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Recent Advances in Micro-Electro-Mechanical Devices for Controlled Drug Release Applications

机译:用于控制药物释放应用的微机电装置的最新进展

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In recent years, controlled release of drugs has posed numerous challenges with the aim of optimizing parameters such as the release of the suitable quantity of drugs in the right site at the right time with the least invasiveness and the greatest possible automation. Some of the factors that challenge conventional drug release include long-term treatments, narrow therapeutic windows, complex dosing schedules, combined therapies, individual dosing regimens, and labile active substance administration. In this sense, the emergence of micro-devices that combine mechanical and electrical components, so called micro-electro-mechanical systems (MEMS) can offer solutions to these drawbacks. These devices can be fabricated using biocompatible materials, with great uniformity and reproducibility, similar to integrated circuits. They can be aseptically manufactured and hermetically sealed, while having mobile components that enable physical or analytical functions together with electrical components. In this review we present recent advances in the generation of MEMS drug delivery devices, in which various micro and nanometric structures such as contacts, connections, channels, reservoirs, pumps, valves, needles and/or membranes can be included in their design and manufacture. Implantable single and multiple reservoir-based and transdermal-based MEMS devices are discussed in terms of fundamental mechanisms, fabrication, performance and drug release applications.
机译:近年来,对药物的控制释放具有许多挑战,目的是优化参数,例如在正确的时间在正确的时间内释放出合适的药物,最少的侵入性和最大的自动化。攻击常规药物释放的一些因素包括长期治疗,狭窄的治疗窗,复合剂量调度,组合疗法,单独给药方案和不稳定的活性物质给药。从这个意义上讲,结合机械和电气部件的微型器件的出现,所以称为微机电系统(MEMS)可以为这些缺点提供解决方案。这些装置可以使用生物相容性材料制造,具有良好的均匀性和再现性,类似于集成电路。它们可以是无菌地制造和密封的,同时具有使物理或分析功能与电气组件一起实现的移动组件。在该综述中,我们对MEMS药物输送装置的产生最近的进步,其中各种微型和纳米结构,例如触点,连接,通道,储存器,泵,阀,针和/或膜可以包括在其设计和制造中。根据基本机制,制造,性能和药物释放应用,讨论了可植入的单个和基于透皮基的MEMS器件。

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