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Swelling and hydrolytic degradation behaviour of pH-responsive hydrogels of poly[(N-isopropylacrylamide)-co-(methacrylic acid)] crosslinked by biodegradable polycaprolactone chains

机译:可生物降解的聚己内酯链交联的聚[(N-异丙基丙烯酰胺)-共-(甲基丙烯酸)] pH响应水凝胶的溶胀和水解降解行为

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BACKGROUND: Stimuli-responsive hydrogels are typically obtained from non-biodegradable monomers. The use of biodegradable crosslinkers can overcome this limitation. In this context, the main aim of this work was to use modified polycaprolactone as a crosslinker in the preparation of pH-responsive hydrogels based on N-isopropylacrylamide and methacrylic acid to give poly[(N-isopropylacrylamide)-co-(methacrylic acid)] (P(N-iPAAm-co-MAA)). RESULTS: Poly(caprolactone) dimethacrylate macromonomer was synthesized and successfully employed as crosslinker with various ratios in the synthesis of well-known pH-responsive hydrogels of P(N-iPAAm-co-MAA). The swelling properties of these degradable hydrogels were investigated. They practically do not swell at pH = 2, but exhibit a very high swelling capacity in distilled water and in solutions of pH = 7. In addition, degradation studies at pH = 12 showed that the hydrolysis of the ester groups in the polycaprolactone chains produces, after a relatively short time, the total solubilization of the polymer chains. CONCLUSION: The hydrogels under study have certain characteristics that could make them good candidates for use as matrices in controlled drug delivery. On the one hand, they do not swell in acid pH solution (stomach conditions) but they swell extensively at neutral pH. On the other hand, they became rapidly water soluble following degradation.
机译:背景:刺激响应水凝胶通常从不可生物降解的单体获得。使用可生物降解的交联剂可以克服这一限制。在这种情况下,这项工作的主要目的是在基于N-异丙基丙烯酰胺和甲基丙烯酸的pH响应水凝胶的制备中使用改性聚己内酯作为交联剂,从而得到聚[(N-异丙基丙烯酰胺)-共-(甲基丙烯酸) ](P(N-iPAAm-co-MAA))。结果:合成了聚己内酯二甲基丙烯酸酯大分子单体,并成功地以各种比例作为交联剂用于P(N-iPAAm-co-MAA)pH响应水凝胶的合成。研究了这些可降解水凝胶的溶胀性能。它们实际上在pH = 2时不会溶胀,但在蒸馏水和pH = 7的溶液中表现出很高的溶胀能力。此外,在pH = 12时的降解研究表明,聚己内酯链中酯基的水解会产生相对较短的时间后,聚合物链全部溶解。结论:所研究的水凝胶具有某些特性,可以使其成为可控药物输送基质的良好候选者。一方面,它们在酸性pH溶液(胃液条件下)中不会溶胀,但在中性pH下会大量溶胀。另一方面,它们在降解后迅速变为水溶性。

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