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Single-crystal cubic silicon carbide: An in vivo biocompatible semiconductor for brain machine interface devices

机译:单晶立方碳化硅:用于脑机接口设备的体内生物相容性半导体

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Single crystal silicon carbide (SiC) is a wide band-gap semiconductor which has shown both bio- and hemo-compatibility [1–5]. Although single crystalline SiC has appealing bio-sensing potential, the material has not been extensively characterized. Cubic silicon carbide (3C-SiC) has superior in vitro biocompatibility compared to its hexagonal counterparts [3, 5]. Brain machine interface (BMI) systems using implantable neuronal prosthetics offer the possibility of bi-directional signaling, which allow sensory feedback and closed loop control. Existing implantable neural interfaces have limited long-term reliability, and 3C-SiC may be a material that may improve that reliability. In the present study, we investigated in vivo 3C-SiC biocompatibility in the CNS of C56BL/6 mice. 3C-SiC was compared against the known immunoreactive response of silicon (Si) at 5, 10, and 35 days. The material was examined to detect CD45, a protein tyrosine phosphatase (PTP) expressed by activated microglia and macrophages. The 3C-SiC surface revealed limited immunoresponse and significantly reduced microglia compared to Si substrate.
机译:单晶碳化硅(SiC)是一种宽带隙半导体,具有生物相容性和血液相容性[1-5]。尽管单晶SiC具有吸引人的生物传感潜力,但该材料尚未得到广泛表征。立方碳化硅(3C-SiC)与六方碳化硅相比具有更好的体外生物相容性[3,5]。使用植入式神经元假体的脑机接口(BMI)系统提供了双向信号传递的可能性,该信号允许感觉反馈和闭环控制。现有的可植入神经接口的长期可靠性有限,并且3C-SiC可能是可以改善这种可靠性的材料。在本研究中,我们研究了C56BL / 6小鼠中枢神经系统的体内3C-SiC生物相容性。在3天,5天,10天和35天时,将3C-SiC与已知的硅(Si)免疫反应进行了比较。检查该材料以检测CD45,CD45是由活化的小胶质细胞和巨噬细胞表达的蛋白质酪氨酸磷酸酶(PTP)。与Si衬底相比,3C-SiC表面显示出有限的免疫反应并显着减少了小胶质细胞。

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