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A biophysically based mathematical model of unitary potential activity in interstitial cells of Cajal.

机译:Cajal间质细胞中单一潜在活动的基于生物物理学的数学模型。

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Unitary potential (UP) depolarizations are the basic intracellular events responsible for pacemaker activity in interstitial cells of Cajal (ICCs), and are generated at intracellular sites termed "pacemaker units". In this study, we present a mathematical model of the transmembrane ion flows and intracellular Ca(2+) dynamics from a single ICC pacemaker unit acting at near-resting membrane potential. This model quantitatively formalizes the framework of a novel ICC pacemaking mechanism that has recently been proposed. Model simulations produce spontaneously rhythmic UP depolarizations with an amplitude of approximately 3 mV at a frequency of 0.05 Hz. The model predicts that the main inward currents, carried by a Ca(2+)-inhibited nonselective cation conductance, are activated by depletion of sub-plasma-membrane [Ca(2+)] caused by sarcoendoplasmic reticulum calcium ATPase Ca(2+) sequestration. Furthermore, pacemaker activity predicted by our model persists under simulated voltage clamp and is independent of [IP(3)] oscillations. The model presented here provides a basis to quantitatively analyze UP depolarizations and the biophysical mechanisms underlying their production.
机译:单位电位(UP)去极化是负责Cajal间质细胞(ICC)的起搏器活动的基本细胞内事件,在称为“起搏器单位”的细胞内位点产生。在这项研究中,我们提出了跨膜离子流和细胞内Ca(2+)动态的单个ICC起搏器单元在接近静止的膜电位起作用的数学模型。该模型量化了最近提出的新型ICC起搏机制的框架。模型仿真会在0.05 Hz的频率下自发地产生有节奏的UP去极化,振幅约为3 mV。该模型预测,由Ca(2+)抑制的非选择性阳离子电导携带的主要内向电流被肌膜内质网钙ATPase Ca(2+)引起的亚质膜[Ca(2+)]耗尽激活。 )隔离。此外,由我们的模型预测的起搏器活动在模拟电压钳制下仍然存在,并且与[IP(3)]振荡无关。本文介绍的模型为定量分析UP去极化及其产生的生物物理机制提供了基础。

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