Hashemi Seyed Mahmoud, Sens Pierre, Mohammad-Rafiee Farshid
Department of Physics, Institute for Advanced Studies in Basic Sciences (IASBS), Zanjan 45137-66731, Iran.
Gulliver UMR 7083, CNRS-ESPCI, 10 rue Vauquelin, 75231 Paris Cedex 05, France.
J R Soc Interface. 2014 Nov 6;11(100):20140769. doi: 10.1098/rsif.2014.0769.
The adsorption of external objects to the cell membrane often triggers cellular responses involving large deformations. In phagocytosis, upon contact with the target, the cell creates large extensions that wrap around the target and ultimately lead to its engulfment. Although active force generation, in particular by actin polymerization, is required for completion of this process, the elastic deformation of the cell membrane upon adhesion to an external object might play an important part in its initiation. In this paper, the elastic deformation of a bilayer owing to the binding of a cylindrical object is studied, taking into account the membrane bending rigidity and the surface tension, the membrane adhesion to both the external target and inner cytoskeleton. The problem is studied within the framework of the Helfrich-Hamiltonian and using force balance relations and the proper boundary conditions that are related to the adhesion energy coefficients. It is shown that membrane wrapping around the target may be a continuous or abrupt transition upon increasing the target binding energy, depending on the value of the parameter. The degree of wrapping and the shape of the membrane in the vicinity of the object are computed numerically, and analytical expressions are given for the boundaries separating the different wrapping regimes in the parameter space.
外部物体吸附到细胞膜上常常会引发涉及大变形的细胞反应。在吞噬作用中,细胞与靶标接触时会形成大的延伸部分,这些延伸部分会包裹住靶标并最终将其吞噬。尽管完成这个过程需要产生主动力,特别是通过肌动蛋白聚合来产生,但细胞膜在粘附外部物体时的弹性变形可能在其起始阶段起着重要作用。在本文中,考虑到膜的弯曲刚度、表面张力以及膜与外部靶标和内部细胞骨架的粘附作用,研究了由于圆柱形物体的结合而导致的双层膜的弹性变形。该问题在赫尔弗里希 - 哈密顿量的框架内进行研究,并使用与粘附能系数相关的力平衡关系和适当的边界条件。结果表明,随着靶标结合能的增加,膜围绕靶标的包裹可能是连续的或突然的转变,这取决于参数的值。通过数值计算了物体附近膜的包裹程度和形状,并给出了在参数空间中分隔不同包裹状态的边界的解析表达式。