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Modulating Properties of Hyperpolarization-Activated Cation Current in Urinary Bladder Smooth Muscle Excitability: A Simulation Study

机译:调节尿膀胱膀胱平滑肌兴奋性中超极化活性阳离子电流的性能:仿真研究

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Smooth muscle cells from the urinary bladder display enhanced spontaneous electrical activities during the overactive bladder state. It is very well known that the electrical properties of all excitable cells are regulated by the intrinsic active ion channels. In excitable cells like the neurons, cardiac and other smooth muscle cells, the hyperpolarization-activated cation channel has been considered as a potential target to regulate cell's excitability. The primary purpose of this research work is to develop a computational model of the hyperpolarization-activated cation channel in urinary bladder smooth muscle (UBSM) cell to analysis its modulating role in cell's excitability. All required biophysical parameters are adapted from the published experimental studies in UBSM cell. We have successfully simulated and validated the channel model by comparing it with experimental findings in UBSM cells. We have investigated the potential role of this hyperpolarization-activated cation channel in regulating the shape of the evoked action potentials. From this quantitative analysis, we conclude that future pharmacological studies on hyperpolarization-activated cation channel can provide more insights into the underlying bladder overactivity.
机译:来自膀胱的平滑肌细胞显示出在过度活跃的膀胱状态期间增强的自发电气活动。众所周知,所有激发细胞的电特性由内在的有源离子通道调节。在神经元,心脏和其他平滑肌细胞等易激的细胞中,超极化活化的阳离子通道被认为是调节细胞兴奋性的潜在目标。本研究工作的主要目的是在膀胱平滑肌(UBSM)细胞中,在膀胱平滑肌(UBSM)细胞中,开发一种超极化激活的阳离子通道的计算模型,以分析其在细胞兴奋性中的调节作用。所有必需的生物物理参数都是从UBSM细胞的已发表的实验研究调整。通过将其与UBSM细胞中的实验结果进行比较,我们已成功模拟和验证了通道模型。我们研究了这种超极化激活的阳离子通道在调节诱发动作电位的形状方面的潜在作用。根据这种定量分析,我们得出结论,对超极化激活的阳离子通道的未来药理学研究可以为潜在的膀胱过度增长提供更多的见解。

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