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首页> 外文期刊>Particulate Science and Technology: An International Journal >Single-Step Synthesis of Gold Nanowires Using Biomolecules as Capping Agent/Template: Applications for Tissue Engineering
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Single-Step Synthesis of Gold Nanowires Using Biomolecules as Capping Agent/Template: Applications for Tissue Engineering

机译:使用生物分子作为封端剂/模板的一步法合成金纳米线:在组织工程中的应用

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Gold nanochainsanowires were prepared by simultaneously reducing the gold salt in the presence of stabilizing biomolecules - L-aspartate and L-lysine, Collagen-that acts as capping agent and as a template in the formation of two-dimensional gold nanos-tructures. L-aspartate and L-lysine were used in order to fonn nanochains due to their ability to cap gold nanoparticles through an oriented attachment mechanism that leads to the formation of one-dimensional nanostructures. The formation of the nanowires was controlled by reducing the gold salt onto the surface of the collagen template. Transmission electron microscopy (TEM) and x-ray powder diffraction were employed in order to demonstrate the morphological and structural properties of the nanowires. In order to provide evidence of the possible applications of gold nanostructures as biocompatible substrates for tissue engineering, mesenchymal stem cells were cultured in their presence. MTT proliferation assays, as well as immunohistochemistry assays, were perfomied. The experiments demonstrated that each nanostructure stimulates cell proliferation, but better results were obtained in the case of collagen. Moreover, we noticed that the nanostructures are tracked inside of the cells, most likely in the perinuclear region of the stem cells.
机译:通过在稳定的生物分子-L-天冬氨酸和L-赖氨酸,胶原蛋白的存在下同时还原金盐来制备金纳米链/纳米线,该分子充当封端剂并作为二维金纳米结构形成的模板。使用L-天冬氨酸和L-赖氨酸是为了形成纳米链,因为它们能够通过定向的附着机制封盖金纳米粒子,从而导致一维纳米结构的形成。通过将金盐还原到胶原模板的表面上来控制纳米线的形成。为了证实纳米线的形态和结构特性,采用了透射电子显微镜(TEM)和X射线粉末衍射。为了提供金纳米结构作为组织工程的生物相容性底物的可能应用的证据,在它们的存在下培养间充质干细胞。进行了MTT增殖测定以及免疫组织化学测定。实验表明,每个纳米结构均能刺激细胞增殖,但在胶原蛋白的情况下可获得更好的结果。此外,我们注意到纳米结构在细胞内部被追踪,最有可能在干细胞的核周区域。

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