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Computational study of ATP gated Potassium ion channel in urinary bladder over activity

机译:膀胱ATP门控钾离子通道过度运动的计算研究。

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Enhanced spontaneous electrical activity in detrusor smooth muscle cell is a major cause of over active bladder. ATP sensitive Potassium channel, which may play a crucial part in modulating resting membrane potential of detrusor smooth muscle cell and hence in bladder over activity. The main objective of our study is to construct a computational model of ATP sensitive Potassium channel in DSM cell with sufficient biophysical details to investigate its' modulating role in electrical excitability. The model was based on documented electrophysiological data in published experimental studies. We have validated our simulated ATP sensitive Potassium ion channel current by comparing with experimental recordings and it showed positive agreements in numerous parameters. At the present time, our computational model provides an elementary tool to analyze the physiological role of ATP sensitive Potassium ionic current in detrusor smooth muscle electrical activity underlying the contractions in DSM cells that successively will shed light in genesis of bladder overactivity.
机译:逼尿肌平滑肌细胞自发性电活动增强是膀胱过度活动的主要原因。 ATP敏感钾通道,在调节逼尿肌平滑肌细胞的静息膜电位并因此在膀胱过度活动中起关键作用。我们研究的主要目的是构建具有足够生物物理细节的DSM细胞中ATP敏感钾通道的计算模型,以研究其在电兴奋性中的调节作用。该模型基于已发表的实验研究中记录的电生理数据。通过与实验记录进行比较,我们已经验证了模拟的ATP敏感钾离子通道电流,并且在许多参数上都显示出肯定的一致性。目前,我们的计算模型提供了一个基本的工具,用于分析ATP敏感钾离子电流在逼尿肌平滑肌电活动中的生理作用,该活动是DSM细胞收缩的基础,而这些活动继而会在膀胱过度活动症的发生中发光。

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