J Phys Chem B. 2018 Nov 21;122(46):10607-10614. doi: 10.1021/acs.jpcb.8b07567. Epub 2018 Nov 12.
Block copolymer vesicles have been widely used in the field of drug delivery, microreactors, and cell membrane mimetics. Introducing terminal groups to the block copolymer can control the structures of vesicles, which is important for improving the application of vesicles. In this paper, the effects of terminal groups on the structure of vesicles were studied by dissipative particle dynamics simulation. We considered different locations, hydrophobicity, and numbers of terminal groups. When the terminal group located at the end of a hydrophobic block, the increase of wall thickness and the decrease of cavity size of vesicles were observed with the hydrophobicity of the terminal group increasing. In contrast, when the terminal group located at the end of the hydrophilic block, with the hydrophobicity of terminal groups increasing, the vesicular cavity size increased but the wall thickness of vesicles remained nearly unchanged. Finally, increasing the number of terminal groups lead to a decrease of cavity size and an increase of wall thickness of vesicles. The hydrophobic changes of polymer molecules are regarded as the origin of the structural changes of vesicles. This simulation study supplies a potential approach that controls the structures of vesicles and is expected to facilitate its further applications.
两亲性嵌段共聚物囊泡在药物传递、微反应器和细胞膜模拟等领域得到了广泛的应用。在嵌段共聚物中引入端基可以控制囊泡的结构,这对于提高囊泡的应用具有重要意义。本文通过耗散粒子动力学模拟研究了端基对囊泡结构的影响。我们考虑了不同位置、疏水性和端基数量对囊泡结构的影响。当端基位于疏水性嵌段末端时,随着端基疏水性的增加,囊泡的壁厚增加,腔室尺寸减小。相比之下,当端基位于亲水性嵌段末端时,随着端基疏水性的增加,囊泡的腔室尺寸增大,而囊泡的壁厚几乎保持不变。最后,增加端基的数量会导致囊泡腔室尺寸减小,壁厚增加。聚合物分子的疏水性变化被认为是囊泡结构变化的起源。这项模拟研究提供了一种潜在的控制囊泡结构的方法,有望促进其进一步应用。