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冷却对犬隐静脉和股静脉中α-1和α-2肾上腺素能反应的影响。

Effect of cooling on alpha-1 and alpha-2 adrenergic responses in canine saphenous and femoral veins.

作者信息

Flavahan N A, Vanhoutte P M

出版信息

J Pharmacol Exp Ther. 1986 Jul;238(1):139-47.

PMID:3014112
Abstract

Experiments were designed to determine the effects of cooling on alpha-1 and alpha-2 adrenergic responses in isolated canine veins. Rings of saphenous and femoral veins were suspended for isometric tension recording in modified Krebs-Ringer bicarbonate solution, gassed with 95% O2 and 5% CO2. Cooling (from 37-24 degrees C) augmented contractions to norepinephrine in saphenous but caused depression in femoral veins. Cooling (to 24 degrees C) had no effect on alpha-1 adrenergic responses evoked by phenylephrine in saphenous veins but caused depression in femoral veins. Alpha-2 adrenergic responses produced by UK 14,304 were augmented by cooling in the saphenous but were virtually abolished by cooling in femoral veins. Cooling decreased the dissociation constant (i.e., increased affinity) of corynanthine for alpha-1 adrenoceptors in saphenous and femoral veins (approximately 3-fold), and the dissociation constant of rauwolscine for alpha-2 adrenoceptors in saphenous veins (approximately 7.5-fold). The influence of cooling on alpha adrenoceptor responsiveness was analyzed using computer-generated receptor-models. The results suggest that the differential sensitivity of cutaneous and deep blood vessels to cooling results from differences in efficiency of alpha-1 and alpha-2 adrenoceptor response coupling. In the saphenous vein, there is a large alpha-1 adrenoceptor reserve which buffers the alpha-1 adrenergic response from the inhibitory influence of cooling. This coupled with a cooling-induced increase in alpha-2 adrenoceptor affinity ensures that cooling augments the response to norepinephrine. In the femoral vein, there is no alpha-1 adrenoceptor reserve and cooling therefore depresses alpha-1 adrenergic responses.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

实验旨在确定冷却对离体犬静脉中α-1和α-2肾上腺素能反应的影响。将大隐静脉和股静脉环悬挂在改良的克雷布斯-林格碳酸氢盐溶液中,通以95% O₂和5% CO₂气体,用于等长张力记录。冷却(从37℃降至24℃)增强了大隐静脉对去甲肾上腺素的收缩反应,但导致股静脉收缩减弱。冷却至24℃对苯肾上腺素在大隐静脉中诱发的α-1肾上腺素能反应无影响,但导致股静脉反应减弱。UK 14,304产生的α-2肾上腺素能反应在大隐静脉中因冷却而增强,但在股静脉中冷却几乎将其消除。冷却降低了大隐静脉和股静脉中可利那丁对α-1肾上腺素能受体的解离常数(即增加了亲和力)(约3倍),以及大隐静脉中育亨宾对α-2肾上腺素能受体的解离常数(约7.5倍)。使用计算机生成的受体模型分析了冷却对α肾上腺素能受体反应性的影响。结果表明,皮肤血管和深部血管对冷却的不同敏感性源于α-1和α-2肾上腺素能受体反应偶联效率的差异。在大隐静脉中,有大量的α-1肾上腺素能受体储备,可缓冲冷却的抑制作用对α-1肾上腺素能反应的影响。这与冷却诱导的α-2肾上腺素能受体亲和力增加相结合,确保冷却增强对去甲肾上腺素的反应。在股静脉中,没有α-1肾上腺素能受体储备,因此冷却会抑制α-1肾上腺素能反应。(摘要截取自250字)

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