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Fusion and fission pathways of vesicles from amphiphilic triblock copolymers: a dissipative particle dynamics simulation study

机译:两亲性三嵌段共聚物的囊泡融合与裂变途径:耗散粒子动力学模拟研究

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摘要

Dissipative particle dynamics (DPD) simulations are employed to study the fusion and fission dynamics of polymeric vesicles formed from amphiphilic triblock copolymers. The amphiphilic molecule is built from two hydrophilic blocks and a hydrophobic middle block. Two different pathways for both fusion and fission processes of two-component vesicles with polymer-based symmetric membranes have been found in the simulations. For each of the pathways, the conditions required to obtain complete fusion and fission have been investigated. Moreover, the fission process of single-component vesicles with polymer-based asymmetric membranes has also been studied in the simulations. Interestingly, the daughter vesicles have the same composition as the parent vesicle and only one fission pathway has been observed. Furthermore, the fusion and fission pathways have been compared and distinct vesicle recycling pathways have been suggested according to the results from the simulations. These findings may be helpful in explaining the fusion and fission dynamics of vesicles and understanding the general principle of membranes.
机译:耗散粒子动力学(DPD)模拟用于研究由两亲三嵌段共聚物形成的聚合物囊泡的融合和裂变动力学。两亲分子由两个亲水性嵌段和一个疏水性中间嵌段构成。在模拟中发现了两种不同途径的两组分囊泡与基于聚合物的对称膜的融合和裂变过程。对于每种途径,已经研究了获得完全融合和裂变所需的条件。此外,在模拟中还研究了具有聚合物基不对称膜的单组分囊泡的裂变过程。有趣的是,子囊与母囊具有相同的组成,并且仅观察到一种裂变途径。此外,根据模拟结果比较了融合和裂变途径,并提出了不同的囊泡再循环途径。这些发现可能有助于解释囊泡的融合和裂变动力学,并了解膜的一般原理。

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