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首页> 外文期刊>Journal of biomaterials science >Partially biodegradable temperature-and pH-responsive poly(N-isopropylacrylamide)/dextran-maleic acid hydrogels: formulation and controlled drug delivery of doxorubicin
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Partially biodegradable temperature-and pH-responsive poly(N-isopropylacrylamide)/dextran-maleic acid hydrogels: formulation and controlled drug delivery of doxorubicin

机译:可部分降解的温度和pH响应的聚(N-异丙基丙烯酰胺)/右旋糖酐-马来酸水凝胶:阿霉素的制剂和可控药物递送

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摘要

A new family of partially biodegradable temperature-and pH-responsive hydrogels, poly(N-isopropylacrylamide)/dextran-maleic acid (PNIPAAm/Dex-MA), was synthesized and its application as a drug carrier was investigated. The PNIPAAm/Dex-MA hydrogels were synthesized by UV cross-linking over a wide range of mixed solvent ratios of dimethyl formamide (DMF) to water. PNIPAAm and Dex-MA precursors were chosen as thermo-sensitive and pH-sensitive components, respectively. Dex-MA was also used as a cross-linker. An anti-tumor drug, doxorubicin, was used to examine the effects of network structures of PNIPAAm/Dex-MA hydrogels on the release of drug. These PNIPAAm/Dex-MA hybrid hydrogels exhibited a wide range of porous network structures and sizes due to the effect of the mixed solvent during the gelation reaction. This variation in porous network structure of NDF hydrogels led to a wide range of swelling, deswelling and biodegradation processes. The distinctive porous structure of the PNIPAAm/Dex-MA hydrogels was correlated to the release of doxorubicin from the hydrogels. A larger and faster release of doxorubicin was found in those hydrogels having a large pore size. This new family of PNIPAAm/Dex-MA hydrogels may have a great potential as drug carriers because of their combined stimuli-response capability, as well as partial biodegradability.
机译:合成了新的部分可生物降解的对温度和pH值敏感的水凝胶,聚(N-异丙基丙烯酰胺)/右旋糖酐-马来酸(PNIPAAm / Dex-MA),并研究了其作为药物载体的应用。 PNIPAAm / Dex-MA水凝胶是通过在广泛的二甲基甲酰胺(DMF)与水的混合溶剂比率范围内进行UV交联而合成的。分别选择PNIPAAm和Dex-MA前体作为热敏感和pH敏感的组分。 Dex-MA也用作交联剂。一种抗肿瘤药物阿霉素被用于检查PNIPAAm / Dex-MA水凝胶的网络结构对药物释放的影响。这些PNIPAAm / Dex-MA杂化水凝胶由于在胶凝反应过程中混合溶剂的作用而表现出广泛的多孔网络结构和尺寸。 NDF水凝胶的多孔网络结构的这种变化导致了广泛的溶胀,溶胀和生物降解过程。 PNIPAAm / Dex-MA水凝胶独特的多孔结构与水凝胶中阿霉素的释放有关。在那些具有大孔径的水凝胶中发现了阿霉素的更大和更快的释放。这种新的PNIPAAm / Dex-MA水凝胶家族可能具有强大的药物载体潜力,因为它们具有共同的刺激反应能力和部分生物降解能力。

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