Smeda J S, Lombard J H, Madden J A, Harder D R
Pflugers Arch. 1987 Mar;408(3):239-42. doi: 10.1007/BF02181465.
These studies were undertaken to examine the effect of alkalosis to modify "pressure-induced" activation of isolated cerebral arteries from spontaneously hypertensive rats (SHR) and their normotensive Wistar-Kyoto (WKY) controls. At pH 7.4 and PCO2 of 34 torr elevation of transmural pressure from 0-140 mm Hg resulted in myogenic activation preceded by membrane depolarization in both SHR and WKY. The degree of developed myogenic tone in SHR was elevated above WKY. Alkalosis (pH 7.4-7.7) depolarized and activated SHR cerebral arteries to a greater extent than WKY. Furthermore, both the electrical and mechanical responses to elevation in transmural pressure were exaggerated in SHR compared to WKY at pH 7.7 (PCO2 constant at 34 torr). Manipulation of PCO2 at constant pH of 7.4 had similar effects on "pressure-induced" myogenic tone in both SHR and WKY. Thus, cerebral arteries from both SHR and WKY depolarize and develop myogenic tone in response to increasing transmural pressure. This response is augmented in SHR, but to a much greater extent upon elevation of extracellular pH, while PCO2 is maintained within normal limits. The implications of these findings are discussed.
进行这些研究是为了检验碱中毒对自发性高血压大鼠(SHR)及其正常血压的Wistar-Kyoto(WKY)对照大鼠离体脑动脉“压力诱导”激活的影响。在pH 7.4和34托的PCO2条件下,SHR和WKY的跨壁压力从0升高至140 mmHg均导致肌源性激活,且激活前伴有膜去极化。SHR中肌源性张力的发展程度高于WKY。碱中毒(pH 7.4 - 7.7)使SHR脑动脉去极化和激活的程度比WKY更大。此外,在pH 7.7时(PCO2恒定在34托),与WKY相比,SHR对跨壁压力升高的电反应和机械反应均被夸大。在恒定pH 7.4条件下对PCO2的操作对SHR和WKY的“压力诱导”肌源性张力有类似影响。因此,SHR和WKY的脑动脉都会因跨壁压力增加而去极化并产生肌源性张力。这种反应在SHR中增强,但在细胞外pH升高且PCO2维持在正常范围内时增强程度更大。讨论了这些发现的意义。