| Literature DB >> 33358973 |
Fatemeh Araste1, Ali Aliabadi2, Khalil Abnous2, Seyed Mohammad Taghdisi3, Mohammad Ramezani4, Mona Alibolandi5.
Abstract
The progress in advanced materials using nanoscale components can be conducted by an innovative idea involving combining nanotechnology approaches with supramolecular chemistry. This concept which is called self-assembly, is employed for formation of nanoscale self-assembled architectures with desirable properties. Self-assembly has emerged as a potent procedure for controlling the structure and characteristics of ensembles. Among self-assembled structures, polymersomes have revealed prodigious potential in drug delivery and development of smart nanomedicine due to their morphological similarities to cellular membranes and viral capsids. Moreover, their functional, tunable and stable membrane render them more advantageous to their lipid counter parts. Polymersomes have been used as different therapeutic carriers as drugs and imaging agents, as well as nanoreactors and artificial organelles. Here we review different basis of self-assembling polymersomes and their properties, the synthesis of various amphiphilic copolymers for vesicles preparation and potential applications of smart controlled release vesicles.Entities:
Keywords: Amphiphilic copolymer; Nanomedicine; Polymersome; Self-assembly; Vesicles
Year: 2020 PMID: 33358973 DOI: 10.1016/j.jconrel.2020.12.027
Source DB: PubMed Journal: J Control Release ISSN: 0168-3659 Impact factor: 9.776