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Single-crystal Silicon Carbide: A Biocompatible and Hemocompatible Semiconductor for Advanced Biomedical Applications

机译:单晶碳化硅:适用于高级生物医学应用的生物相容性和血液相容性半导体

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Crystalline silicon carbide (SiC) and silicon (Si) biocompatibility was evaluated in vitro by directly culturing three skin and connective tissue cell lines, two immortalized neural cell lines, and platelet-rich plasma (PRP) on these semiconducting substrates. The in vivo biocompatibility was then evaluated via implantation of 3C-SiC and Si shanks into a C57/BL6 wild type mouse. The in vivo results, while preliminary, were outstanding with Si being almost completely enveloped with activated microglia and astrocytes, indicating a severe immune system response, while the 3C-SiC film was virtually untouched. The in vitro experiments were performed specifically for the three adopted SiC polytypes, namely 3C-, 4H- and 6H-SiC, and the results were compared to those obtained for Si crystals. Cell proliferation and adhesion quality were studied using MTT [3-(4,5-dimethylthiazol-2-yl)-2,5-diphenyltetrazolium bromide] assays and fluorescent microscopy. The neural cells were studied via atomic force microscopy (AFM) which was used to quantify filopodia and lamellipodia extensions on the surface of the tested materials. Fluorescent microscopy was used to assess platelet adhesion to the semiconductor surfaces where significantly lower values of platelet adhesion to 3C-SiC was observed compared to Si. The reported results show good indicators that SiC is indeed a more biocompatible substrate than Si. While there were some differences among the degree of biocompatibility of the various SiC polytypes tested, SiC appears to be a highly biocompatible material in vitro that is also somewhat hemocompatible. This extremely intriguing result appears to put SiC into a unique class of materials that is both bio- and hemo-compatible and is, to the best of our knowledge, the only semiconductor with this property.
机译:通过在这些半导体衬底上直接培养三种皮肤和结缔组织细胞系,两种永生神经细胞系和富血小板血浆(PRP),可以体外评估晶体碳化硅(SiC)和硅(Si)的生物相容性。然后通过将3C-SiC和Si小腿植入C57 / BL6野生型小鼠中来评估体内生物相容性。体内结果虽然是初步的,但非常出色,Si几乎被活化的小胶质细胞和星形胶质细胞完全包裹,表明严重的免疫系统反应,而3C-SiC膜几乎没有被触及。专门针对三种采用的SiC多型体3C-,4H-和6H-SiC进行了体外实验,并将结果与​​从Si晶体获得的结果进行了比较。使用MTT [3-(4,5-二甲基噻唑-2-基)-2,5-二苯基四唑溴化物]测定法和荧光显微镜研究了细胞增殖和粘附质量。通过原子力显微镜(AFM)研究了神经细胞,该原子力显微镜用于定量测试材料表面上的丝状伪足和片状脂质体延伸。荧光显微镜用于评估血小板对半导体表面的粘附性,与Si相比,血小板对3C-SiC的粘附性明显更低。报告的结果显示出很好的指示,表明SiC确实比Si更具有生物相容性。尽管测试的各种SiC多型体的生物相容性程度之间存在一些差异,但SiC似乎是一种体外具有高度生物相容性的材料,在某种程度上也具有血液相容性。这一极具吸引力的结果似乎使SiC成为一类独特的材料,既具有生物相容性又具有血液相容性,并且据我们所知,是唯一具有这种特性的半导体。

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