Fabrication and packaging of a fully implantable biosensor array

C. Baj-Rossi, Enver G. Kilinc, S. Ghoreishizadeh, Daniele Casarino, T. R. Jost, C. Dehollain, F. Grassi, L. Pastorino, G. Micheli, S. Carrara
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引用次数: 7

Abstract

In this work, we showed the realization of a fully-implantable device that integrates a microfabricated sensing platform , a coil for power and data transmission and integrated circuits. We described a device intended to test the biocompatibility of the materials used for the microfabrication. Therefore, electronics measurements for data communication and remote powering will be reported in another article [1]. To ensure biocompatibility an epoxy enhanced polyurethane membrane was used to cover the device. We proved through an in-vitro characterization that the membrane was capable to retain enzyme activity up to 35 days. After 30 days of implant in mice, in-vivo experiments proved that the membrane promotes the integration of the sensor with the surrounding tissue, as demonstrated by the low inflammation level at the implant site.
全植入式生物传感器阵列的制造与封装
在这项工作中,我们展示了一个完全可植入的设备的实现,该设备集成了一个微加工传感平台,一个用于电力和数据传输的线圈以及集成电路。我们描述了一种用于测试用于微加工的材料的生物相容性的设备。因此,数据通信和远程供电的电子测量将在另一篇文章中报道。为了确保生物相容性,使用环氧增强聚氨酯膜覆盖装置。我们通过体外表征证明,膜能够保持酶活性长达35天。在小鼠体内植入30天后,体内实验证明,该膜促进了传感器与周围组织的整合,正如植入部位的低炎症水平所证明的那样。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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