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A Sacrificial PLA Block Mediated Route to Injectable and Degradable PNIPAAm-Based Hydrogels

机译:牺牲性PLA嵌段介导的可注射和可降解PNIPAAm基水凝胶的途径

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摘要

Thermoresponsive poly(N-isopropylacrylamide) (PNIPAAm)-based injectable hydrogels represent highly attractive materials in tissue engineering and drug/vaccine delivery but face the problem of long-term bioaccumulation due to non-degradability. In this context, we developed an amphiphilic poly(D,L-lactide)-b-poly(NIPAAm-co-polyethylene glycol methacrylate) (PLA-b-P(NIPAAm-co-PEGMA)) copolymer architecture, through a combination of ring-opening and nitroxide-mediated polymerizations, undergoing gelation in aqueous solution near 30 °C. Complete hydrogel mass loss was observed under physiological conditions after few days upon PLA hydrolysis. This was due to the inability of the resulting P(NIPAAm-co-PEGMA) segment, that contains sufficiently high PEG content, to gel. The copolymer was shown to be non-toxic on dendritic cells. These results thus provide a new way to engineer safe PNIPAAm-based injectable hydrogels with PNIPAAm-reduced content and a degradable feature.
机译:基于热响应性聚(N-异丙基丙烯酰胺)(PNIPAAm)的可注射水凝胶代表了组织工程和药物/疫苗输送中极具吸引力的材料,但由于其不可降解性而面临长期生物累积的问题。在此背景下,我们通过环-环的组合开发了两亲性聚(D,L-丙交酯)-b-聚(NIPAAm-共聚聚乙二醇甲基丙烯酸甲酯)(PLA-bP(NIPAAm-共聚PEGMA))共聚物结构打开和由氮氧化物介导的聚合反应,在30°C附近的水溶液中发生凝胶化。 PLA水解几天后,在生理条件下观察到完全的水凝胶质量损失。这是由于包含足够高PEG含量的所得P(NIPAAm-co-PEGMA)节段无法凝胶化。该共聚物对树突细胞无毒。因此,这些结果提供了一种工程化具有PNIPAAm含量降低且具有可降解特性的,基于PNIPAAm的安全可注射水凝胶的新方法。

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