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Polymeric nanocarriers for controlled and enhanced delivery of therapeutic agents to the CNS

机译:聚合纳米载体,用于控制和增强治疗剂向中枢神经系统的递送

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摘要

Polymeric nanocarriers are versatile structures that can be engineered to obtain high drug loading, good delivery yields and tunable release kinetics. Moreover, the particle surface can be modified for selective targeting of organs or tissues. In particular, polymeric nanocarriers can be conjugated with functional groups promoting translocation through the blood-brain barrier, thus providing a promising system to deliver therapeutic agents and/or diagnostic probes to the brain. Here we review recent literature on the preparation and characterization of polymeric nanoparticles as potential agents for drug delivery to the CNS, with an emphasis on materials chemistry and functionalization strategies for improved selectivity and delivery. Finally, we underline the immunotoxicological aspects of this class of nanostructured materials in view of potential clinical applications.
机译:聚合物纳米载体是通用的结构,可以进行工程设计以获得高载药量,良好的递送产率和可调的释放动力学。此外,可以修饰颗粒表面以选择性靶向器官或组织。特别地,聚合物纳米载体可以与促进通过血脑屏障易位的官能团缀合,从而提供了将治疗剂和/或诊断探针递送至大脑的有希望的系统。在这里,我们回顾了有关制备和表征聚合物纳米颗粒作为潜在药物向CNS输送的新近文献,重点是材料化学和功能化策略,以提高选择性和输送。最后,鉴于潜在的临床应用,我们强调了此类纳米结构材料的免疫毒理学方面。

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