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首页> 外文期刊>The Journal of Physiology >Intercellular Ca2+ signalling in the adult mouse cochlea
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Intercellular Ca2+ signalling in the adult mouse cochlea

机译:在成人小鼠耳蜗中的细胞间Ca2 +信号传导

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摘要

We have investigated wave-like cytoplasmic calcium (Ca2+) signalling in an ex vivo preparation of the adult mouse organ of Corti. Two types of intercellular Ca2+ waves that differ in propagation distance and speed were observed. One type was observed to travel up to 100 mu m with an average velocity of 7 mu m/s. Such waves were initiated by local tissue damage in the outer hair cell region. The propagation distance was decreased when the purinergic receptor antagonists pyridoxalphosphate-6-azophenyl-2',4'-disulfonic acid (PPADS; 50 mu m) or suramin (150 mu m) were added to the extracellular buffer. Immunocytochemical analysis and experiments with calcium indicator dyes showed that both P2X and P2Y receptors were present in supporting cells. A second class of waves identified to travel longitudinally along the organ of Corti propagated at a lower velocity of 1-3 mu m/s. These 'slow' Ca2+ waves were particularly evident in the inner sulcus and Deiters' cells. They travelled for distances of up to 500 mu m. The slow Ca2+ signalling varied periodically (approximately one wave every 10 min) and was maintained for more than 3 h. The slow waves were not affected by apyrase, or by the P2 receptor agonists suramin (150 mu m) or PPADS (50 mu m) but were blocked by the connexin channel blockers octanol (1 mm) and carbenoxolone (100 mu m). It is proposed that the observed Ca2+ waves might be a physiological response to a change in extracellular environment and may be involved in critical gene regulation activities in the supporting cells of the cochlea.
机译:我们在Corti的成年小鼠器官的前体内制剂中研究了波状细胞质钙(CA2 +)信号。观察到传播距离和速度不同的两种类型的细胞外CA2 +波。观察到一种类型的行驶至100μm,平均速度为7μm/ s。这种波被外毛细胞区域中的局部组织损伤引发。当嘌呤能受体拮抗剂-6-二苯基苯基-2',4'-二磺酸(PPAD;50μm)或苏克林(150μm)加入到细胞外缓冲液中时,繁殖距离降低。钙指示剂染料的免疫细胞化学分析和实验表明,P2X和P2Y受体都存在于支撑细胞中。鉴定的第二类波浪沿着皮质器官纵向行进,以1-3μm/ s的较低速度传播。这些“慢”Ca2 +波在内部沟槽和派对的细胞中特别明显。他们前往高达500亩的距离。缓慢的CA2 +信号传导周期性地(每10分钟大约一个波),并保持超过3小时。慢波不受亚紫外酶的影响,或者通过P2受体激动剂苏拉曼(150μm)或ppad(50μm)(但是通过Connexin通道阻断剂ondanol(1mM)和碳氧酮(100μm)封闭。提出观察到的CA2 +波可能是对细胞外环境变化的生理反应,并且可以参与耳蜗的支撑细胞中的关键基因调控活性。

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