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Biophysically Based Modeling of the Interstitial Cells of Cajal: Current Status and Future Perspectives

机译:基于生物物理学的Cajal的间质细胞建模:现状和未来的前景。

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摘要

Gastrointestinal motility research is progressing rapidly, leading to significant advances in the last 15 years in understanding the cellular mechanisms underlying motility, following the discovery of the central role played by the interstitial cells of Cajal (ICC). As experimental knowledge of ICC physiology has expanded, biophysically based modeling has become a valuable tool for integrating experimental data, for testing hypotheses on ICC pacemaker mechanisms, and for applications in in silico studies including in multiscale models. This review is focused on the cellular electrophysiology of ICC. Recent evidence from both experimental and modeling domains have called aspects of the existing pacemaker theories into question. Therefore, current experimental knowledge of ICC pacemaker mechanisms is examined in depth, and current theories of ICC pacemaking are evaluated and further developed. Existing biophysically based ICC models and their physiological foundations are then critiqued in light of the recent advances in experimental knowledge, and opportunities to improve these models are identified. The review concludes by examining several potential clinical applications of biophysically based ICC modeling from the subcellular through to the organ level, including ion channelopathies and ICC network degradation.
机译:胃肠蠕动研究进展迅速,在发现Cajal间质细胞(ICC)发挥重要作用后,过去15年间,人们在理解运动基础的细胞机制方面取得了重大进展。随着ICC生理学实验知识的扩展,基于生物物理学的建模已成为整合实验数据,测试有关ICC起搏器机制的假设以及用于计算机研究(包括多尺度模型)的有价值的工具。这篇综述着重于ICC的细胞电生理学。来自实验和建模领域的最新证据使现有起搏器理论的各个方面受到质疑。因此,深入研究了ICC起搏器机制的当前实验知识,并对ICC起搏器的当前理论进行了评估和进一步发展。然后,根据实验知识的最新进展,对现有的基于生物物理学的ICC模型及其生理基础进行批评,并确定改进这些模型的机会。总结通过检查从子细胞到器官水平的基于生物物理学的ICC建模的几种潜在临床应用来结束,包括离子通道病和ICC网络降解。

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