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Bio-synthesis of gold nanoparticles by human epithelial cells, in vivo

机译:人体上皮细胞在体内生物合成金纳米颗粒

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Healthy epithelial cells, in vivo, have the ability to synthesize gold nanoparticles when aqueous tetrachloroauric acid is made to react with human skin. Neither a reducing agent nor a protecting chemical is needed for this bio-synthesis method. The first indication of gold nanoparticle formation is the staining of the skin, which turns deep purple. Stereoscopic optical micrographs of human skin tissue in contact with aqueous tetrachloroauric acid clearly show the staining of the epithelial cells. The UV-Vis spectrum of these epithelial cells shows an absorption band with a maximum at 553nm. This absorption peak is within the wavelength region where the surface plasmon resonance (SPR) band of aqueous colloidal gold exhibits a maximum. Transmission electron micrographs show that gold nanoparticles synthesized by epithelial cells have sizes between 1 and 100nm. The electron diffraction pattern of these nanoparticles reveals a crystalline structure whose interplanar distances correspond to fcc metallic gold. Transmission electron micrographs of ultra-thin (70nm thick) slices of epithelial cells clearly and undoubtedly demonstrate that gold nanoparticles are inside the cell. According to high resolution transmission electron micrographs of intracellular single gold nanoparticles, they have the shape of a polyhedron.
机译:当使四氯金酸水溶液与人的皮肤反应时,体内健康的上皮细胞具有合成金纳米颗粒的能力。该生物合成方法不需要还原剂或保护剂。金纳米颗粒形成的第一个迹象是皮肤变色,变成深紫色。与四氯金酸水溶液接触的人皮肤组织的立体光学显微照片清楚地显示了上皮细胞的染色。这些上皮细胞的UV-Vis光谱显示出最大在553nm处的吸收带。该吸收峰在水性胶态金的表面等离振子共振(SPR)带呈现最大的波长区域内。透射电子显微照片显示,由上皮细胞合成的金纳米颗粒的尺寸在1至100nm之间。这些纳米粒子的电子衍射图样揭示了一种晶体结构,其晶面间距对应于fcc金属金。超薄(70nm厚)的上皮细胞切片的透射电子显微照片清楚而无疑地表明,金纳米颗粒位于细胞内部。根据细胞内单个金纳米颗粒的高分辨率透射电子显微照片,它们具有多面体的形状。

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