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肾脏和心血管感觉感受器与血压调节。

Renal and cardiovascular sensory receptors and blood pressure regulation.

机构信息

Dept. of Physiology, Johns Hopkins Univ. School of Medicine, Baltimore, MD 21205.

出版信息

Am J Physiol Renal Physiol. 2013 Aug 15;305(4):F439-44. doi: 10.1152/ajprenal.00252.2013. Epub 2013 Jun 12.

Abstract

Studies over the past decade have highlighted important roles played by sensory receptors outside of traditionally sensory tissues; for example, taste receptors participate in pH sensing in the cerebrospinal fluid, bitter taste receptors mediate bronchodilation and ciliary beating in the lung (Deshpande DA, Wang WC, McIlmoyle EL, Robinett KS, Schillinger RM, An SS, Sham JS, Liggett SB. Nat Med 16: 1299-1304, 2010; Shah AS, Ben-Shahar Y, Moninger TO, Kline JN, Welsh MJ. Science 325: 1131-1134, 2009), and olfactory receptors play roles in both sperm chemotaxis and muscle cell migration (Griffin CA, Kafadar KA, Pavlath GK. Cell 17: 649-661, 2009). More recently, several studies have shown that sensory receptors also play important roles in the regulation of blood pressure. This review will focus on several recent studies examining the roles that sensory receptors play in blood pressure regulation, with an emphasis on three pathways: the adenylate cyclase 3 (AC3) pathway, the Gpr91-succinate signaling pathway, and the Olfr78/Gpr41 short-chain fatty acid signaling pathway. Together, these pathways demonstrate that sensory receptors play important roles in mediating blood pressure control and that blood pressure regulation is coupled to the metabolism of the host as well as the metabolism of the gut microbiota.

摘要

过去十年的研究强调了传统感觉组织以外的感觉受体所起的重要作用;例如,味觉受体参与脑脊液中的 pH 感应,苦味受体介导肺中的支气管扩张和纤毛运动(Deshpande DA、Wang WC、McIlmoyle EL、Robinett KS、Schillinger RM、An SS、Sham JS、Liggett SB. Nat Med 16: 1299-1304, 2010;Shah AS、Ben-Shahar Y、Moninger TO、Kline JN、Welsh MJ. Science 325: 1131-1134, 2009),嗅觉受体在精子趋化和肌肉细胞迁移中也发挥作用(Griffin CA、Kafadar KA、Pavlath GK. Cell 17: 649-661, 2009)。最近的几项研究表明,感觉受体在血压调节中也起着重要作用。这篇综述将重点介绍几项最近的研究,这些研究检查了感觉受体在血压调节中所起的作用,重点介绍了三条途径:腺苷酸环化酶 3(AC3)途径、Gpr91-琥珀酸信号通路和 Olfr78/Gpr41 短链脂肪酸信号通路。这些途径共同表明,感觉受体在介导血压控制方面起着重要作用,血压调节与宿主的代谢以及肠道微生物群的代谢有关。

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