【2h】

van der Waals forces influencing adhesion of cells

机译:范德华力影响细胞黏附

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摘要

Adhesion molecules, often thought to be acting by a ‘lock and key’ mechanism, have been thought to control the adhesion of cells. While there is no doubt that a coating of adhesion molecules such as fibronectin on a surface affects cell adhesion, this paper aims to show that such surface contamination is only one factor in the equation. Starting from the baseline idea that van der Waals force is a ubiquitous attraction between all molecules, and thereby must contribute to cell adhesion, it is clear that effects from geometry, elasticity and surface molecules must all add on to the basic cell attractive force. These effects of geometry, elasticity and surface molecules are analysed. The adhesion force measured between macroscopic polymer spheres was found to be strongest when the surfaces were absolutely smooth and clean, with no projecting protruberances. Values of the measured surface energy were then about 35 mJ m−2, as expected for van der Waals attractions between the non-polar molecules. Surface projections such as abrasion roughness or dust reduced the molecular adhesion substantially. Water cut the measured surface energy to 3.4 mJ m−2. Surface active molecules lowered the adhesion still further to less than 0.3 mJ m−2. These observations do not support the lock and key concept.
机译:人们通常认为粘附分子通常通过“锁和钥匙”机制起作用,它可以控制细胞的粘附。尽管毫无疑问,诸如粘连蛋白之类的粘附分子涂层会影响细胞粘附,但本文旨在证明这种表面污染只是方程式中的一个因素。从范德华力是所有分子之间普遍存在的吸引力这一基本观念开始,因此必须促进细胞粘附,很明显,来自几何形状,弹性和表面分子的影响都必须加到基本的细胞吸引力上。分析了几何形状,弹性和表面分子的这些影响。当表面绝对光滑和清洁且没有突出的突起时,发现在宏观聚合物球之间测得的粘附力最强。然后,如对于非极性分子之间的范德华引力所预期的,所测量的表面能的值约为35 mJ m -2 。诸如磨损粗糙度或灰尘之类的表面突起大大降低了分子粘附力。水将测得的表面能削减至3.4 mJ m -2 。表面活性分子将粘附力进一步降低至小于0.3 mJ m -2 。这些观察结果不支持锁和钥匙的概念。

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