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聚合物结构对聚(N,N - 二乙基丙烯酰胺)-b-聚(乙二醇)-b-聚(N,N - 二乙基丙烯酰胺)热可逆凝胶的影响及其作为医疗保健材料的评价

Polymer Architecture Effects on Poly(N,N-Diethyl Acrylamide)-b-Poly(Ethylene Glycol)-b-Poly(N,N-Diethyl Acrylamide) Thermoreversible Gels and Their Evaluation as a Healthcare Material.

作者信息

Haddow Peter J, da Silva Marcelo A, Kaldybekov Daulet B, Dreiss Cecile A, Hoffman Ewelina, Hutter Victoria, Khutoryanskiy Vitaliy V, Kirton Stewart B, Mahmoudi Najet, McAuley William J, Cook Michael T

机构信息

Research Centre in Topical Drug Delivery and Toxicology, School of Life and Medical Sciences, University of Hertfordshire, Hatfield, Hertfordshire, AL10 9AB, UK.

School of Chemistry, Food and Pharmacy, University of Reading, Reading, Berkshire, RG6 6UR, UK.

出版信息

Macromol Biosci. 2022 Mar;22(3):e2100432. doi: 10.1002/mabi.202100432. Epub 2021 Dec 11.

Abstract

Thermoreversible gels which transition between liquid-like and solid-like states when warmed have enabled significant novel healthcare technologies. Poly(N,N-diethyl acrylamide) (PDEA) is a thermoresponsive polymer which can be used as a trigger to form thermoreversible gels, however its use in these materials is limited and crucial design principles are unknown. Herein ABA copolymers with the structure PDEA-b-poly(ethylene glycol) (PEG)-b-PDEA are synthesized to give four block copolymers with varied molecular weight of PDEA and PEG blocks. Rheometry on solutions of the block copolymers reveals that high molecular weight PEG blocks are required to form thermoreversible gels with predominantly solid-like behavior. Furthermore, small-angle X-ray scattering elucidates clear differences in the nanostructure of the copolymer library which can be linked to distinct rheological behaviors. A thermoreversible gel formulation based on PDEA (20 kDa)-b-PEG (10 kDa)-b-PDEA (20 kDa) is designed by optimizing the polymer concentration and ionic strength. It is found that the gel is mucoadhesive, stable, and non-toxic, as well as giving controlled release of a hydrophobic drug. Overall, this study provides insight into the effect of polymer architecture on the nanostructure and rheology of PDEA-b-PEG-b-PDEA and presents the development of a highly functional thermoreversible gel with high promise for healthcare applications.

摘要

热可逆凝胶在加热时会在类液态和类固态之间转变,这使得许多重要的新型医疗技术得以实现。聚(N,N - 二乙基丙烯酰胺)(PDEA)是一种热响应性聚合物,可作为形成热可逆凝胶的引发剂,然而其在这些材料中的应用有限,关键的设计原则也尚不清楚。在此,合成了具有PDEA - b - 聚乙二醇(PEG) - b - PDEA结构的ABA共聚物,得到了四种具有不同PDEA和PEG嵌段分子量的嵌段共聚物。对嵌段共聚物溶液进行流变学测量表明,需要高分子量的PEG嵌段才能形成主要表现为类固态行为的热可逆凝胶。此外,小角X射线散射揭示了共聚物库纳米结构的明显差异,这些差异可与不同的流变行为相关联。通过优化聚合物浓度和离子强度,设计了一种基于PDEA(20 kDa) - b - PEG(10 kDa) - b - PDEA(20 kDa)的热可逆凝胶配方。研究发现该凝胶具有粘膜粘附性、稳定性和无毒性,并且能够实现疏水性药物的控释。总体而言,本研究深入探讨了聚合物结构对PDEA - b - PEG - b - PDEA纳米结构和流变学的影响,并展示了一种具有高度功能的热可逆凝胶的开发,该凝胶在医疗应用方面具有很高的前景。

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