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Temperature effects in the stimulus-secretion process from isolated chromaffin cells.

机译:分离的嗜铬细胞刺激分泌过程中的温度效应。

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摘要

Temperature effects on the stimulus-secretion coupling process was studied by inducing release of catecholamines (CA) from isolated chromaffin cells of the bovine adrenal medulla. Use was made of three different secretagogues: acetylcholine (ACH), high potassium concentration, and the calcium ionophore A23187, at various incubation temperatures. The latter two agents induced a monotonic increase in secretion with rise in temperature, suggesting different regions of the dependence of total release on temperature. The ACH-induced secretion was, however, markedly different and exhibited a maximal release at 30 degrees C. Kinetic experiments using ACH stimulus revealed that this maximum is produced by different temperature dependence in the stages of activation and desensitization. A proposed model for the total release process yields temperature-dependent parameters that can be divided into three regions of initial rates of secretory activity corresponding to the above independent findings using high K+ concentration and the calcium ionophore. The transitions between the various regions indicate possible transitions in the physical properties of the plasma and secretory granule membranes. Elucidation of the interaction between the membranes is of primary importance in the determining mechanism of CA secretion from the isolated adrenal medulla cell.
机译:通过诱导牛肾上腺髓质分离的嗜铬细胞释放儿茶酚胺(CA),研究了温度对刺激-分泌-偶联过程的影响。在不同的孵育温度下,使用了三种不同的促分泌素:乙酰胆碱(ACH),高钾浓度和钙离子载体A23187。后两种药物诱导分泌物随温度升高而单调增加,表明总释放量对温度的依赖性不同。但是,ACH诱导的分泌显着不同,并且在30摄氏度时表现出最大释放。使用ACH刺激的动力学实验表明,该最大值是由激活和脱敏阶段中不同的温度依赖性产生的。提出的总释放过程模型会产生温度相关的参数,可以使用高K +浓度和钙离子载体将温度分为三个区域,分别对应于上述独立发现的初始分泌活性速率。各个区域之间的转变表明质膜和分泌性颗粒膜的物理性质可能发生转变。阐明膜之间的相互作用在确定从分离的肾上腺髓质细胞分泌CA的机制中至关重要。

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