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药物递送与再生医学中基于分子工程聚合物的系统

Molecularly Engineered Polymer-Based Systems in Drug Delivery and Regenerative Medicine.

作者信息

Piluso Susanna, Soultan Al Halifa, Patterson Jennifer

机构信息

Department of Materials Engineering, KU Leuven, Leuven, Belgium; Prometheus, Division of Skeletal Tissue Engineering, KU Leuven, Leuven, Belgium.

出版信息

Curr Pharm Des. 2017;23(2):281-294. doi: 10.2174/1381612822666161021104239.

Abstract

BACKGROUND

Polymer-based systems are attractive in drug delivery and regenerative medicine due to the possibility of tailoring their properties and functions to a specific application.

METHODS

The present review provides several examples of molecularly engineered polymer systems, including stimuli responsive polymers and supramolecular polymers.

RESULTS

The advent of controlled polymerization techniques has enabled the preparation of polymers with controlled molecular weight and well-defined architecture. By using these techniques coupled to orthogonal chemical modification reactions, polymers can be molecularly engineered to incorporate functional groups able to respond to small changes in the local environment or to a specific biological signal. This review highlights the properties and applications of stimuli-responsive systems and polymer therapeutics, such as polymer-drug conjugates, polymer-protein conjugates, polymersomes, and hyperbranched systems. The applications of polymeric membranes in regenerative medicine are also discussed.

CONCLUSION

The examples presented in this review suggest that the combination of membranes with polymers that are molecularly engineered to respond to specific biological functions could be relevant in the field of regenerative medicine.

摘要

背景

基于聚合物的系统在药物递送和再生医学领域具有吸引力,因为有可能根据特定应用来定制其性质和功能。

方法

本综述提供了几个分子工程聚合物系统的实例,包括刺激响应性聚合物和超分子聚合物。

结果

可控聚合技术的出现使得制备具有可控分子量和明确结构的聚合物成为可能。通过将这些技术与正交化学修饰反应相结合,聚合物可以进行分子工程设计,以纳入能够响应局部环境微小变化或特定生物信号的官能团。本综述重点介绍了刺激响应系统和聚合物疗法的性质和应用,如聚合物-药物缀合物、聚合物-蛋白质缀合物、聚合物囊泡和超支化系统。还讨论了聚合物膜在再生医学中的应用。

结论

本综述中给出的实例表明,将膜与经过分子工程设计以响应特定生物学功能的聚合物相结合,在再生医学领域可能具有重要意义。

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