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SU-8的生物相容性及其生物医学设备应用

Biocompatibility of SU-8 and Its Biomedical Device Applications.

作者信息

Chen Ziyu, Lee Jeong-Bong

机构信息

Department of Electrical and Computer Engineering, The University of Texas at Dallas, Richardson, TX 75080, USA.

出版信息

Micromachines (Basel). 2021 Jul 4;12(7):794. doi: 10.3390/mi12070794.

Abstract

SU-8 is an epoxy-based, negative-tone photoresist that has been extensively utilized to fabricate myriads of devices including biomedical devices in the recent years. This paper first reviews the biocompatibility of SU-8 for in vitro and in vivo applications. Surface modification techniques as well as various biomedical applications based on SU-8 are also discussed. Although SU-8 might not be completely biocompatible, existing surface modification techniques, such as O plasma treatment or grafting of biocompatible polymers, might be sufficient to minimize biofouling caused by SU-8. As a result, a great deal of effort has been directed to the development of SU-8-based functional devices for biomedical applications. This review includes biomedical applications such as platforms for cell culture and cell encapsulation, immunosensing, neural probes, and implantable pressure sensors. Proper treatments of SU-8 and slight modification of surfaces have enabled the SU-8 as one of the unique choices of materials in the fabrication of biomedical devices. Due to the versatility of SU-8 and comparative advantages in terms of improved Young's modulus and yield strength, we believe that SU-8-based biomedical devices would gain wider proliferation among the biomedical community in the future.

摘要

SU-8是一种环氧基负性光刻胶,近年来已被广泛用于制造包括生物医学设备在内的众多器件。本文首先综述了SU-8在体外和体内应用中的生物相容性。还讨论了表面改性技术以及基于SU-8的各种生物医学应用。尽管SU-8可能不完全具有生物相容性,但现有的表面改性技术,如氧等离子体处理或生物相容性聚合物的接枝,可能足以将SU-8引起的生物污染降至最低。因此,大量的努力都致力于开发用于生物医学应用的基于SU-8的功能器件。本综述包括生物医学应用,如细胞培养和细胞封装平台、免疫传感、神经探针和植入式压力传感器。对SU-8的适当处理和表面的轻微改性使SU-8成为生物医学设备制造中独特的材料选择之一。由于SU-8的多功能性以及在提高杨氏模量和屈服强度方面的比较优势,我们相信基于SU-8的生物医学设备未来将在生物医学界得到更广泛的应用。

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