| Literature DB >> 32786675 |
Zhiwei Wang1, Min Lin1, Colin Bonduelle2, Rongye Li1, Zhekun Shi1, Chenhui Zhu3, Sébastien Lecommandoux2, Zhibo Li1, Jing Sun1.
Abstract
Delicate control over architectures via crystallization-driven self-assembly (CDSA) in aqueous solution, particularly combined with external stimuli, is rare and challenging. Here, we report a stepwise CDSA process thermally initiated from amphiphilic poly(N-allylglycine)-b-poly(N-octylglycine) (PNAG-b-PNOG) conjugated with thiol-terminated triethylene glycol monomethyl ethers ((PNAG-g-EG3)-b-PNOG) in aqueous solution. The diblock copolymers show a reversible thermoresponsive behavior with nearly identical cloud points in both heating and cooling runs. In contrast, the morphology transition of the assemblies is irreversible upon a heating-cooling cycle because of the presence of a confined domain arising from crystalline PNOG, which allows for the achievement of different nanostructured assemblies by the same polymer. We demonstrated that the thermoresponsive property of PNAG-g-EG3 initiates assembly kinetically that is subsequently promoted by crystallization of PNOG thermodynamically. The irreversible morphology transition behavior provides a convenient platform for comparing the cellular uptake efficiency of nanostructured assemblies with various morphologies that are otherwise similar.Entities:
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Year: 2020 PMID: 32786675 DOI: 10.1021/acs.biomac.0c00844
Source DB: PubMed Journal: Biomacromolecules ISSN: 1525-7797 Impact factor: 6.988