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Microfluidic Devices for Drug Delivery Systems and Drug Screening

机译:用于药物输送系统和药物筛选的微流控设备

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Microfluidic devices present unique advantages for the development of efficient drug carrier particles, cell-free protein synthesis systems, and rapid techniques for direct drug screening. Compared to bulk methods, by efficiently controlling the geometries of the fabricated chip and the flow rates of multiphase fluids, microfluidic technology enables the generation of highly stable, uniform, monodispersed particles with higher encapsulation efficiency. Since the existing preclinical models are inefficient drug screens for predicting clinical outcomes, microfluidic platforms might offer a more rapid and cost-effective alternative. Compared to 2D cell culture systems and in vivo animal models, microfluidic 3D platforms mimic the in vivo cell systems in a simple, inexpensive manner, which allows high throughput and multiplexed drug screening at the cell, organ, and whole-body levels. In this review, the generation of appropriate drug or gene carriers including different particle types using different configurations of microfluidic devices is highlighted. Additionally, this paper discusses the emergence of fabricated microfluidic cell-free protein synthesis systems for potential use at point of care as well as cell-, organ-, and human-on-a-chip models as smart, sensitive, and reproducible platforms, allowing the investigation of the effects of drugs under conditions imitating the biological system.
机译:微流体装置为开发有效的药物载体颗粒,无细胞蛋白质合成系统和直接药物筛选的快速技术提供了独特的优势。与批量方法相比,微流体技术通过有效地控制所制造芯片的几何形状和多相流体的流速,从而能够产生具有更高封装效率的高度稳定,均匀,单分散的颗粒。由于现有的临床前模型对于预测临床结果而言药物筛选效率低下,因此微流体平台可能会提供更快速,更具成本效益的选择。与2D细胞培养系统和体内动物模型相比,微流体3D平台以简单,廉价的方式模拟体内细胞系统,从而可以在细胞,器官和全身水平进行高通量和多重药物筛选。在这篇综述中,着重介绍了使用不同配置的微流控设备生成包括不同颗粒类型的合适药物或基因载体的方法。此外,本文讨论了可在护理现场使用的人造微流体无细胞蛋白质合成系统的出现,以及作为智能,灵敏和可复制平台的细胞,器官和单芯片人模型,可以在模仿生物系统的条件下研究药物的作用。

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