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Surface modification of gold nanorods using layer-by-layer technique for cellular uptake

机译:金纳米棒的表面修饰使用逐层技术进行细胞吸收

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Gold nanorods (NRs), rod-shaped gold nanoparticles, were modified with bovine serum albumin (BSA) and polyethylenimine (PEI) using layer-by-layer technique. From absorption spectroscopy and zeta potential measurements, it was obvious that NRs were wrapped with these polymers without aggregation of NRs. Following BSA modification, the surface-modified NRs (BSA-NRs) were well-dispersed without aggregation in biochemical conditions, verified from absorption spectroscopy. Further modification with PEI provided positively charged NRs (PEI-NRs). A transmission electron microscopy image of PEI-NRs revealed that the surface modification did not affect changing the shape of the initial NRs. In addition, the PEI-NRs retained the colloidal stability of BSA-NRs in biochemical conditions. We have evaluated that transfection activity of PEI-NRs with HeLa cells. From results of gene expression experiments, it was obvious that the stabilization of NRs by BSA and further modification with PEI realized transfection using NRs into cultured cells. Moreover, the cellular uptake of NRs enabled cellular imaging using light scattering from the NRs.
机译:金纳米棒(NRs),杆状金纳米颗粒,通过层层技术用牛血清白蛋白(BSA)和聚乙烯亚胺(PEI)修饰。从吸收光谱法和ζ电势测量,很明显NRs被这些聚合物包裹而没有NRs的聚集。 BSA改性后,经吸收光谱法验证,在生化条件下,表面改性的NR(BSA-NR)分散良好,没有聚集。用PEI进行的进一步修饰可提供带正电的NR(PEI-NR)。 PEI-NRs的透射电子显微镜图像显示,表面改性不会影响初始NRs的形状变化。此外,PEI-NR在生化条件下保留了BSA-NR的胶体稳定性。我们已经评估了HeLa细胞对PEI-NRs的转染活性。从基因表达实验的结果来看,很明显,BSA对NRs的稳定作用以及PEI的进一步修饰实现了使用NRs将其转染到培养细胞中。此外,NRs的细胞摄取使得能够使用来自NRs的光散射进行细胞成像。

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