核酸
脂质双层
化学
磷脂
生物物理学
脂质体
胶束
膜
双层
病毒包膜
阳离子聚合
疏水效应
生物化学
两亲性
有机化学
聚合物
共聚物
糖蛋白
生物
水溶液
作者
Yonger Xue,Jia Feng,Yilei Liu,Junyi Che,Guang Bai,Xiaotao Dong,Fei Wu,Tuo Jin
标识
DOI:10.1002/adhm.201901705
摘要
Abstract Synthetic carriers of nucleic acids remain inefficient for practical applications due to their insufficient functions as compared with viral vectors developed by evolution. Here, a synthetic carrier is designed to structurally mimic lentivirus, a widely‐used viral vector in therapeutic developments, for its neutral phospholipid membrane tightly anchored on the surface of a packed nucleic acid core. Unlike the reported lipopolyplexes of which the surface membrane around the nucleic acid core is formed from charged lipids, the stable attachment of the neutral lipids to each polyplex core in the present system is achieved through preadsorbed micelles of multicarboxyl amphiphilic molecules as lipid bilayer anchors. The adsorbed micelles are under a tension of deformation due to the electrostatic attraction of the head groups to the cationic surface and their “thermodynamic responsibility” to cover the hydrophobic tails in water. When liposomes of neutral phospholipids approach, the hydrophobic tail groups of the adsorbed micelles may insert into the lipid bilayer matrix to induce them to fuse around polyplex and relieve the thermodynamic tension. The formed neutral phospholipid membrane may encapsulate the polyplex core stably, prevent siRNA from prephagocytic leaking and degrading, and immobilize functional agents with increased capacity.
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