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氨茶碱对犬代谢增加时后肢血流自动调节的影响。

Effect of aminophylline on hindlimb blood flow autoregulation during increased metabolism in dogs.

作者信息

Metting P J, Weldy D L, Ronau T F, Britton S L

出版信息

J Appl Physiol (1985). 1986 Jun;60(6):1857-64. doi: 10.1152/jappl.1986.60.6.1857.

Abstract

The contribution of adenosine to hindlimb blood flow autoregulation during treadmill exercise or the administration of 2,4-dinitrophenol (DNP) was evaluated in 9 conscious dogs by determining hindlimb vascular bed pressure-flow relationships in the presence and absence of the adenosine receptor site antagonist, aminophylline. Hindlimb pressure-flow relationships were obtained by measuring blood flow during stepwise reductions in perfusion pressure produced with an occlusion cuff located distal to a flow probe on the external iliac artery. The efficiency of autoregulation was quantitated by calculating the closed-loop gain of flow regulation (Gc) at each pressure decrement utilizing the equation Gc = 1 - (% delta flow/% delta pressure). A Gc of one represents perfect autoregulation of flow, and a Gc of zero is indicative of a rigid system. During exercise, Gc averaged 0.44 +/- 0.07. Aminophylline reduced the Gc during exercise to -0.07 +/- 0.06 (P less than 0.05). During DNP administration, Gc averaged 0.54 +/- 0.09 and declined to -0.09 +/- 0.10 in the presence of aminophylline (P less than 0.05). These results support the hypothesis that adenosine is a primary mediator of hindlimb blood flow autoregulation during conditions that increase hindlimb metabolism.

摘要

通过在存在和不存在腺苷受体位点拮抗剂氨茶碱的情况下测定后肢血管床压力-流量关系,在9只清醒犬中评估了腺苷在跑步机运动或给予2,4-二硝基苯酚(DNP)期间对后肢血流自动调节的作用。后肢压力-流量关系是通过测量在用位于髂外动脉流量探头远端的闭塞袖带产生的灌注压力逐步降低期间的血流来获得的。通过利用公式Gc = 1 - (%流量变化/%压力变化)计算每个压力递减时流量调节的闭环增益(Gc)来定量自动调节的效率。Gc为1表示流量的完美自动调节,而Gc为0表示系统刚性。运动期间,Gc平均为0.44±0.07。氨茶碱将运动期间的Gc降低至-0.07±0.06(P<0.05)。给予DNP期间,Gc平均为0.54±0.09,在存在氨茶碱的情况下降至-0.09±0.10(P<0.05)。这些结果支持以下假设:在增加后肢代谢的情况下,腺苷是后肢血流自动调节的主要介质。

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