期刊文献+

辣椒素对人心房肌的电生理效应(英文) 被引量:1

Electrophysiological effects of capsaicin on human atrial fibers
在线阅读 下载PDF
导出
摘要 目的 研究辣椒素对人心房肌的电生理效应及其作用机制。方法 应用经典玻璃微电极方法记录人心房肌特殊细胞的动作电位。结果 辣椒素(1~ 30 μmol·L- 1)浓度依赖性地抑制人心房肌纤维的动作电位幅值 ,0期最大除极速率 ,舒张期 (4相 )除极化速率和起搏细胞放电频率 ,此外还缩短 90 %动作电位时程。应用L 型钙通道开放剂BayK86 44(0 .5 μmol·L- 1)可拮抗辣椒素对人心房肌纤维的上述电生理效应 ,但辣椒素受体竞争性抑制剂cap sazepine(10 μmol·L- 1)对辣椒素的效应并无影响。结论 辣椒素对人心房肌具有负性变时作用 ,并可缩短复极化时程。这些效应可能与其抑制钙离子内流有关。 AIM To study the electrophysiological effects of capsaicin on human atrial fibers. METHODS Parameters of action potential in human atrial specialized fibers were recorded using standard intracellular micr oelectrode technique. RESULTS Capsaicin (1-30 μmol·L -1 ) decreased the amplitude of action potential, maximal rate of depolarization, v elocity of diastolic (phase 4) depolarization and rate of pacemaker firing, and shortened the 90% action potential duration in a concentration-dependent manner . L-type Ca 2+ channel agonist Bay K8644 (0.5 μmol· L -1) antagonized the inhibitory effects of capsaicin on human atrial fiber s. Pretreatment of the fibers with capsazepine (10 μmol·L -1), a competit ive capsaicin antagonist, failed to influence the electrophysiological effects o f capsaicin. CONCLUSION Capsaicin exerted a negative chronotropic action and accelerated the repolarization of human atrial specialized fibers whi ch may be due to reduction in calcium influx and not mediated by capsaicin recep tors.
出处 《中国药理学与毒理学杂志》 CAS CSCD 北大核心 2005年第1期13-17,共5页 Chinese Journal of Pharmacology and Toxicology
关键词 辣椒素 心房 电生理学 capsaicin heart atrium electrophysiology calcium
  • 相关文献

参考文献2

二级参考文献20

  • 1周伏文 Li YJ Deng HW.Early and delayed protection by capsaicin against reperfusion injury in rat hearts[J].Acta Phannacol Sin (中国药理学报),1999,20:912-916.
  • 2程岩萍 Wang YH Cheng LP He RR.Eleetrophysiological effects of capsaicin on pacemaker cells in sinoatrial node of rabbits[J].中国药理学报,2003,24:826-830.
  • 3安瑞海 He BB.Electrophysiological effects of m-nisoldipine and nisodipine on papillary muscles of guinea pig[J].中国药理学报,1990,11:310-314.
  • 4Zanesco A, Costa SK, Riado SR, Nathan LP, De Oliverira CF, De Luca IM. Modulation of coronary flow and cardiomyocyte size by sensory fibers. Hypertension 1999 ,34:790 - 794.
  • 5Ledda F, Amerini S, Filippi S, Mantelli L, Morbcdelli L,Rubino A, Ziche M. Cardiovascular effects of capsaicinsensitive neurons. Cardioscience 1999:4:1 - 7.
  • 6Franco-cereceda A, Lundberg JM, Sarla A, Schreibmayer W, Tritthart HA. Calcitonin gene-related peptide: Release by capsaicin and prolongation of the action potential in the guinea pig heart. Acta Physiol Stand 1988, 132:181 -190.
  • 7Ono K, Delay M, Nakajima T, Irisawa A, Giles W. Calcitonin gene-related peptide regulates calcium current in heart muscle. Nature 1989,340:721 -724.
  • 8Szolcsanyi S, Oroszi G, Nemeth J, Szilvassy Z, Blasig IE,Tosaki A. Functional and biochemical evidence for capsaitin-induced neural endothelin release in isolated working rat heart. Eur J Pharmacol 2001 ,419:215 -221.
  • 9Suzuki M, Ob.ki G, Mochizuki T, Somlo S, Ishibashi K,Imai M. Opening of ligand-gated cation channel families by calpain inhibitors. FEBS Lett 2002 ,517:219 - 224.
  • 10Castle NA. Differential inhibition of potassium currents in rat ventricular myocytes by capsaicin. Cardiovasc Res1992,26:1137 - 1144.

共引文献6

同被引文献22

引证文献1

二级引证文献6

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部