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Increased Catecholamine Secretion from Single AdrenalChromaffin Cells in DOCA-Salt Hypertension Is Associated with PotassiumChannel Dysfunction

机译:单肾上腺的儿茶酚胺分泌增加DOCA-盐高血压中的嗜铬细胞与钾有关通道功能障碍

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摘要

The mechanism of catecholamine release from single adrenal chromaffin cells isolated from normotensive and DOCA-salt hypertensive rats was investigated. These cells were used as a model for sympathetic nerves to better understand how exocytotic release of catecholamines is altered in this model of hypertension. Catecholamine secretion was evoked by local application of acetylcholine (1 mM) or high K+ (70 mM), and continuous amperometry was used to monitor catecholamine secretion as an oxidative current. The total number of catecholamine molecules secreted from a vesicle, the total number of vesicles fusing and secreting, and the duration of secretion in response to a stimulus were all significantly greater for chromaffin cells from hypertensive rats as compared to normotensive controls. The greater catecholamine secretion from DOCA-salt cells results, at least in part, from functionally impaired large conductance, Ca2+-activated (BK) and ATP-sensitive K+ channels. This work reveals that there is altered vesicular release of catecholamines from these cells (and possibly from perivascular sympathetic nerves)and this may contribute to increased vasomotor tone in DOCA-salt hypertension.
机译:研究了从正常血压和DOCA-盐高血压大鼠分离的单个肾上腺嗜铬细胞释放儿茶酚胺的机制。这些细胞被用作交感神经的模型,以更好地了解在这种高血压模型中儿茶酚胺的胞吐释放是如何改变的。局部施用乙酰胆碱(1 mM)或高K + (70 mM)引起儿茶酚胺分泌,并采用连续安培法监测儿茶酚胺分泌作为氧化电流。与正常对照组相比,高血压大鼠的嗜铬细胞从囊泡分泌的儿茶酚胺分子总数,融合和分泌的囊泡总数以及对刺激的分泌持续时间均显着增加。 DOCA-盐细胞分泌更多的儿茶酚胺,至少部分原因是功能受损的大电导,Ca 2 + 激活(BK)和ATP敏感性K + 渠道。这项工作表明,儿茶酚胺从这些细胞(可能还有血管周围的交感神经)的水泡释放发生了改变这可能会导致DOCA盐高血压中血管舒缩张力增加。

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