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Design, fabrication and characterization of drug delivery systems based on lab-on-a-chip technology

机译:基于片上实验室技术的药物输送系统的设计,制造和表征

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摘要

Lab-on-a-chip technology is an emerging field evolving from the recent advances of micro- and nanotechnologies. The technology allows the integration of various components into a single microdevice. Microfluidics, the science and engineering of fluid flow in microscale, is the enabling underlying concept for lab-on-a-chip technology. The present paper reviews the design, fabrication and characterization of drug delivery systems based on this amazing technology. The systems are categorized and discussed according to the scales at which the drug is administered. Starting with the fundamentals on scaling laws of mass transfer and basic fabrication techniques, the paper reviews and discusses drug delivery devices for cellular, tissue and organism levels. At the cellular level, a concentration gradient generator integrated with a cell culture platform is the main drug delivery scheme of interest. At the tissue level, the synthesis of smart particles as drug carriers using lab-on-a-chip technology is the main focus of recent developments. At the organism level, microneedles and implantable devices with fluid-handling components are the main drug delivery systems. For drug delivery to a small organism that can fit into a microchip, devices similar to those of cellular level can be used.
机译:芯片实验室技术是随着微和纳米技术的最新发展而发展起来的一个新兴领域。该技术允许将各种组件集成到单个微设备中。微流体学是微尺度流体流动的科学和工程学,是芯片实验室技术的潜在基础概念。本文综述了基于这一惊人技术的药物输送系统的设计,制造和表征。根据药物施用的规模对系统进行分类和讨论。从质量转移定律的基本原理和基本制造技术入手,本文回顾并讨论了针对细胞,组织和生物体水平的药物输送装置。在细胞水平上,与细胞培养平台集成的浓度梯度发生器是主要的药物递送方案。在组织一级,使用片上实验室技术合成作为药物载体的智能颗粒是近期研究的重点。在生物体一级,微针和具有流体处理组件的可植入设备是主要的药物输送系统。为了将药物输送到可以放入微芯片的小生物中,可以使用类似于细胞水平的设备。

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