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首页> 外文期刊>Journal of Applied Polymer Science >Thermo-Responsive Injectable Hydrogel System Based on Poly(N-isopropylacrylamide-co-vinylphosphonic acid). I. Biomineralization and Protein Delivery
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Thermo-Responsive Injectable Hydrogel System Based on Poly(N-isopropylacrylamide-co-vinylphosphonic acid). I. Biomineralization and Protein Delivery

机译:基于聚(N-异丙基丙烯酰胺-共乙烯基膦酸)的热敏可注射水凝胶体系。一,生物矿化和蛋白质输送

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To achieve the injectable hydrogel system in order to improve bone regeneration by locally delivering a protein drug including bone morphogenetic proteins, thermo-responsive injectable hydrogels composed of N-iso-propylacrylamide (NIPAAm) and vinyl phosphonic acid (VPAc) were prepared. The P(NIPAAm-co-VPAc) hydrogels were also biomineralized by urea-mediation method to create functional polymer hydrogels that deliver the protein drug and mimic the bone extracellular matrix. The loosely cross-linked P(NIPAAm-co-VPAc) hydrogels were pliable and fluid-like at room temperature and Could be injected through a small-diameter aperture. The lower critical solution temperature (LCST) of P(NIPAAm-co-VPAc) hydrogel was influenced by the monomer ratio of NIPAAm/VPAc and the hydrogel with a 96/4 molar ratio of NIPAAm/VPAc exhibited an LCST of similar to 34.5 degrees C. Water content was influenced by temperature, NIPAAm/VPAc monomer ratio, and biomineralization; however, all hydrogels maintained more than about 77% of the water content even at 37 degrees C. In a cytotoxicity study, the P(NIPAAm-co-VPAc) and biomineralized P(NIPAAm-co-VPAc) hydrogels did not significantly affect cell viability. The loading content of bovine serum albumin in hydrogel, which was used as a model drug, gradually increased with the amount of VPAc in the hydrogel owing to the ionic interaction between VPAc groups and BSA molecules. In addition, the release behavior of BSA from the P(NIPAAm-co-VPAc) hydrogels was mainly influenced by the drug loading content, water content, and biomineralization of the hydrogels.
机译:为了通过局部递送包括骨形态发生蛋白的蛋白质药物来实现可注射的水凝胶系统以改善骨再生,制备了由N-异丙基丙烯酰胺(NIPAAm)和乙烯基膦酸(VPAc)组成的热响应性可注射的水凝胶。 P(NIPAAm-co-VPAc)水凝胶还通过尿素介导方法进行了生物矿化处理,以生成功能性聚合物水凝胶,该水凝胶可输送蛋白质药物并模拟骨细胞外基质。松散交联的P(NIPAAm-co-VPAc)水凝胶在室温下柔软且呈流体状,可通过小直径孔注入。 P(NIPAAm-co-VPAc)水凝胶的最低临界溶液温度(LCST)受NIPAAm / VPAc单体比的影响,NIPAAm / VPAc摩尔比为96/4的水凝胶的LCST约为34.5度水含量受温度,NIPAAm / VPAc单体比例和生物矿化的影响;但是,即使在37摄氏度下,所有水凝胶仍可保持超过77%的水含量。在细胞毒性研究中,P(NIPAAm-co-VPAc)和生物矿化的P(NIPAAm-co-VPAc)水凝胶不会显着影响细胞可行性。由于VPAc基团与BSA分子之间的离子相互作用,水凝胶中作为模型药物的牛血清白蛋白的负载量随VPAc含量的增加而逐渐增加。此外,BSA从P(NIPAAm-co-VPAc)水凝胶中的释放行为主要受药物负载量,水含量和水凝胶生物矿化的影响。

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