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柔性/可拉伸电子学和光电子学的免疫和组织生物相容性。

Immunologic and tissue biocompatibility of flexible/stretchable electronics and optoelectronics.

机构信息

Global Research Laboratory, Department of Biochemistry and Molecular Biology, Korea University College of Medicine, Seoul, 136-713, Republic of Korea.

出版信息

Adv Healthc Mater. 2014 Apr;3(4):515-25. doi: 10.1002/adhm.201300220. Epub 2013 Sep 1.

Abstract

Recent development of flexible/stretchable integrated electronic sensors and stimulation systems has the potential to establish an important paradigm for implantable electronic devices, where shapes and mechanical properties are matched to those of biological tissues and organs. Demonstrations of tissue and immune biocompatibility are fundamental requirements for application of such kinds of electronics for long-term use in the body. Here, a comprehensive set of experiments studies biocompatibility on four representative flexible/stretchable device platforms, selected on the basis of their versatility and relevance in clinical usage. The devices include flexible silicon field effect transistors (FETs) on polyimide and stretchable silicon FETs, InGaN light-emitting diodes (LEDs), and AlInGaPAs LEDs, each on low modulus silicone substrates. Direct cytotoxicity measured by exposure of a surrogate fibroblast line and leachable toxicity by minimum essential medium extraction testing reveal that all of these devices are non-cytotoxic. In vivo immunologic and tissue biocompatibility testing in mice indicate no local inflammation or systemic immunologic responses after four weeks of subcutaneous implantation. The results show that these new classes of flexible implantable devices are suitable for introduction into clinical studies as long-term implantable electronics.

摘要

最近,灵活/可伸缩集成电子传感器和刺激系统的发展有可能为植入式电子设备建立一个重要的范例,其中形状和机械性能与生物组织和器官相匹配。此类电子设备在体内长期使用的组织和免疫相容性的证明是基本要求。在这里,我们进行了一系列综合实验,研究了基于其通用性和在临床应用中的相关性而选择的四种代表性的灵活/可伸缩器件平台的生物相容性。这些器件包括聚酰亚胺上的柔性硅场效应晶体管 (FET) 和可拉伸硅 FET、InGaN 发光二极管 (LED) 和 AlInGaPAs LED,它们都在低模量硅基底上。通过暴露于替代成纤维细胞系的直接细胞毒性和最小必需培养基提取测试的可浸出毒性测量表明,所有这些器件均无细胞毒性。在小鼠中的体内免疫和组织生物相容性测试表明,在皮下植入四周后没有局部炎症或全身免疫反应。结果表明,这些新型的柔性植入式设备适合作为长期植入式电子设备引入临床研究。

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