Höfer T, Politi A, Heinrich R
Theoretical Biophysics, Institute of Biology, Humboldt University-Berlin, D-10115 Berlin, Germany.
Biophys J. 2001 Jan;80(1):75-87. doi: 10.1016/S0006-3495(01)75996-6.
Intercellular regenerative calcium waves in systems such as the liver and the blowfly salivary gland have been hypothesized to spread through calcium-induced calcium release (CICR) and gap-junctional calcium diffusion. A simple mathematical model of this mechanism is developed. It includes CICR and calcium removal from the cytoplasm, cytoplasmic and gap-junctional calcium diffusion, and calcium buffering. For a piecewise linear approximation of the calcium kinetics, expressions in terms of the cellular parameters are derived for 1) the condition for the propagation of intercellular waves, and 2) the characteristic time of the delay of a wave encountered at the gap junctions. Intercellular propagation relies on the local excitation of CICR in the perijunctional space by gap-junctional calcium influx. This mechanism is compatible with low effective calcium diffusivity, and necessitates that CICR can be excited in every cell along the path of a wave. The gap-junctional calcium permeability required for intercellular waves in the model falls in the range of reported gap-junctional permeability values. The concentration of diffusive cytoplasmic calcium buffers and the maximal rate of CICR, in the case of inositol 1,4,5-trisphosphate (IP3) receptor calcium release channels set by the IP(3) concentration, are shown to be further determinants of wave behavior.
在肝脏和果蝇唾液腺等系统中,细胞间再生钙波被认为是通过钙诱导的钙释放(CICR)和间隙连接钙扩散来传播的。建立了该机制的一个简单数学模型。它包括CICR、细胞质中钙的清除、细胞质和间隙连接钙扩散以及钙缓冲。对于钙动力学的分段线性近似,推导了关于细胞参数的表达式,用于1)细胞间波传播的条件,以及2)在间隙连接处遇到的波延迟的特征时间。细胞间传播依赖于间隙连接钙流入对连接周空间中CICR的局部激发。该机制与低有效钙扩散率兼容,并且要求在波的传播路径上的每个细胞中CICR都能被激发。模型中细胞间波所需的间隙连接钙通透性落在报道的间隙连接通透性值范围内。扩散性细胞质钙缓冲剂的浓度以及由肌醇1,4,5 -三磷酸(IP3)浓度设定的肌醇1,4,5 -三磷酸(IP3)受体钙释放通道情况下CICR的最大速率,被证明是波行为的进一步决定因素。