Star-Shaped Poly(Furfuryl Glycidyl Ether)-Block-Poly(Glyceryl Glycerol Ether) As An Efficient Agent For The Enhancement Of Nifuratel Solubility And For The Formation Of Injectable And Self-Healable Hydrogel Platforms For The Gynaecological Therapies

INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES(2021)

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摘要
In this paper, we present novel well-defined unimolecular micelles constructed a on poly(furfuryl glycidyl ether) core and highly hydrophilic poly(glyceryl glycerol ether) shell, PFGE-b-PGGE. The copolymer was synthesized via anionic ring-opening polymerization of furfuryl glycidyl ether and (1,2-isopropylidene glyceryl) glycidyl ether, respectively. MTT assay revealed that the copolymer is non-cytotoxic against human cervical cancer endothelial (HeLa) cells. The copolymer thanks to furan moieties in its core is capable of encapsulation of nifuratel, a hydrophobic nitrofuran derivative, which is a drug applied in the gynaecology therapies that shows a broad antimicroorganism spectrum. The study shows high loading capacity of the copolymer, i.e., 146 mg of nifuratel per 1 g of copolymer. The load unimolecular micelles were characterized using DLS and TEM microscopy and compared with the reference glyceryl glycerol ether homopolymer sample. The presence of numerous 1,2-diol moieties in the shell of PFGE-b-PGG macromolecules enabled the formation of reversible cross-links with 2-acrylamidephenylboronic acid-based polyacrylamide. The obtained hydrogels were both injectable and self-healable, which was confirmed with a rheological study.
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关键词
vulvovaginitis, candidiasis, Trichomonas infections, nifuratel, drug delivery system, hydrophobic drug, unimolecular copolymer micelle, poly(furfuryl glycidyl ether), poly(glyceryl glycerol ether)
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