Biophysically Based Mathematical Modeling of Interstitial Cells of Cajal Slow Wave Activity Generated from a Discrete Unitary Potential Basis

被引:28
作者
Faville, R. A. [1 ]
Pullan, A. J. [1 ]
Sanders, K. M. [1 ]
Koh, S. D. [1 ]
Lloyd, C. M. [1 ]
Smith, N. P. [1 ]
机构
[1] Univ Auckland, Auckland 1, New Zealand
基金
英国生物技术与生命科学研究理事会; 美国国家卫生研究院;
关键词
PACEMAKER CA2+ ACTIVITY; CIRCULAR SMOOTH-MUSCLE; GUINEA-PIG STOMACH; ELECTRICAL-ACTIVITY; VOLTAGE-DEPENDENCE; K+ CURRENTS; SODIUM; REQUIREMENT; PROPAGATION; RELEASE;
D O I
10.1016/j.bpj.2009.03.058
中图分类号
Q6 [生物物理学];
学科分类号
071011 ;
摘要
Spontaneously rhythmic pacemaker activity produced by interstitial cells of Cajal (ICC) is the result of the entrainment of unitary potential depolarizations generated at intracellular sites termed pacemaker units. In this study, we present a mathematical modeling framework that quantitatively represents the transmembrane ion flows and intracellular Ca2+ dynamics from a single ICC operating over the physiological membrane potential range. The mathematical model presented here extends our recently developed biophysically based pacemaker unit modeling framework by including mechanisms necessary for coordinating unitary potential events, such as a T-Type Ca2+ current, V-m-dependent K+ currents, and global Ca2+ diffusion. Model simulations produce spontaneously rhythmic slow wave depolarizations with an amplitude of 65 mV at a frequency of 17.4 cpm. Our model predicts that activity at the spatial scale of the pacemaker unit is fundamental for ICC slow wave generation, and Ca2+ influx from activation of the T-Type Ca2+ current is required for unitary potential entrainment. These results suggest that intracellular Ca2+ levels, particularly in the region local to the mitochondria and endoplasmic reticulum, significantly influence pacing frequency and synchronization of pacemaker unit discharge. Moreover, numerical investigations show that our ICC model is capable of qualitatively replicating a wide range of experimental observations.
引用
收藏
页码:4834 / 4852
页数:19
相关论文
共 58 条
[1]   A simple nonlinear model of electrical activity in the intestine [J].
Aliev, RR ;
Richards, W ;
Wikswo, JP .
JOURNAL OF THEORETICAL BIOLOGY, 2000, 204 (01) :21-28
[2]   Requirement of ryanodine receptors for pacemaker Ca2+ activity in ICC and HEK293 cells [J].
Aoyama, M ;
Yamada, A ;
Wang, J ;
Ohya, S ;
Furuzono, S ;
Goto, T ;
Hotta, S ;
Ito, Y ;
Matsubara, T ;
Shimokata, K ;
Chen, SRW ;
Imaizumi, Y ;
Nakayama, S .
JOURNAL OF CELL SCIENCE, 2004, 117 (13) :2813-2825
[3]  
BECKETT E, 2004, J PHYSL, V550, P259
[4]   THE PLASMA-MEMBRANE CALCIUM-PUMP - FUNCTIONAL DOMAINS, REGULATION OF THE ACTIVITY, AND TISSUE-SPECIFICITY OF ISOFORM EXPRESSION [J].
CARAFOLI, E ;
STAUFFER, T .
JOURNAL OF NEUROBIOLOGY, 1994, 25 (03) :312-324
[5]   THE CALCIUM PUMPING ATPASE OF THE PLASMA-MEMBRANE [J].
CARAFOLI, E .
ANNUAL REVIEW OF PHYSIOLOGY, 1991, 53 :531-547
[6]   Proteins of interstitial cells of Cajal and intestinal smooth muscle, colocalized with caveolin-1 [J].
Cho, WJ ;
Daniel, EE .
AMERICAN JOURNAL OF PHYSIOLOGY-GASTROINTESTINAL AND LIVER PHYSIOLOGY, 2005, 288 (03) :G571-G585
[7]  
Cohen S. D., 1996, Computers in Physics, V10, P138
[8]   Quantitative cellular description of gastric slow wave activity [J].
Corrias, Alberto ;
Buist, Martin L. .
AMERICAN JOURNAL OF PHYSIOLOGY-GASTROINTESTINAL AND LIVER PHYSIOLOGY, 2008, 294 (04) :G989-G995
[9]   Electrical coupling between the myenteric interstitial cells of Cajal and adjacent muscle layers in the guinea-pig gastric antrum [J].
Cousins, HM ;
Edwards, FR ;
Hickey, H ;
Hill, CE ;
Hirst, GDS .
JOURNAL OF PHYSIOLOGY-LONDON, 2003, 550 (03) :829-844
[10]   Voltage dependence of the apparent affinity for external Na+ of the backward-running sodium pump [J].
De Weer, P ;
Gadsby, DC ;
Rakowski, RF .
JOURNAL OF GENERAL PHYSIOLOGY, 2001, 117 (04) :315-328