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P2RX2 and P2RX4 receptors mediate cation absorption in transitional cells and supporting cells of the utricular macula

机译:P2RX2和P2RX4受体在过渡细胞中介导阳离子吸收和Utticular MACULA的支持细胞

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Purinergic receptors protect the cochlea during high-intensity stimulation by providing a parallel shunt pathway through non-sensory neighboring epithelial cells for cation absorption. So far, there is no direct functional evidence for the presence and type/subunit of purinergic receptors in the utricle of the vestibular labyrinth. The goal of the present study was to investigate which purinergic receptors are expressed and carry cation-absorption currents in the utricular transitional cells and macula. Purinergic agonists induced cation-absorption currents with a potency order of ATP > bzATP = alpha beta meATP ADP = UTP = UDP. ATP and bzATP are full agonists, whereas alpha beta meATP is a partial agonist. ATP-induced currents were partially inhibited by 100 mu M suramin, 10 mu M pyridoxalphosphate-6-azo-(benzene-2,4-disulfonic acid (PPADS), or 5 mu M 5-(3-bromophenyl)-1,3-dihydro-2H-benzofuro[3,2-e]-1, 4-diazepin-2-one (5-BDBD), and almost completely blocked by 100 mu M Gd3+ or by a combination of 10 mu M PPADS and 5 mu M 5-BDBD. Expression of the P2RX2 and P2RX4 receptor was detected by immunocytochemistry in transitional cells and macular supporting cells. This is the first study to demonstrate that ATP induces cation currents carried by a combination of P2RX2 and P2RX4 in utricular transitional and macular epithelial cells, and supporting the hypothesis that purinergic receptors protect utricular hair cells during elevated stimulus intensity levels. (C) 2019 Elsevier B.V. All rights reserved.
机译:嘌呤能受体通过提供通过非感觉邻近上皮细胞的平行分流途径来保护耳蜗在高强度刺激期间用于阳离子吸收。到目前为止,前庭迷宫的尿道中的嘌呤能受体的存在和类型/亚基没有直接的功能证据。本研究的目的是探讨哪些嘌呤能受体表达并携带粘性过渡细胞和黄斑中的阳离子吸收电流。嘌呤能激动剂诱导阳离子吸收电流,具有ATP> BZATP =αβ的效力级 ADP = UTP = UDP。 ATP和BZATP是完整的激动剂,而alphaβ肉是一种部分激动剂。 ATP诱导的电流由100μmsuramin,10μm吡啶磷酸磷酸-6-氮杂 - (苯-2,4-二硫酸(PPAD),或5μm5-(3-溴苯基)-1,3 -dihydro-2h-benzofuro [3,2-e] -1,4-二氮平-2-一(5-bdbd),几乎完全堵塞100 mu m gd3 +或通过10 mu m ppad和5亩的组合M 5-BDBD。通过免疫细胞和黄斑化细胞的免疫细胞化学检测P2RX2和P2RX4受体的表达。这是第一次证明ATP诱导由Utsicular过渡和黄斑上皮的组合诱导阳离子电流的研究细胞,并支持假设,纯化受体在升高的刺激强度水平期间保护提出的头发细胞。(c)2019年Elsevier BV保留所有权利。

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