Finite volume simulation of calcium distribution in a cholangiocyte cell

Nakul Nakul, Vedika Mishra, N. Adlakha
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引用次数: 2

Abstract

Cholangiocytes are the cells of the liver having a major role in the conditioning of bile used in digestion. Other functions of cholangiocytes are in apoptosis and bicarbonate secretion. The Calcium in the intracellular environment of various cells including cholangiocytes regulates a large number of functions. This regulating mechanism in cholangiocytes has been poorly understood to date. In order to analyze the calcium regulation in cholangiocyte cells, a mathematical model for a one-dimensional steady-state case is constructed in this study. This involves a non-linear reaction-diffusion equation with appropriate boundary conditions. The influx from IP$_{3}$ receptor, ryanodine receptor (RYR), and plasma membrane as well as the efflux of calcium from SERCA pump and plasma membrane have been employed in the model. The finite volume method and Newton-Raphson method have been used to solve the problem. Numerical findings have been used to examine the effects of parameters like diffusion coefficient, rate of SERCA pump efflux, buffer, and influx from plasma membrane on calcium concentration in cholangiocyte cells. The information generated from the model can be useful for understanding the mechanism of cholestatic disorders which can be further useful in the diagnosis and treatment of these disorders.
胆管细胞内钙分布的有限体积模拟
胆管细胞是肝脏的细胞,在消化过程中调节胆汁中起主要作用。胆管细胞的其他功能包括凋亡和碳酸氢盐的分泌。包括胆管细胞在内的各种细胞的细胞内环境中的钙调节着大量的功能。迄今为止,人们对胆管细胞的这种调节机制知之甚少。为了分析胆管细胞钙的调控,本文建立了一维稳态情况下的数学模型。这涉及到一个具有适当边界条件的非线性反应扩散方程。该模型采用了ip_bb_0 $受体、ryanodine受体(RYR)和质膜的内流以及SERCA泵和质膜的钙外排。用有限体积法和牛顿-拉夫逊法求解了该问题。数值结果被用来检验扩散系数、SERCA泵流出速率、缓冲液和质膜内流等参数对胆管细胞钙浓度的影响。该模型产生的信息可用于了解胆汁淤积性疾病的机制,从而进一步有助于这些疾病的诊断和治疗。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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