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Aerosol Manufacturing of Plasmonic Biosensors with Silica Coated Nanosilver

机译:具有二氧化硅涂层纳米玻璃的血浆生物传感器气溶胶制造

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The plasmonic properties of noble metal nanoparticles facilitate their use in novel in-vivo bio-applications such as targeted drug delivery and cancer cell therapy. Nanosilver is best suited for such applications as it has the lowest plasmonic losses among all such materials in the UVvisible spectrum. Its toxicity, however, can destroy the surrounding healthy tissu and thus, hinders its safe employment. Here, that toxicity against a model biological system (Escherichia coli) is "cured" by coating nanosilver hermetically with a thin SiO2 layer by a scalable flame aerosol method without reducing its plasmonic performance. This creates the opportunity to safely use powerful nanosilver for intracellular bio-applications. The label-free biosensing and surface bio-functionalization of these ready-to-use, non-toxic (benign) nanosilver particles is presented here by measuring the adsorption of bovine serum albumin (BSA) in a model sensing experiment. Furthermore, the silica coating around nanosilver prevents its agglomeration or flocculation and thus, enhances its biosensitivity.
机译:贵金属纳米粒子的等离子体性能促进其在新型体内生物应用中使用,例如靶向药物递送和癌细胞疗法。纳米ilver最适合这种应用,因为它在UV可见光谱中的所有这些材料中具有最低的等离子体损失。然而,它的毒性可以摧毁周围的健康组织,因此阻碍了其安全就业。这里,通过通过可伸缩的火焰气溶胶法在不降低其等离子体性能的情况下,通过涂覆纳米ilver,通过涂覆纳米单体,通过缩小的火焰气溶胶方法涂覆纳米单体,通过涂覆薄型SiO 2层来“固化”毒性。这产生了安全地利用强大的纳米姑娘用于细胞内生物应用的机会。通过测量模型感测实验中的牛血清白蛋白(BSA)的吸附来介绍这些即用的无毒(良性)纳米玻璃颗粒的无标记生物沉积和表面生物官能化。此外,纳米ilver周围的二氧化硅涂层可防止其附聚或絮凝,从而提高其生物密体。

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