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Cellular Environment in a Bundle Modulates SEJP Characteristics in Detrusor Smooth Muscle

机译:束中的蜂窝环境调节Detrusor平滑肌中的SEJP特性

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Smooth muscle that ensheathes the urinary bladder wall is known as the detrusor. The detrusor has a bundled syncytial architecture where groups of electrically coupled cells form discrete bundles. Electrical activity recorded from detrusor cells is varied. Among the electrical signals recorded from the detrusor, spontaneous excitatory junction potentials (SEJPs) are events that are sub-threshold for spike generation. SEJPs are caused by spontaneous random release of neurotransmitter molecules from varicosities of innervating nerves. SEJPs recorded from different cells of the detrusor vary in amplitude and/or kinetics, and the reasons for variability are obscure. Our hypothesis was that variety in SEJP characteristics may be attributed to the biophysical micro-environment of a cell (in a bundle), where it arises. With the help of computational models, we show how cellular environment factor, such as size of a bundle significantly alters the amplitude as well as kinetics of SEJPs. These findings are congruent with experimental observations. Our results also suggest that characteristically different SEJPs may be observed in identical detrusor cells, with the difference arising from their neighbourhood rather than the inherent nature of the cells. Consequently, SEJP characteristics might be indicative of the cellular environment of electrophysiological recording.
机译:鞘囊壁的平滑肌被称为排水管。沥序器具有捆绑的合胞结构架构,其中电耦合单元组形成离散束。从逼尿肌细胞记录的电活动变化。在从排尿管记录的电信号中,自发兴奋结电位(SEJPS)是峰值产生的子阈值的事件。 Sejps是由来自接管神经的致异质的神经递质分子的自发随机释放引起的。从沥序器的不同电池记录的SEJP在幅度和/或动力学中变化,并且变异性的原因是模糊的。我们的假设是SEJP特征中的多样性可归因于细胞的生物物理微环境(在束中),在那里它产生。在计算模型的帮助下,我们展示了蜂窝环境因素,例如束的大小明显改变了SEJPS的幅度和动力学。这些发现与实验观察一致。我们的结果还表明,可以在相同的逼血细胞中观察到特征性不同的SEJP,其邻域而不是细胞的固有性质产生的差异。因此,SEJP特征可能指示电生理记录的细胞环境。

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