Dynamics of cellular homeostasis: Recovery time for a perturbation from equilibrium

被引:10
作者
Weinstein, AM
机构
关键词
D O I
10.1016/S0092-8240(96)00093-6
中图分类号
Q [生物科学];
学科分类号
07 ; 0710 ; 09 ;
摘要
In the collecting duct in vivo, the principal cell encounters a wide range in luminal flow rate and luminal concentration of NaCl. As a consequence, there are substantial variations in the transcellular fluxes of Na+ and Cl-, conditions which would be expected to perturb cell volume and cytosolic concentrations. Several control mechanisms have been identified which can potentially blunt these perturbations, and these entail cellular regulation of the luminal membrane Na+ channel and peritubular membrane K+ and Cl- channels. To illustrate the impact of these regulated channels, a mathematical model of the principal cell of the rat cortical collecting duct has been developed, in which ion channel permeabilities are either constant or regulated. In comparison to the model with fixed permeabilities, the model with regulated channels demonstrates enhanced cellular homeostasis following steady-state variation in luminal NaCl. However, in the transient response to a cytosolic perturbation, the difference in recovery time between the models is small. An approximate analysis is presented which casts these models as dynamical systems with constant coefficients. Despite the presence of regulated ion channels, concordance of each model with its linear approximation is verified for experimentally meaningful perturbations from the reference condition. Solution of a Lyapunov equation for each linear system yields a matrix whose application to a perturbation permits explicit estimation of the time to recovery. Comparison of these solution matrices for regulated and non-regulated cells confirms the similarity of the dynamic response of the two models. These calculations suggest that enhanced homeostasis by regulated channels may be protective, without necessarily hastening recovery from cellular perturbations. (C) 1997 Society for Mathematical Biology.
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页码:451 / 481
页数:31
相关论文
共 29 条
[1]   COUPLING BETWEEN TRANSEPITHELIAL NA-TRANSPORT AND BASOLATERAL K-CONDUCTANCE IN RENAL PROXIMAL TUBULE [J].
BECK, JS ;
LAPRADE, R ;
LAPOINTE, JY .
AMERICAN JOURNAL OF PHYSIOLOGY, 1994, 266 (04) :F517-F527
[2]   BASOLATERAL NA-H EXCHANGE IN THE RABBIT CORTICAL COLLECTING TUBULE [J].
CHAILLET, JR ;
LOPES, AG ;
BORON, WF .
JOURNAL OF GENERAL PHYSIOLOGY, 1985, 86 (06) :795-812
[3]   BASOLATERAL-K CONDUCTANCE - ROLE IN REGULATION OF NACL ABSORPTION AND SECRETION [J].
DAWSON, DC ;
RICHARDS, NW .
AMERICAN JOURNAL OF PHYSIOLOGY, 1990, 259 (02) :C181-C195
[4]   TRANS-CELLULAR CROSS-TALK BETWEEN EPITHELIAL-CELL MEMBRANES [J].
DIAMOND, JM .
NATURE, 1982, 300 (5894) :683-685
[5]  
FRINDT G, 1988, MINER ELECTROL METAB, V14, P40
[6]   FEEDBACK-REGULATION OF NA CHANNELS IN RAT CCT .2. EFFECTS OF INHIBITION OF NA ENTRY [J].
FRINDT, G ;
SILVER, RB ;
WINDHAGER, EE ;
PALMER, LG .
AMERICAN JOURNAL OF PHYSIOLOGY, 1993, 264 (03) :F565-F574
[7]   Feedback regulation of Na channels in rat CCT .4. Mediation by activation of protein kinase C [J].
Frindt, G ;
Palmer, LG ;
Windhager, EE .
AMERICAN JOURNAL OF PHYSIOLOGY-RENAL FLUID AND ELECTROLYTE PHYSIOLOGY, 1996, 270 (02) :F371-F376
[8]   INTERACTION OF SODIUM AND POTASSIUM WITH SODIUM PUMP IN RED-CELLS [J].
GARAY, RP ;
GARRAHAN, PJ .
JOURNAL OF PHYSIOLOGY-LONDON, 1973, 231 (02) :297-325
[9]   ION CONCENTRATIONS IN THE RAT CCD - DIFFERENCES BETWEEN CELL-TYPES AND EFFECT OF ALKALOSIS [J].
GIFFORD, JD ;
GALLA, JH ;
LUKE, RG ;
RICK, R .
AMERICAN JOURNAL OF PHYSIOLOGY, 1990, 259 (05) :F778-F782
[10]   THE SENSITIVITY OF THE STABLE LYAPUNOV EQUATION [J].
HEWER, G ;
KENNEY, C .
SIAM JOURNAL ON CONTROL AND OPTIMIZATION, 1988, 26 (02) :321-344