首页> 美国卫生研究院文献>American Journal of Physiology - Heart and Circulatory Physiology >Functional expression of P2X4 receptor in capillary endothelial cells of the cochlear spiral ligament and its role in regulating the capillary diameter
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Functional expression of P2X4 receptor in capillary endothelial cells of the cochlear spiral ligament and its role in regulating the capillary diameter

机译:P2X4受体在耳蜗螺旋韧带毛细血管内皮细胞中的功能表达及其在调节毛细血管直径中的作用

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摘要

The cochlear lateral wall generates the endocochlear potential (EP), which creates a driving force for the hair cell transduction current and is essential for normal hearing. Blood flow at the cochlear lateral wall is critically important for maintaining the EP. The vulnerability of the EP to hypoxia suggests that the blood flow in the cochlear lateral wall is dynamically and precisely regulated to meet the changing metabolic needs of the cochlear lateral wall. It has been reported that ATP, an important extracellular signaling molecule, plays an essential role in regulating cochlear blood flow. However, the cellular mechanism underlying ATP-induced regional blood flow changes has not been investigated. In the current study, we demonstrate that 1) the P2X4 receptor is expressed in endothelial cells (ECs) of spiral ligament (SL) capillaries. 2) ATP elicits a characteristic current through P2X4 on ECs in a dose-dependent manner (EC50 = 0.16 mM). The ATP current has a reversal potential at ∼0 mV; is inhibited by 5-(3-bromophenyl)-1,3-dihydro-2H-benzofuro[3,2-e]-1,4-diazepin-2-one (5-BDBD), LaCl3, pyridoxal phosphate-6-azo(benzene-2,4-disulfonic acid) tetrasodium salt hydrate (PPADS), and extracellular acidosis; and is less sensitive to α,β-methyleneadenosine 5′-triphosphate (α,β-MeATP) and 2′- and 3′-O-(4-benzoyl-benzoyl) adenosine 5′-triphosphate (BzATP). 3) ATP elicits a transient increase of intracellular Ca2+ in ECs. 4) In accordance with the above in vitro findings, perilymphatic ATP (1 mM) caused dilation in SL capillaries in vivo by 11.5%. Nω-nitro-l-arginine methyl ester hydrochloride (l-NAME), a nonselective inhibitor of nitric oxide synthase, or 5-BDBD, the specific P2X4 inhibitor, significantly blocked the dilation. These findings support our hypothesis that extracellular ATP regulates cochlear lateral blood flow through P2X4 activation in ECs.
机译:耳蜗侧壁产生耳蜗内电位(EP),从而产生毛细胞转导电流的驱动力,对于正常听力至关重要。耳蜗侧壁的血流对于维持EP至关重要。 EP对缺氧的脆弱性表明,耳蜗侧壁的血流是动态而精确地调节的,以满足耳蜗侧壁不断变化的代谢需求。据报道,ATP,一种重要的细胞外信号分子,在调节耳蜗血流中起着至关重要的作用。但是,尚未研究潜在的ATP诱导区域血流量变化的细胞机制。在当前的研究中,我们证明1)P2X4受体在螺旋韧带(SL)毛细血管的内皮细胞(EC)中表达。 2)ATP以剂量依赖性方式(EC50 = 0.16 mM)通过EC上的P2X4引发特征电流。 ATP电流在〜0 mV处具有反向电位;被5-(3-溴苯基)-1,3-二氢-2H-苯并呋喃[3,2-e] -1,4-二氮杂-2--2-(5-BDBD),LaCl3,吡ido醛磷酸-6-抑制偶氮(苯-2,4-二磺酸)四钠水合物(PPADS)和细胞外酸中毒;并且对α,β-亚甲基腺苷5'-三磷酸(α,β-MeATP)和2'-和3'-O-(4-苯甲酰基-苯甲酰基)腺苷5'-三磷酸(BzATP)较不敏感。 3)ATP诱导ECs细胞内Ca 2 + 的瞬时增加。 4)根据上述体外发现,周淋巴ATP(1 mM)在体内使SL毛细血管扩张了11.5%。一氧化氮合酶的非选择性抑制剂N ω-硝基-1-精氨酸甲酯盐酸盐(l-NAME)或特异性P2X4抑制剂5-BDBD显着阻断了扩张。这些发现支持了我们的假设,即细胞外ATP通过EC中的P2X4激活来调节耳蜗侧向血流。

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