Department of Physics, Institute for Advanced Studies in Basic Sciences (IASBS), Zanjan 45137-66731, Iran.
Université Paris Cité, CNRS, Institut Jacques Monod, Paris 75013, France.
J R Soc Interface. 2022 Nov;19(196):20220462. doi: 10.1098/rsif.2022.0462. Epub 2022 Nov 2.
Cellular uptake through membranes plays an important role in adsorbing nutrients and fighting infection and can be used for nanomedicine developments. Endocytosis is one of the pathways of cellular uptake which associate with elastic deformation of the membrane wrapping around the foreign particle. The deformability of the membrane is strongly regulated by the presence of a cortical cytoskeleton placed underneath the membrane. It is shown that shape and orientation of the particles influence on their internalization. Here, we study the role of particle local curvature in cellular uptake by investigating the wrapping of an elastic membrane around a long cylindrical object with an elliptical cross-section. The membrane itself is adhered to a substrate mimicking the cytoskeleton. Membrane wrapping proceeds differently whether the initial contact occurs at the target's highly curved part (vertical) or along its long side (horizontal). We obtain a wrapping phase diagram as a function of the membrane-cytoskeleton and the membrane-target adhesion energy, which includes three distinct regimes (unwrapped, partially wrapped and fully wrapped), separated by two phase transitions. We also provide analytical expressions for the boundaries between the different regimes which confirm that the transitions strongly depend on the orientation and aspect ratio of the nanowire.
细胞膜的细胞摄取作用对于吸收营养、抵御感染至关重要,并且可应用于纳米医学的发展。内吞作用是细胞摄取的途径之一,它与细胞膜围绕外来颗粒的弹性变形有关。膜的可变形性受膜下皮质细胞骨架的存在强烈调节。研究表明,颗粒的形状和取向会影响其内化。在这里,我们通过研究弹性膜在具有椭圆形横截面的长圆柱物体周围的包裹来研究颗粒局部曲率在细胞摄取中的作用。膜本身附着在模仿细胞骨架的基底上。无论初始接触是在目标物的高曲率部分(垂直)还是沿着其长边(水平)发生,膜的包裹过程都不同。我们获得了一个作为膜-细胞骨架和膜-目标物粘附能函数的包裹相图,其中包括三个不同的区域(未包裹、部分包裹和完全包裹),由两个相转变分开。我们还提供了不同区域之间边界的解析表达式,这些表达式证实了转变强烈依赖于纳米线的取向和纵横比。