Fukuizumi Y, Kobayashi S, Nishimura J, Kanaide H
Division of Molecular Cardiology, Faculty of Medicine, Kyushu University, Fukuoka, Japan.
J Pharmacol Exp Ther. 1996 Jul;278(1):220-31.
Using front-surface fluorometry and fura-2-loaded medial strips of the porcine coronary artery, we simultaneously monitored the cytosolic Ca++ concentration ([Ca++]i) and force development to investigate the mechanisms of vasorelaxation induced by calcitonin gene-related peptide (CGRP). CGRP actively decreased [Ca++]i of the strips at rest both in the presence and in the absence of extracellular Ca++. In the presence of extracellular Ca++, CGRP inhibited concentration-dependently the steady-state elevations of [Ca++]i and force induced by high-K+ depolarization and by histamine (HIS). The extent of the inhibition of force was much greater than the extent of reductions of [Ca++]i would lead one to expect. The [Ca++]i (abscissa)-force (ordinate) relationship at the peak levels of force during HIS-induced contractions shifted to the left of that observed with high-K+ depolarization. The [Ca++]i-force relationships of the contractions induced by high-K+ depolarization and by HIS shifted to the right as a result of the treatment with CGRP. In the absence of extracellular Ca++, CGRP inhibited the transient elevations of [Ca++]i induced by HIS but not by caffeine. Our results suggest that CGRP relaxes the porcine coronary artery by the following mechanisms: 1) the inhibition of Ca++ influx stimulated by HIS and by high-K+ depolarization, 2) the reduction of HIS-induced release of intracellular Ca++, without affecting a caffeine-sensitive mechanism, 3) an active decrease in the resting levels of [Ca++]i and 4) a decrease in the Ca(++)-sensitivity of the contractile apparatus.
利用前表面荧光测定法和用fura - 2负载的猪冠状动脉中间条带,我们同时监测了胞质Ca++浓度([Ca++]i)和张力发展,以研究降钙素基因相关肽(CGRP)诱导血管舒张的机制。无论有无细胞外Ca++,CGRP均可使静息状态下条带的[Ca++]i活性降低。在存在细胞外Ca++的情况下,CGRP浓度依赖性地抑制高钾去极化和组胺(HIS)诱导的[Ca++]i和张力的稳态升高。张力抑制程度远大于[Ca++]i降低程度所预期的。HIS诱导收缩过程中张力峰值水平时的[Ca++]i(横坐标)-张力(纵坐标)关系向高钾去极化时观察到的关系左侧移动。由于CGRP处理,高钾去极化和HIS诱导收缩的[Ca++]i-张力关系向右移动。在无细胞外Ca++的情况下,CGRP抑制HIS诱导的[Ca++]i瞬时升高,但不抑制咖啡因诱导的升高。我们的结果表明,CGRP通过以下机制使猪冠状动脉舒张:1)抑制HIS和高钾去极化刺激的Ca++内流;2)减少HIS诱导的细胞内Ca++释放,而不影响咖啡因敏感机制;3)使静息状态下的[Ca++]i活性降低;4)降低收缩装置对Ca++的敏感性。