...
首页> 外文期刊>Macromolecules >Structural characteristics and fusion pathways of onion-like multilayered polymersome formed by amphiphilic comb-like graft copolymers
【24h】

Structural characteristics and fusion pathways of onion-like multilayered polymersome formed by amphiphilic comb-like graft copolymers

机译:两亲性梳状接枝共聚物形成洋葱状多层聚合物囊泡的结构特征和融合途径

获取原文
获取原文并翻译 | 示例
           

摘要

The self-assembly behavior of amphiphilic comb-like graft copolymers bearing pH-responsive hydrophilic side-chains on hydrophobic backbone in a selective solvent is investigated by dissipative particle dynamics. The aggregate exhibits a rich variety of the morphological conformations dependent on pH, polymeric concentration, side-chain length, and grafting density. The morphological phase diagram shows that micellar aggregates take shape at low pH. As pH increases, unilamellar vesicle (ULV) can form at low polymer concentration and the vesicle size grows with increasing concentration. Further increment of pH to neutral leads to the formation of multilamellar vesicles (MLV) with the layer-by-layer structure similar to that of an onion. The total number of layers rises with increasing polymer concentration. Our simulation outcomes are consistent with the experimental observations. The simulation results also reveal that as the grafting density is decreased, the thickness of the hydrophobic layer grows and thus the total number of layers declines for MLVs. The water permeation process through ULV is monitored to explore the effects of grafting density and pH on the membrane permeability. As the grafting density is decreased or the neutral pH is approached, the permeability of the vesicle membrane descends. Controlled releases of two types of drugs with different hydrophobicity situated at different layers of MLV are also examined. The release rate of hydrophilic drug is faster than that of hydrophobic drug. Polymersomes tend to fuse but the fusion mechanism is different from that of liposomes. The fusion pathway of ULVs follows the anisotropic stalk-pore scenario and both stalk and pore formation prefer to occur on the edge of the contact zone due to significant deformations of comb-like polymers in this region. The fusion pathway of MLVs is layer-by-layer and the fusion time of the inner layer is faster than that of the outer layer. The fusion process is expedited at about neutral pH but is prolonged substantially as the side-chain length is increased. Finally, it is interesting to observe that the total number of layers of the fused MLV can be greater than that of MLVs before fusion.
机译:通过耗散粒子动力学研究了两性梳状接枝共聚物在选择性溶剂中在疏水性主链上带有pH值反应性亲水侧链的自组装行为。聚集体表现出多种多样的形态构象,具体取决于pH,聚合物浓度,侧链长度和接枝密度。形态相图显示,胶束聚集体在低pH值下会形成形状。随着pH值的增加,单层囊泡(ULV)可以在低聚合物浓度下形成,并且囊泡大小会随着浓度的增加而增长。 pH值进一步增加至中性会导致形成多层小泡(MLV),其层状结构类似于洋葱。随着聚合物浓度的增加,层的总数增加。我们的模拟结果与实验观察结果一致。仿真结果还表明,随着接枝密度的降低,疏水层的厚度会增加,因此MLV的总层数会减少。通过ULV监测水的渗透过程,以探索接枝密度和pH对膜渗透性的影响。随着接枝密度的降低或接近中性pH,囊泡膜的渗透性下降。还检查了位于MLV不同层的具有不同疏水性的两种药物的控制释放。亲水性药物的释放速率比疏水性药物快。聚合物小体趋于融合,但融合机制与脂质体不同。 ULVs的融合途径遵循各向异性的茎-孔情形,由于该区域中梳状聚合物的明显变形,茎和孔的形成都倾向于发生在接触区的边缘。 MLV的融合途径是逐层的,内层的融合时间比外层的融合时间快。在约中性pH下融合过程被加速,但是随着侧链长度的增加,融合过程被大大延长。最后,有趣的是观察到融合的MLV的总层数可以大于融合之前的MLV的层数。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号