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微流控技术在药物和基因传递系统制备中的最新进展。

Recent Advances in Microfluidics for the Preparation of Drug and Gene Delivery Systems.

机构信息

Department of Chemical and Biological Engineering, University of Sheffield, Sheffield S1 3JD, United Kingdom.

School of Pharmacy, Changzhou University, Changzhou 213164, China.

出版信息

Mol Pharm. 2020 Dec 7;17(12):4421-4434. doi: 10.1021/acs.molpharmaceut.0c00913. Epub 2020 Nov 19.

Abstract

Drug delivery systems (DDSs) have great potential for improving the treatment of several diseases, especially microbial infections and cancers. However, the formulation procedures of DDSs remain challenging, especially at the nanoscale. Reducing batch-to-batch variation and enhancing production rate are some of the essential requirements for accelerating the translation of DDSs from a small scale to an industrial level. Microfluidic technologies have emerged as an alternative to the conventional bench methods to address these issues. By providing precise control over the fluid flows and rapid mixing, microfluidic systems can be used to fabricate and engineer different types of DDSs with specific properties for efficient delivery of a wide range of drugs and genetic materials. This review discusses the principles of controlled rapid mixing that have been employed in different microfluidic strategies for producing DDSs. Moreover, the impact of the microfluidic device design and parameters on the type and properties of DDS formulations was assessed, and recent applications in drug and gene delivery were also considered.

摘要

药物传递系统(DDS)在改善多种疾病的治疗方面具有巨大的潜力,特别是在微生物感染和癌症方面。然而,DDS 的制剂程序仍然具有挑战性,尤其是在纳米尺度上。减少批间差异和提高生产速度是加速 DDS 从小规模向工业规模转化的一些必要要求。微流控技术已经成为解决这些问题的传统台式方法的替代方法。通过对流体流动和快速混合进行精确控制,微流控系统可用于制造和设计具有特定性质的不同类型的 DDS,以有效传递广泛的药物和遗传物质。本文综述了不同微流控策略中用于制备 DDS 的控制快速混合的原理。此外,还评估了微流控装置设计和参数对 DDS 制剂类型和性质的影响,并考虑了在药物和基因传递方面的最新应用。

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