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Hypo-osmotic potentiation of acetylcholine-stimulated ciliary beat frequency through ATP release in rat tracheal ciliary cells.

机译:通过ATP释放大鼠气管纤毛细胞中乙酰胆碱刺激的纤毛搏动频率的低渗增强。

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摘要

The ciliary beat frequency (CBF) of rat tracheal ciliary cells in a slice preparation was measured using video-enhanced contrast (VEC) microscopy. Acetylcholine (ACh) increased CBF mediated via intracellular Ca2+ concentration ([Ca2+]i) in a dose-dependent manner. An adequate hypo-osmotic stress (-40 mosM) potentiated ACh-stimulated CBF increase in tracheal ciliary cells and shifted the ACh dose-response curve to the left (lower concentration side). This potentiation was independent of hypo-osmotic stresses applied ranging from -20 mosM to -90 mosM. A hypo-osmotic stress induces ATP release in many cell types. The present study demonstrated that suramin (an inhibitor of purinergic receptors) and apyrase (an ATPase/ADPase) eliminate the hypo-osmotic potentiation of ACh-stimulated CBF increase and that ATP increased [Ca2+]i and CBF, as well as potentiating ACh-stimulated rises in [Ca2+]i and CBF increase. Moreover, the apical surface of tracheal ciliary cells were stained immunopositive for the P2X4 purinergic receptor. A hypo-osmotic stress (-40 mosM) transiently increased [Ca2+]i and potentiated the ACh-stimulated [Ca2+]i increase. The hypo-osmotic potentiation of ACh-stimulated CBF increase was not detected under Ca2+-free conditions. These observations suggest that a hypo-osmotic stress stimulates ATP release from the trachea. The released ATP may induce further increases in [Ca2+]i and CBF in ACh-stimulated tracheal ciliary cells, which may be mediated by purinergic receptors, such as P2X4.
机译:使用视频增强对比(VEC)显微镜测量切片制剂中大鼠气管纤毛细胞的纤毛搏动频率(CBF)。乙酰胆碱(ACh)以剂量依赖性方式增加了通过细胞内Ca2 +浓度([Ca2 +] i)介导的CBF。适当的低渗压力(-40 mosM)增强了气管睫状细胞中ACh刺激的CBF的增加,并使ACh剂量反应曲线向左移动(浓度较低的一侧)。这种增强作用与施加在-20 mosM至-90 mosM范围内的低渗压力无关。低渗胁迫会诱导许多细胞类型中的ATP释放。本研究表明,苏拉明(嘌呤能受体的抑制剂)和腺苷三磷酸酶(ATPase / ADPase)消除了ACh刺激的CBF增加的低渗增强作用,并且ATP增加了[Ca2 +] i和CBF,以及增强了ACh- [Ca2 +] i的刺激性升高和CBF升高。此外,气管睫状细胞的顶端表面对P2X4嘌呤能受体免疫阳性。低渗胁迫(-40 mosM)暂时增加[Ca2 +] i,并增强ACh刺激的[Ca2 +] i的增加。在无Ca2 +的条件下未检测到ACh刺激的CBF增加的低渗增强作用。这些观察结果表明低渗胁迫刺激了气管中的ATP释放。释放的ATP可能诱导ACh刺激的气管睫状细胞中[Ca2 +] i和CBF进一步增加,这可能是由嘌呤能受体(例如P2X4)介​​导的。

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