Lomakina E B, Spillmann C M, King M R, Waugh R E
Department of Pharmacology and Physiology, University of Rochester, Rochester, New York 14642, USA.
Biophys J. 2004 Dec;87(6):4246-58. doi: 10.1529/biophysj.103.031765. Epub 2004 Sep 10.
Aspects of neutrophil mechanical behavior relevant to the formation of adhesive contacts were assessed by measuring the dependence of the contact area between the cell and a spherical substrate under controlled loading. Micropipettes were used to bring neutrophils into contact with spherical beads under known forces, and the corresponding contact area was measured over time. The neutrophil was modeled as a viscous liquid drop with a constant cortical tension. Both the equilibrium state and the dynamics of the approach to equilibrium were examined. The equilibrium contact area increased monotonically with force in a manner consistent with a cell cortical tension of 16-24 pN/microm. The dynamic response matched predictions based on a model of the cell as a growing drop using published values for the effective viscosity of the cell. The contact pressure between the cell and substrate at equilibrium is predicted to depend on the curvature of the contacting substrate, but to be independent of the impingement force. The approach to equilibrium was rapid, such that the time-averaged stress for a two-second impingement was within 20% of the equilibrium value. These results have implications for the role of mechanical force in the formation of adhesive contacts.
通过测量在可控负载下细胞与球形底物之间接触面积的依赖性,评估了与黏附接触形成相关的中性粒细胞力学行为的各个方面。使用微量移液器使中性粒细胞在已知力的作用下与球形珠接触,并随时间测量相应的接触面积。中性粒细胞被建模为具有恒定皮质张力的粘性液滴。研究了平衡状态以及接近平衡的动力学过程。平衡接触面积随力单调增加,其方式与细胞皮质张力为16 - 24 pN/微米一致。动态响应与基于将细胞视为生长液滴模型的预测相符,该模型使用了已发表的细胞有效粘度值。预计细胞与底物在平衡时的接触压力取决于接触底物的曲率,但与撞击力无关。达到平衡的过程很快,以至于两秒撞击的时间平均应力在平衡值的20%以内。这些结果对机械力在黏附接触形成中的作用具有启示意义。