Department of Medicine, University of Pittsburgh, Pittsburgh, Pennsylvania.
Department of Neuroscience, University of Pittsburgh, Pittsburgh, Pennsylvania.
J Neurophysiol. 2019 Sep 1;122(3):1207-1212. doi: 10.1152/jn.00315.2019. Epub 2019 Jul 17.
Baroreceptors play a pivotal role in the regulation of blood pressure through moment to moment sensing of arterial blood pressure and providing information to the central nervous system to make autonomic adjustments to maintain appropriate tissue perfusion. A recent publication by Zeng and colleagues (Zeng WZ, Marshall KL, Min S, Daou I, Chapleau MW, Abboud FM, Liberles SD, 362: 464-467, 2018) suggests the mechanosensitive ion channels Piezo1 and Piezo2 represent the cellular mechanism by which baroreceptor nerve endings sense changes in arterial blood pressure. However, before Piezo1 and Piezo2 are accepted as the sensor of baroreceptors, the question must be asked of what criteria are necessary to establish this and how well the report of Zeng and colleagues (Zeng WZ, Marshall KL, Min S, Daou I, Chapleau MW, Abboud FM, Liberles SD, 362: 464-467, 2018) satisfies these criteria. We briefly review baroreceptor function, outline criteria that a putative neuronal sensor of blood pressure must satisfy, and discuss whether the recent findings of Zeng and colleagues suitably meet these criteria. Despite the provocative hypothesis, there are significant concerns regarding the evidence supporting a role of Piezo1/Piezo2 in arterial baroreceptor function.
压力感受器通过对动脉血压的即时感知,在血压调节中发挥着关键作用,并向中枢神经系统提供信息,以做出自主调整来维持适当的组织灌注。最近,Zeng 及其同事的一篇论文(Zeng WZ、Marshall KL、Min S、Daou I、Chapleau MW、Abboud FM、Liberles SD,362: 464-467, 2018)表明,机械敏感性离子通道 Piezo1 和 Piezo2 代表了压力感受器神经末梢感知动脉血压变化的细胞机制。然而,在Piezo1 和 Piezo2 被接受为压力感受器的传感器之前,必须要问的问题是,确立这一点需要哪些标准,以及 Zeng 及其同事的报告(Zeng WZ、Marshall KL、Min S、Daou I、Chapleau MW、Abboud FM、Liberles SD,362: 464-467, 2018)在多大程度上满足了这些标准。我们简要回顾了压力感受器的功能,概述了一个潜在的血压神经元传感器必须满足的标准,并讨论了 Zeng 及其同事最近的发现是否适当地满足了这些标准。尽管这一假设颇具启发性,但 Piezo1/Piezo2 在动脉压力感受器功能中的作用仍存在一些重大问题。