Center for Neurosciences and Cell Biology, University of Coimbra, Coimbra, Portugal.
Eur J Pharmacol. 2011 Mar 1;654(1):60-7. doi: 10.1016/j.ejphar.2010.12.010. Epub 2010 Dec 24.
Since H(2)S has an emerging role as a cardioprotector, we hypothesized that NaHS addition to the new cardioplegic histidine buffer solution (HBS) could improve its cardioprotective potential. Male Wistar-Han rat hearts were divided in 4 groups: i) control, ii) perfusion control (perfusion only), iii) 6h ischemia in HBS or in a modified-HBS with 100 μM of NaHS, a H(2)S donor, (HBSM) and iv) as iii followed by 30 min reperfusion. During ischemia, aliquots of the cardioplegic solution were collected for NMR analysis. Heart mitochondria respiration and transmembrane potential were measured after ischemia or after ischemia followed by reperfusion. Proteins involved in the apoptotic signaling pathway were also quantified in both mitochondrial and tissue samples. Cardiac mechanic performance was evaluated by measuring the heart rate and the left ventricular pressure. In HBSM-preserved hearts, a) glucose consumption increased as well as lactate and alanine production during ischemia, b) heart mitochondria presented an improved phosphorylative efficiency, including decreased phosphorylative lag phase for complex I and complex II substrates, c) mitochondrial and tissue p53, Bax and caspase-9 were lower and d) there was a more positive atrial chronotropic response than in HBS-preserved hearts. We concluded that the addition of NaHS to HBS enhances glycolysis during ischemia, decreases mitochondrial dysfunction, especially by preserving the phosphorylative system, prevents apoptosis and during ischemia/reperfusion.
由于 H(2)S 作为心脏保护剂的作用不断显现,我们假设在新的心脏停搏液组氨酸缓冲液(HBS)中添加 NaHS 可以提高其心脏保护潜力。雄性 Wistar-Han 大鼠心脏分为 4 组:i)对照组,ii)灌注对照组(仅灌注),iii)HBS 或含有 100 μM H(2)S 供体 NaHS 的改良-HBS 中 6 小时缺血(HBSM),iv)如 iii 组,随后进行 30 分钟再灌注。在缺血期间,收集部分心脏停搏液进行 NMR 分析。在缺血后或缺血后再灌注后测量心脏线粒体呼吸和跨膜电位。还在线粒体和组织样品中定量了参与细胞凋亡信号通路的蛋白质。通过测量心率和左心室压力评估心脏力学性能。在 HBSM 保存的心脏中,a)葡萄糖消耗增加,缺血期间乳酸和丙氨酸的产生也增加,b)心脏线粒体的磷酸化效率提高,包括降低了复合物 I 和复合物 II 底物的磷酸化滞后阶段,c)线粒体和组织中的 p53、Bax 和 caspase-9 水平降低,d)在再灌注期间具有更积极的心房变时反应。我们得出结论,在 HBS 中添加 NaHS 可增强缺血期间的糖酵解,减少线粒体功能障碍,特别是通过保护磷酸化系统,防止细胞凋亡和缺血/再灌注。