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Protein-Based Drug-Delivery Materials

机译:基于蛋白质的药物递送材料

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摘要

There is a pressing need for long-term, controlled drug release for sustained treatment of chronic or persistent medical conditions and diseases. Guided drug delivery is difficult because therapeutic compounds need to survive numerous transport barriers and binding targets throughout the body. Nanoscale protein-based polymers are increasingly used for drug and vaccine delivery to cross these biological barriers and through blood circulation to their molecular site of action. Protein-based polymers compared to synthetic polymers have the advantages of good biocompatibility, biodegradability, environmental sustainability, cost effectiveness and availability. This review addresses the sources of protein-based polymers, compares the similarity and differences, and highlights characteristic properties and functionality of these protein materials for sustained and controlled drug release. Targeted drug delivery using highly functional multicomponent protein composites to guide active drugs to the site of interest will also be discussed. A systematical elucidation of drug-delivery efficiency in the case of molecular weight, particle size, shape, morphology, and porosity of materials will then be demonstrated to achieve increased drug absorption. Finally, several important biomedical applications of protein-based materials with drug-delivery function—including bone healing, antibiotic release, wound healing, and corneal regeneration, as well as diabetes, neuroinflammation and cancer treatments—are summarized at the end of this review.
机译:迫切需要长期,受控的药物释放,以持续治疗慢性或持续性医学病况和疾病。引导药物的输送是困难的,因为治疗性化合物需要在整个身体中生存许多运输障碍和结合靶标。纳米级基于蛋白质的聚合物越来越多地用于药物和疫苗的运输,以克服这些生物障碍并通过血液循环到达其分子作用部位。与合成聚合物相比,基于蛋白质的聚合物具有良好的生物相容性,生物降解性,环境可持续性,成本效益和可用性。这项审查解决了基于蛋白质的聚合物的来源,比较了相似和不同之处,并着重介绍了这些蛋白质材料用于持续和控制药物释放的特征性和功能性。还将讨论使用功能强大的多组分蛋白质复合物将药物引导至目标部位的靶向药物递送。然后将系统地阐明在材料的分子量,粒径,形状,形态和孔隙率情况下的药物传递效率,以实现增加的药物吸收。最后,在这篇评论的结尾总结了具有药物传递功能的基于蛋白质的材料的几种重要的生物医学应用-包括骨愈合,抗生素释放,伤口愈合和角膜再生,以及糖尿病,神经炎症和癌症治疗。

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