Wagner A J, Holstein-Rathlou N H, Marsh D J
Department of Physiology, Brown University School of Medicine, Providence, Rhode Island 02912, USA.
Am J Physiol. 1996 Jan;270(1 Pt 2):F170-8. doi: 10.1152/ajprenal.1996.270.1.F170.
We measured endothelial Ca2+ concentration ([Ca2+]) in juxtamedullary afferent arterioles in response to step changes in perfusion pressure. Measurements were made with fura 2 using a fluorescence-imaging system designed to measure Ca2+ in whole tissues and minimize potentially harmful effects of ultraviolet illumination. The system yielded the typical sigmoidal relationship between fluorescence-emission ratio and [Ca2+] in vitro and was sensitive to endothelial Ca2+ transients elicited by bradykinin. Our goal was to determine whether changes in endothelial Ca2+ trigger events that cause myogenic vasoconstriction. Bradykinin, acting via endothelial cells, and sodium nitroprusside (SNP), acting independently, triggered vasodilation; bradykinin but not SNP increased endothelial Ca2+. Increased perfusion pressure caused vasoconstriction and a modest rise in endothelial Ca2+. Because the rise in Ca2+ with bradykinin initiates the vasodilation, the small rise in Ca2+ with pressure cannot cause vasoconstriction. Our results suggest that myogenic constriction is triggered from within vascular smooth muscle cells and that some other phenomenon, most likely increased shear stress, increases endothelial Ca2+ and modulates the myogenic reaction.
我们测量了近髓质传入小动脉内皮细胞的钙离子浓度([Ca2+]),以响应灌注压力的阶跃变化。使用一种荧光成像系统,采用fura 2进行测量,该系统旨在测量整个组织中的Ca2+,并将紫外线照射的潜在有害影响降至最低。该系统在体外产生了荧光发射比率与[Ca2+]之间典型的S形关系,并且对缓激肽引发的内皮细胞Ca2+瞬变敏感。我们的目标是确定内皮细胞Ca2+的变化是否会引发导致肌源性血管收缩的事件。缓激肽通过内皮细胞起作用,硝普钠(SNP)独立起作用,二者均引发血管舒张;缓激肽而非SNP会增加内皮细胞Ca2+。灌注压力升高导致血管收缩以及内皮细胞Ca2+适度升高。由于缓激肽引起的Ca2+升高引发血管舒张,压力引起的Ca2+小幅升高不会导致血管收缩。我们的结果表明,肌源性收缩是由血管平滑肌细胞内部触发的,并且其他一些现象,最有可能是剪切应力增加,会增加内皮细胞Ca2+并调节肌源性反应。