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Application of Oxidized Silicon Nanowires for Nerve Fibers Regeneration

机译:氧化硅纳米线用于神经纤维再生的应用

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Preliminary investigations have demonstrated that silicon oxides are capable for living cells adsorption. We used this capacity to regenerate nerve fibers. Different kinds of silicon oxides grown on silicon nanowires with different diameters in the range of 100 to 1000 nm were used for preparation of implants. Regeneration of nerve fibers was studied on sciatic nerves. Experiments were carried out in vivo on several groups of Whistar rats. After transverse sectioning the nerve of the first group of rats we injected the implant between the distal and the proximal nerve stumps and then repaired the injury with epineural sutures. The rats from the second (reference) group were operated in the same manner but without injecting the implants or even without transverse sectioning of the nerve fibers (sham-operated animals). The functionality of the rats legs was monitored after six weeks. After that the nerves were prepared for examination by TEM (Transmittance electron microscopy). The main conclusion from the experiments is that the implants of oxidized sijicon nanowires enhance the growth of new nerve fibers and are therefore promising for the nerve regeneration. In this report, the peculiarities of the nerve regeneration as well as the prospects of the nerve impulse transmission along the silicon nanowires are discussed.
机译:初步研究表明,氧化硅能够吸附活细胞。我们使用这种能力来再生神经纤维。在100至1000nm的范围内具有不同直径的硅纳米线上生长的不同种类的氧化硅用于制备植入物。在坐骨神经中研究了神经纤维的再生。实验在体内进行了几组Whistar大鼠。在横向切割第一组大鼠的神经之后,我们将植入物注入远端和近端神经残端之间,然后用透明度缝合修复损伤。来自第二(参考)组的大鼠以相同的方式操作但不注入植入物或甚至没有神经纤维的横向切割(假手术动物)。在六周后监测大鼠腿的功能。之后,通过TEM(透射电子显微镜)制备神经进行检查。实验的主要结论是,氧化的Sijicon纳米线的植入物增强了新神经纤维的生长,因此对神经再生有望。在本报告中,讨论了神经再生的特性以及沿硅纳米线的神经脉冲传递的前景。

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