Prechtel K, Bausch A R, Marchi-Artzner V, Kantlehner M, Kessler H, Merkel R
Lehrstuhl für Biophysik, E22, Technische Universität München, D-85747 Garching, Germany.
Phys Rev Lett. 2002 Jul 8;89(2):028101. doi: 10.1103/PhysRevLett.89.028101. Epub 2002 Jun 20.
We studied the mechanical strength of the adhesion of living cells to model membranes. The latter contained a RGD lipopeptide which is a high affinity binding site for a cell adhesion molecule (integrin alpha(V)beta(3)). Cells adhered specifically to the vesicles. We used micropipette aspiration for breaking this adhesion with well defined forces. Systematic variation of the rate of force application revealed pronounced kinetic effects. The dependence of the detachment forces on the loading rate was well described by a power law (exponent approximately 0.4), in agreement with recent theoretical work.
我们研究了活细胞与模型膜之间粘附的机械强度。后者含有一种RGD脂肽,它是细胞粘附分子(整合素α(V)β(3))的高亲和力结合位点。细胞特异性地粘附于囊泡。我们使用微量移液器抽吸以明确定义的力打破这种粘附。力施加速率的系统变化揭示了明显的动力学效应。脱离力对加载速率的依赖性通过幂律(指数约为0.4)得到了很好的描述,这与最近的理论工作一致。