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慢性低氧对大鼠肺动脉中激动剂诱导的张力和钙信号传导的影响。

Effect of chronic hypoxia on agonist-induced tone and calcium signaling in rat pulmonary artery.

作者信息

Bonnet S, Belus A, Hyvelin J M, Roux E, Marthan R, Savineau J P

机构信息

Laboratoire de Physiologie Cellulaire Respiratoire, Institut National de la Santé et de la Recherche Médicale (Equipe Mixte 9937), Université Bordeaux 2, 33076 Bordeaux, France.

出版信息

Am J Physiol Lung Cell Mol Physiol. 2001 Jul;281(1):L193-201. doi: 10.1152/ajplung.2001.281.1.L193.

Abstract

The effect of chronic hypoxia (CH) for 14 days on Ca2+ signaling and contraction induced by agonists in the rat main pulmonary artery (MPA) was investigated. In MPA myocytes obtained from control (normoxic) rats, endothelin (ET)-1, angiotensin II (ANG II), and ATP induced oscillations in intracellular Ca2+ concentration ([Ca2+]i) in 85-90% of cells, whereas they disappeared in myocytes from chronically hypoxic rats together with a decrease in the percentage of responding cells. However, both the amount of mobilized Ca2+ and the sources of Ca2+ implicated in the agonist-induced response were not changed. Analysis of the transient caffeine-induced [Ca2+]i response revealed that recovery of the resting [Ca2+]i value was delayed in myocytes from chronically hypoxic rats. The maximal contraction induced by ET-1 or ANG II in MPA rings from chronically hypoxic rats was decreased by 30% compared with control values. Moreover, the D-600- and thapsigargin-resistant component of contraction was decreased by 40% in chronically hypoxic rats. These data indicate that CH alters pulmonary arterial reactivity as a consequence of an effect on both Ca2+ signaling and Ca2+ sensitivity of the contractile apparatus. A Ca2+ reuptake mechanism appears as a CH-sensitive phenomenon that may account for the main effect of CH on Ca2+ signaling.

摘要

研究了14天慢性缺氧(CH)对大鼠主肺动脉(MPA)中激动剂诱导的Ca2+信号传导和收缩的影响。在从对照(常氧)大鼠获得的MPA肌细胞中,内皮素(ET)-1、血管紧张素II(ANG II)和ATP在85-90%的细胞中诱导细胞内Ca2+浓度([Ca2+]i)振荡,而在慢性缺氧大鼠的肌细胞中这些振荡消失,同时响应细胞的百分比降低。然而,激动剂诱导反应中涉及的Ca2+动员量和Ca2+来源均未改变。对咖啡因诱导的[Ca2+]i瞬态反应的分析表明,慢性缺氧大鼠的肌细胞中静息[Ca2+]i值的恢复延迟。与对照值相比,慢性缺氧大鼠的MPA环中ET-1或ANG II诱导的最大收缩降低了30%。此外,慢性缺氧大鼠中对D-600和毒胡萝卜素耐药的收缩成分降低了40%。这些数据表明,CH通过对Ca2+信号传导和收缩装置的Ca2+敏感性的影响而改变肺动脉反应性。Ca2+再摄取机制似乎是一种对CH敏感的现象,可能解释了CH对Ca2+信号传导的主要影响。

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