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Hard and soft micromachining for BioMEMS: review of techniques and examples of applications in microfluidics and drug delivery.

机译:用于BioMEMS的硬微加工和软微加工:综述微流控技术和药物输送中的技术和应用实例。

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摘要

Recent development in microfabrication (micromachining, microelectromechanical systems, MEMS) permits the integration of hard and soft structures, and enables the design of controllable microfluidic systems, which may be applied to drug delivery. In this paper, we present a tutorial review of both classical "hard" and more recent "soft" micromachining techniques. We then provide examples where these techniques are combined to produce hydrogel-based microfluidic control systems. The most complex of these systems utilizes a very small hydrogel based on phenylboronic acid to control the flow of an insulin solution in response to changes in glucose concentration.
机译:微加工(微加工,微机电系统,MEMS)的最新发展允许硬和软结构的集成,并允许设计可控制的微流体系统,该系统可应用于药物输送。在本文中,我们将对经典的“硬”微加工技术和最新的“软”微加工技术进行回顾。然后,我们提供了将这些技术结合起来以生产基于水凝胶的微流控系统的示例。这些系统中最复杂的系统利用基于苯基硼酸的非常小的水凝胶来响应葡萄糖浓度的变化来控制胰岛素溶液的流量。

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