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首页> 外文期刊>Journal of Microelectromechanical Systems >Feasibility Studies on Nafion Membrane Actuated Micropump Integrated With Hollow Microneedles for Insulin Delivery Device
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Feasibility Studies on Nafion Membrane Actuated Micropump Integrated With Hollow Microneedles for Insulin Delivery Device

机译:集成中空微针的Nafion膜驱动微泵用于胰岛素输送装置的可行性研究

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摘要

A paradigm shift in conventional insulin delivery techniques is required to provide diabetic patients with painless, precise, safe and accurate insulin delivery solutions. Large size insulin molecules can be pushed through human skin layers by a micropump through hollow microneedles which provide a painless interphase to human skin. Ionic polymer metal composite membranes offer great advantages in micropump actuation due to their large deflections at relatively low actuation voltages. This makes them suitable to be implemented in insulin delivery devices. This article presents a novel integrated design of an insulin delivery device (IDD) consisting of a hollow microneedle array, drug reservoir and Nafion membrane actuation based micropump. To test the feasibility of the gold coated Nafion 115 membrane, it is utilized in the conventional circular as well as modified geometry having greater degree of freedom of movement by introducing cuts in membrane in a micropump structure and then implemented in the proposed IDD structure. The IDD achieves a DI water flowrate of $47.2mu $ L/min and Insulin flowrate of $44.8mu $ L/min for membrane with modified geometry which is higher as compared to the conventional membrane design. The device can achieve tunable insulin flowrate in the range of 20-45 $mu $ L/min by varying the frequency (0.1-0.5Hz) and voltage (3-6V) paving way for its commercialization for painless insulin delivery. [2019-0109]
机译:需要常规胰岛素输送技术的范例转变,以向糖尿病患者提供无痛,精确,安全和准确的胰岛素输送解决方案。大尺寸的胰岛素分子可以通过中空的微针通过微型泵推入人体皮肤层,从而为人类皮肤提供无痛的中间相。离子聚合物金属复合膜由于在相对较低的驱动电压下具有较大的挠度,因此在微泵驱动方面具有很大的优势。这使得它们适合在胰岛素输送装置中实施。本文介绍了一种新型的胰岛素输送装置(IDD)集成设计,该装置由中空的微针阵列,药物储库和基于Nafion膜驱动的微型泵组成。为了测试镀金的Nafion 115膜的可行性,通过在微型泵结构中引入膜切口,然后将其用于常规圆形以及具有更大运动自由度的改进几何形状中,然后在建议的IDD结构中实施。对于具有改进的几何形状的膜,IDD的去离子水流量为$ 47.2 /μL / min,胰岛素流量为$ 44.8 /μL / min,与常规膜设计相比更高。该设备可通过改变频率(0.1-0.5Hz)和电压(3-6V)铺路以实现无痛胰岛素输送的商业化,从而实现20-45μL/ min范围内可调的胰岛素流量。 [2019-0109]

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