换体抑制剂SEA0400的心脏保护作用在离体豚鼠心肌组织和心室肌细胞中进行了研究。在冠状动脉灌注右心室组织制备中,SEA0400在常氧和实验性缺血期间无心脏抑制作用,但在再灌注期间增强了收缩力的恢复。SEA0400在常氧期间对组织ATP含量无影响,但减轻了缺血期间其降低。用模拟缺血溶液(高钾、无糖、pH 6.0、用氮气充气)处理心室肌细胞导致线粒体膜电位去极化以及细胞质和线粒体钙浓度增加,二者具有相似的时间进程。SEA0400显著延迟了这些变化。这些结果表明,SEA0400通过抑制细胞质和线粒体钙超载在缺血期间维持线粒体功能和组织ATP含量。