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首页> 外文期刊>Journal of Controlled Release: Official Journal of the Controlled Release Society >Evaluation of a degradable shape-memory polymer network as matrix for controlled drug release
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Evaluation of a degradable shape-memory polymer network as matrix for controlled drug release

机译:评价可降解的形状记忆聚合物网络作为控制药物释放的基质

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Degradable shape-memory polymers are multifunctional materials with broad applicability for medical devices. They are designed to acquire their therapeutically relevant shape and mechanical properties after implantation. In this study, the potential of a completely amorphous shape-memory polymer matrix for controlled drug release was comprehensively characterized according to a four step general strategy which provides concepts for validating multifunctional materials for pharmaceutical applications. Independent functionalities are thereby crucial for fully exploiting the potential of the materials. The copolyester urethane network was synthesized by crosslinking star-shaped tetrahydroxy telechelics of oligo[(rac-lactide)-co-glycolide] with an aliphatic diisocyanate. In step 1 of the four step characterization procedure, this material showed the thermal and mechanical properties, which are required for the shape-memory effect under physiological conditions. Shape recovery could be realized by a one-step or a multi-step methodology. In step 2, feasibility of drug loading of pre-formed shape-memory networks has been demonstrated with drugs of different hydrophobicities. The presence of drugs did not disturb the material's functionalities directly after loading (step 3) and under release conditions (step 4). A predictable release of about 90% of the payload in 80 days was observed. Overall, the synthesized amorphous polymer network showed three independent functionalities, i.e., a shape-memory effect combined with biodegradability and controlled drug release.
机译:可降解的形状记忆聚合物是多功能材料,在医疗设备中具有广泛的适用性。它们被设计为在植入后获得其治疗相关的形状和机械性能。在这项研究中,根据四步通用策略全面表征了完全无定形的形状记忆聚合物基质对药物控制释放的潜力,该策略提供了验证多功能材料用于制药应用的概念。因此,独立的功能对于充分利用材料的潜力至关重要。通过将低聚[(外消旋-乳酸)-共-乙交酯]的星形四羟基远螯螯合物与脂族二异氰酸酯交联来合成共聚酯氨基甲酸酯网络。在四步表征程序的步骤1中,此材料显示出热和机械性能,这是生理条件下形状记忆效应所必需的。形状恢复可以通过一步或多步方法来实现。在步骤2中,已经证明了使用不同疏水性的药物装载预先形成的形状记忆网络的可行性。药物的存在不会在加载后(步骤3)和释放条件下(步骤4)直接干扰材料的功能。观察到在80天内可预测释放约90%的有效负载。总体而言,合成的无定形聚合物网络显示出三个独立的功能,即形状记忆效应与生物降解性和受控的药物释放相结合。

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