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血红素加氧酶-1表达与缺氧诱导的血管收缩反应性降低的发生及逆转的相关性。

Correlation of HO-1 expression with onset and reversal of hypoxia-induced vasoconstrictor hyporeactivity.

作者信息

Jernigan N L, O'Donaughy T L, Walker B R

机构信息

Vascular Physiology Group, Department of Cell Biology and Physiology, University of New Mexico Health Science Center, Albuquerque, New Mexico 87131-5218, USA.

出版信息

Am J Physiol Heart Circ Physiol. 2001 Jul;281(1):H298-307. doi: 10.1152/ajpheart.2001.281.1.H298.

Abstract

Rats exposed to chronic hypoxia (CH; 4 wk at 0.5 atm) exhibit attenuated renal vasoconstrictor reactivity to phenylephrine (PE). Preliminary studies from our laboratory suggest that this response is mediated by hypoxic induction of heme oxygenase (HO) and subsequent release of the endogenous vasodilator carbon monoxide. Because vascular HO mRNA is increased within hours of hypoxic exposure, we hypothesized that the onset of reduced reactivity may occur fairly rapidly and correlate with HO expression. Therefore, we examined the onset of attenuated vasoconstriction on CH exposure as well as the duration of hyporeactivity on return to a normoxic environment. Renal vascular resistance (RVR) responses to graded intravenous infusion of PE were measured in conscious rats under control conditions and after 24 h, 48 h, and 4 wk of CH exposure. Vasoreactivity responses were also determined in 4-wk CH rats 1, 5, 24, and 96 h after return to normoxia. We found that RVR responses to PE were significantly blunted after 48 h and 4 wk but not after 24 h of hypoxic exposure. Inhibition of HO with zinc protoporphyrin IX increased RVR and decreased renal blood flow in 48-h CH rats but not controls. Although reactivity to PE was gradually restored after 4 wk of CH, responsiveness was still slightly blunted at 96 h after return to normoxia. Western blot analysis demonstrated a correlation between HO-1 protein levels and attenuated vasoconstrictor response in CH and posthypoxic rats. These data suggest that the onset and offset of physiologically relevant vascular HO expression occur within 2--3 days.

摘要

暴露于慢性低氧环境(CH;0.5个大气压下4周)的大鼠,对去氧肾上腺素(PE)的肾血管收缩反应性减弱。我们实验室的初步研究表明,这种反应是由血红素加氧酶(HO)的低氧诱导及内源性血管舒张剂一氧化碳的后续释放介导的。由于血管HO mRNA在低氧暴露数小时内就会增加,我们推测反应性降低的起始可能相当迅速,并与HO表达相关。因此,我们研究了CH暴露时血管收缩减弱的起始情况以及恢复到常氧环境后低反应性的持续时间。在对照条件下以及CH暴露24小时、48小时和4周后,测量清醒大鼠对静脉内分级输注PE的肾血管阻力(RVR)反应。还在恢复常氧1小时、5小时、24小时和96小时后的4周CH大鼠中测定血管反应性。我们发现,低氧暴露48小时和4周后,对PE的RVR反应显著减弱,但24小时后未减弱。用锌原卟啉IX抑制HO可增加48小时CH大鼠的RVR并降低肾血流量,但对对照组无此作用。虽然CH 4周后对PE的反应性逐渐恢复,但恢复常氧96小时后反应性仍略有减弱。蛋白质印迹分析表明,CH大鼠和低氧后大鼠中HO-1蛋白水平与血管收缩反应减弱之间存在相关性。这些数据表明,生理相关的血管HO表达的起始和消退发生在2 - 3天内。

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