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首页> 外文期刊>Nature Communications >TRPC5 channels participate in pressure-sensing in aortic baroreceptors
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TRPC5 channels participate in pressure-sensing in aortic baroreceptors

机译:TRPC5通道参与主动脉压力感受器的压力感测

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Blood pressure is maintained within a normal physiological range by a sophisticated regulatory mechanism. Baroreceptors serve as a frontline sensor to detect the change in blood pressure. Nerve signals are then sent to the cardiovascular control centre in the brain in order to stimulate baroreflex responses. Here, we identify TRPC5 channels as a mechanical sensor in aortic baroreceptors. In Trpc5 knockout mice, the pressure-induced action potential firings in the afferent nerve and the baroreflex-mediated heart rate reduction are attenuated. Telemetric measurements of blood pressure demonstrate that Trpc5 knockout mice display severe daily blood pressure fluctuation. Our results suggest that TRPC5 channels represent a key pressure transducer in the baroreceptors and play an important role in maintaining blood pressure stability. Because baroreceptor dysfunction contributes to a variety of cardiovascular diseases including hypertension, heart failure and myocardial infarction, our findings may have important future clinical implications.
机译:通过复杂的调节机制,血压可维持在正常的生理范围内。压力感受器充当检测血压变化的一线传感器。然后将神经信号发送到大脑中的心血管控制中心,以刺激压力反射反应。在这里,我们将TRPC5通道识别为主动脉压力感受器中的机械传感器。在Trpc5基因敲除小鼠中,传入神经中压力诱导的动作电位放电和压力反射介导的心率降低被减弱。遥测血压测量结果表明Trpc5基因敲除小鼠每天的血压波动很大。我们的结果表明,TRPC5通道代表压力感受器中的关键压力传感器,并在维持血压稳定性中起重要作用。由于压力感受器功能障碍会导致多种心血管疾病,包括高血压,心力衰竭和心肌梗塞,因此我们的发现可能对未来的临床意义具有重要意义。

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