首页> 外文期刊>The Journal of Physiology >Hypoxia and smooth muscle function: key regulatory events during metabolic stress.
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Hypoxia and smooth muscle function: key regulatory events during metabolic stress.

机译:低氧和平滑肌功能:代谢应激期间的关键调节事件。

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Hypoxia rapidly reduces force in many smooth muscles and we review recent data that shed light on the mechanisms involved. As many regulated cellular processes are integrated to co-ordinate smooth muscle contractility, the processes responsible for decreased force output with altered metabolism are also likely to be many, acting in concert, rather than the actions of one altered parameter. Nevertheless the aim of this study is to elucidate the hierarchical series of events that contribute to reduced smooth muscle force production during altered metabolism. We conclude that in many phasic smooth muscles the decrease in force can be attributed to impaired electro-mechanical coupling whereby the Ca2+ transient is reduced. A direct effect of hypoxia on the Ca2+ channel may be of key importance. In tonic vascular smooth muscles KATP channels may also play a role in the integrated functional responses to hypoxia. There are also many examples of force being reduced, in tonically activated preparations, without a fall in steady-state Ca2+; indeed it usually increases. We examine the roles of altered [ATP], pH, myosin phosphorylation, inorganic phosphate and proteolytic activity on the [Ca2+]-force relationship during hypoxia. We find no defining force-inhibitory role for any one factor acting alone, and suggest that force most probably falls as a result of the combination of myriad factors.
机译:低氧迅速降低了许多平滑肌的力量,我们回顾了最近的数据,这些数据揭示了所涉及的机制。由于整合了许多受调节的细胞过程来协调平滑肌的收缩,因此,伴随新陈代谢改变而导致力输出降低的过程也可能很多,它们共同起作用,而不是一个改变的参数的作用。然而,这项研究的目的是阐明一系列事件,这些事件在代谢改变过程中有助于减少平滑肌力量的产生。我们得出的结论是,在许多阶段的平滑肌中,力量的下降可归因于机电耦合的减弱,从而减少了Ca2 +瞬变。缺氧对Ca2 +通道的直接影响可能至关重要。在强直性血管平滑肌中,KATP通道也可能在对缺氧的综合功能反应中起作用。在调理活化的制剂中,也有许多减少力而不会降低稳态Ca2 +的例子。实际上,它通常会增加。我们检查了缺氧过程中[ATP],pH,肌球蛋白磷酸化,无机磷酸盐和蛋白水解活性对[Ca2 +]力关系的作用。我们没有发现单独作用的任何因素都具有定义性的力抑制作用,并建议力很可能是由多种因素共同作用而下降的。

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