细胞接触面内的扩散阻塞效应的估计
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Estimating of the Diffusive Retardation in Cell Contact Area
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    摘要:

    目的 揭示细胞接触面这一复杂的拓扑结构内的分子扩散机制,深入了解T细胞的免疫应答的生物物理过程,建立估计黏附分子在接触面内的扩散系数的方法 。方法 通过提出一种多孔介质细胞接触面理论模型,导出计及阻塞效应的自由扩散方程。在各向同性情形下,得到扩散阻塞系数γ与孔隙密实度σ关系的解析表达式;在轴对称情形下,得到γ的对数型径向分布特性。结果 发现分子在孔隙结构内的扩散的减缓,与扩散阻塞系数γ成正比,而与孔隙密实度σ成反比。FRAP实验数据表明,对黏附分子系统CD2/CD58和CD28-CD80而言,参数σ,γ和ξ的值分别介于0.2~0.4,0.40~0.56和0.73~0.75之间。结论 可通过测量细胞接触面内激光漂白区域的荧光恢复水平来估计黏附分子扩散迟缓系数ξ。

    Abstract:

    Objective For understanding the biophysical process of T-cell immune response, to reveal the diffusive features of the adhesion molecules in the complicated topographic cell contact area, and develop a method to estimate the diffusive coefficient. Method In this paper, by taking an account of the crowding effect of the adhesion molecules, we present a porous structural model of the cell contact area, and derived the diffusion equation of the free ligand molecules on the cell contact area. In the cases of the cell contact area being the isotropy porous structure, the diffusive damping factor γ is related with the obstruct density σ by an analytical expression, and in the case of axial-symmetry, the logarithmic distribution character of γ is obtained too. Results The retardation of the free ligand diffusion will be strengthened as increasing of the diffusive damping factor γ and decreasing of the obstruct density σ in the contact area, and using FRAP experiment data, the parameter α, γ and ξ have been estimated as 0.2~0.4, 0.40~0.56 and 0.73~0.75 for the adhesion system of CD2/CD58 and CD28-CD80, respectively. Conclusion A new method to estimate the diffusive retardation coefficient ξ of the adhesion molecules by measuring the fluorescence recovery level on the photobleaching region of the contact area is proposed.

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方颖,向雪,凌颖琛,吴建华.细胞接触面内的扩散阻塞效应的估计[J].医用生物力学,2007,22(1):30-34

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