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Heterogeneous Cytoplasmic Calcium Response in Microvascular Endothelial Cells

机译:微血管内皮细胞中的异质细胞质钙反应

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We investigated changes in calcium concentration in response to the administration of ATP and the onset of shear stress with cultured rat adrenomedulary endothelial cells (RAMECs, microvascular). A substantial heterogeneity in time and space in the calcium response was observed. The onset of shear stress induced calcium waves that originated from one or several cells and propagated to neighboring cells. The application of uniform exogenous ATP produced similar heterogeneous calcium transients. The size of the responding groups was dependent on ATP concentration. The propagation of calcium waves induced by either ATP or shear stress challenge was significantly suppressed by suramin, a non-specific purinergic receptor blocker. We investigated some of the mechanisms leading to the heterogeneity, and the results indicated that the main source of variation is the heterogeneous distribution of purinergic receptor. The application of ATP or shear stress stimulates cells to release ATP causing an increase of [Ca2+ ]i via purinergic receptor in the cells that have high sensitivity. Subsequently, additional ATP is released and the elevation of ATP concentration in the vicinity of the initially responding cells mediates the calcium propagation. These data suggest a mechanism by which ATP acts as an autocrine and paracrine mediator to integrate individual cell responses that result in coordination of vascular functions in situ
机译:我们调查了钙浓度的变化,以响应ATP的施用和培养的大鼠肾上腺髓质内皮细胞(RAMECs,微血管)的剪切应力的发作。观察到钙反应在时间和空间上存在很大的异质性。剪应力的发生诱导了钙波,该钙波起源于一个或几个细胞并传播到邻近细胞。均匀外源ATP的应用产生了相似的异质钙瞬变。反应组的大小取决于ATP浓度。苏拉明(一种非特异性嘌呤能受体阻滞剂)可显着抑制由ATP或剪切应力激发引起的钙波传播。我们研究了导致异质性的一些机制,结果表明变异的主要来源是嘌呤能受体的异质分布。 ATP或剪应力的施加会刺激细胞释放ATP,从而通过高敏感性细胞中的嘌呤能受体增加[Ca 2+ ] i 。随后,释放了额外的ATP,最初反应细胞附近的ATP浓度升高介导了钙的传播。这些数据表明,ATP可作为一种自分泌和旁分泌介质来整合单个细胞反应的机制,从而导致原位血管功能的协调。

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