论文标题
非球形弹性颗粒之间的膜介导的相互作用
Membrane-Mediated Interactions Between Nonspherical Elastic Particles
论文作者
论文摘要
颗粒跨脂质双层膜的运输对于生物细胞与环境交换信息和材料很重要。大颗粒通常被膜包裹,这一过程在硬颗粒的情况下进行了深入研究。但是,许多体内和体外颗粒都是可变形的,例如囊泡,丝状病毒,大分子冷凝物,聚合物接枝的纳米颗粒和微凝胶。囊泡可以用作可变形颗粒的通用模型系统。在这里,我们研究了最初的平面脂质双层膜上具有各种大小,形状和弹性特性的非球形囊泡。使用Helfrich Hamiltonian,三角膜的膜和能量最小化,我们预测了囊泡形状和包裹状态的相互作用。颗粒柔软度的增加增强了在未包裹和完整包裹的状态上浅层包裹和深包状态的稳定性。游离膜介导了部分包裹的囊泡之间的相互作用。对于深包囊泡之间的对相互作用,我们预测排斥。对于浅层囊泡,我们预测尖端到尖端方向和排斥的吸引力用于并排方向。我们的预测可能指导可变形颗粒的设计和制造,以在医疗应用中有效使用,例如靶向药物。
The transport of particles across lipid-bilayer membranes is important for biological cells to exchange information and material with their environment. Large particles often get wrapped by membranes, a process which has been intensively investigated in the case of hard particles. However, many particles in vivo and in vitro are deformable, e.g., vesicles, filamentous viruses, macromolecular condensates, polymer-grafted nanoparticles, and microgels. Vesicles may serve as a generic model system for deformable particles. Here, we study non-spherical vesicles with various sizes, shapes, and elastic properties at initially planar lipid-bilayer membranes. Using the Helfrich Hamiltonian, triangulated membranes, and energy minimization, we predict the interplay of vesicle shapes and wrapping states. Increasing particle softness enhances the stability of shallow-wrapped and deep-wrapped states over non-wrapped and complete-wrapped states. The free membrane mediates an interaction between partial-wrapped vesicles. For the pair interaction between deep-wrapped vesicles, we predict repulsion. For shallow-wrapped vesicles, we predict attraction for tip-to-tip orientation and repulsion for side-by-side orientation. Our predictions may guide the design and fabrication of deformable particles for efficient use in medical applications, such as targeted drug delivery.