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Quantal Release of Serotonin from Platelets

机译:从血小板中释放5-羟色胺

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Even though platelets are known to play a critical role in hemostasis, mediated in part by their uptake, storage, and release of serotonin, there are many unexplored aspects of this process. Herein, single-cell amperometry is employed to characterize the dynamic secretion of serotonin from platelet dense-body granules. On the basis of a three-dimensional random walk simulation that estimates detection efficiency with varied spacing between the carbon-fiber microelectrode and the platelet, it is clear that the detected charge likely represents complete oxidation of the released granule contents and, thus, is a good method to calculate the serotonin concentration in each granule. Using the measured charge and volume estimates based on transmission electron microscopy (TEM) data, the granular concentration of serotonin is approximately 0.5 M. The simulated spike widths are significantly narrower than most of the measured amperometric spikes, clearly indicating that the stored serotonin is highly associated with an aggregate rather than freely diffusible within the dense-body granule. Additionally, by varying extracellular buffer temperature and pH to adjust the driving forces for serotonin delivery from the dense-body granules to the extracellular space, it is clear that, although platelet chemical messenger storage and secretion is similar to that of other secretory cells, there are some important distinctions.
机译:尽管已知血小板在止血中起关键作用,部分是由其摄取,储存和释放5-羟色胺介导的,但该过程有许多未探索的方面。本文中,单细胞安培法用于表征血小板致密体颗粒中5-羟色胺的动态分泌。根据估计碳纤维微电极和血小板之间间距变化的检测效率的三维随机游走模拟,很明显,检测到的电荷很可能代表了释放的颗粒内容物的完全氧化,因此是计算每个颗粒中5-羟色胺浓度的好方法。使用基于透射电子显微镜(TEM)数据测得的电荷和体积估计值,血清素的颗粒浓度约为0.5M。模拟的峰值宽度比大多数测得的安培峰值明显窄,清楚地表明所存储的血清素含量很高。与聚集体相关,而不是在致密体颗粒中自由扩散。此外,通过改变细胞外缓冲液的温度和pH值来调节将5-羟色胺从致密体颗粒传递到细胞外空间的驱动力,很明显,尽管血小板化学信使的存储和分泌与其他分泌细胞的相似。有一些重要的区别。

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