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细胞表面之间的范德华相互作用。

Van der Waals interactions between cell surfaces.

作者信息

Nir S, Andersen M

出版信息

J Membr Biol. 1977 Feb 24;31(1-2):1-18. doi: 10.1007/BF01869396.

Abstract

Van der Waals energies of interaction between model cell surfaces are calculated for various distances of separation, layer thicknesses and compositions of cell surfaces and intercellular media. In these calculations the cell peripheries are considered to consist of two layers: (1) A phospholipid-cholesterol-protein plasma membrane and (2) a surface coat, which consists of protein, sugar and water. The required Van der Waals parameters of sugars, phospholipids and cholesterol are derived from refractive indices of their solutions in the visible and ultraviolet regions. Polarizabilities and Van der Waals parameters of these substances are determined and shown to be almost independent of concentration of solutions. Resulting isotropic polarizabilities differ by less than five percent from values obtained by the addition of bond polarizabilities. The magnitude of Van der Walls interactions between cell surfaces has been found to vary with composition according to the following sequence: water less than phospholipid less than cholesterol, protein less than sugar. A decrease in the concentration of a given substance in the cell surface at the expense of a corresponding increase in the concentration of a substance preceding it in this sequence lowers the magnitude of attractive interactions, whereas a similar change in the extracellular medium would have an opposite effect. A consideration of experimentally found variations in composition of cell surfaces results in calculated values of Hamaker's coefficients between 8 X 10(-15) ergs and 6 X 10(-14) ergs at 50 A distance of separation, which corresponds to free energies per unit area of 210-1600 kT/mu2.

摘要

针对模型细胞表面之间不同的分离距离、层厚度以及细胞表面和细胞间介质的组成,计算了范德华相互作用能。在这些计算中,细胞周边被认为由两层组成:(1)磷脂 - 胆固醇 - 蛋白质质膜,以及(2)由蛋白质、糖和水组成的表面层。糖、磷脂和胆固醇所需的范德华参数是从它们在可见光和紫外区域溶液的折射率推导出来的。确定了这些物质的极化率和范德华参数,并表明它们几乎与溶液浓度无关。所得的各向同性极化率与通过键极化率相加得到的值相差不到5%。已发现细胞表面之间范德华相互作用的大小随组成按以下顺序变化:水<磷脂<胆固醇,蛋白质<糖。以该序列中前一种物质浓度相应增加为代价,降低给定物质在细胞表面的浓度,会降低吸引相互作用的大小,而细胞外介质中的类似变化则会产生相反的效果。考虑到实验发现的细胞表面组成变化,在50埃的分离距离下,计算得到的哈梅克系数值在8×10⁻¹⁵尔格至6×10⁻¹⁴尔格之间,这对应于每单位面积210 - 1600 kT/μm²的自由能。

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