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T-type Ca2+ channels and autoregulation of local blood flow

机译:T型Ca2 +通道和局部血流的自动调节

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摘要

L-type voltage gated Ca2+ channels are considered to be the primary source of calcium influx during the myogenic response. However, many vascular beds also express T-type voltage gated Ca2+ channels. Recent studies suggest that these channels may also play a role in autoregulation. At low pressures (40–80?mmHg) T-type channels affect myogenic responses in cerebral and mesenteric vascular beds. T-type channels also seem to be involved in skeletal muscle autoregulation. This review discusses the expression and role of T-type voltage gated Ca2+ channels in the autoregulation of several different vascular beds. Lack of specific pharmacological inhibitors has been a huge challenge in the field. Now the research has been strengthened by genetically modified models such as mice lacking expression of T-type voltage gated Ca2+ channels (CaV3.1 and CaV3.2). Hopefully, these new tools will help further elucidate the role of voltage gated T-type Ca2+ channels in autoregulation and vascular function.
机译:L型电压门控的Ca2 +通道被认为是在成肌反应期间钙流入的主要来源。但是,许多血管床也表达T型电压门控Ca2 +通道。最近的研究表明,这些通道也可能在自动调节中起作用。在低压(40–80?mmHg)下,T型通道会影响大脑和肠系膜血管床的成肌反应。 T型通道似乎也参与骨骼肌的自动调节。这篇综述讨论了T型电压门控Ca2 +通道在几种不同血管床的自动调节中的表达和作用。缺乏特定的药理抑制剂一直是该领域的巨大挑战。现在,通过基因改造的模型,例如缺乏T型电压门控Ca2 +通道(CaV3.1和CaV3.2)表达的小鼠,该研究得到了加强。希望这些新工具将有助于进一步阐明电压门控T型Ca2 +通道在自动调节和血管功能中的作用。

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