Okabe H, Hale T M, Kumon H, Heaton J P, Adams M A
Department of Pharmacology & Toxicology and Urology, Queen's University, Kinston, Ontario, Canada.
Int J Impot Res. 1999 Jun;11(3):133-40. doi: 10.1038/sj.ijir.3900394.
In hypertension, small arteries in a variety of vascular beds undergo structural changes that increase resistance. To assess whether there are differential structural changes in the penis that accompany hypertension, we began with determining structurally-based vascular resistance properties in penile and hindlimb vascular beds of adult spontaneously hypertensive rats (SHR) and Sprague-Dawley (SD) rats. In anesthetized SHR, the penile and hindlimb vasculature were isolated and perfused, maximum dilation was induced, and a flow-pressure assessment and alpha 1-adrenoceptor agonist concentration-response curves were generated. Both the baseline and maximum constrictor responses were similar in the two beds of each strain, and overall the maximum structurally-based vascular resistance in SHR was higher than in SD rats. Our data suggests that the penile vasculature is not protected from the structural changes that take place in the other vascular beds in hypertension. There does not appear to be an underlying functional control mechanism that protects the penile vasculature from structural changes that may have a negative impact on penile blood flow.
在高血压患者中,各种血管床中的小动脉会发生结构变化,从而增加阻力。为了评估高血压患者阴茎是否存在不同的结构变化,我们首先测定成年自发性高血压大鼠(SHR)和Sprague-Dawley(SD)大鼠阴茎和后肢血管床基于结构的血管阻力特性。在麻醉的SHR中,分离并灌注阴茎和后肢血管,诱导最大舒张,并生成流量-压力评估和α1-肾上腺素能受体激动剂浓度-反应曲线。每个品系的两个血管床的基线和最大收缩反应相似,总体而言,SHR中基于结构的最大血管阻力高于SD大鼠。我们的数据表明,阴茎血管系统无法免受高血压中其他血管床发生的结构变化的影响。似乎不存在潜在的功能控制机制来保护阴茎血管系统免受可能对阴茎血流产生负面影响的结构变化的影响。