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Synthesis and bioconjugation of alkanethiol-stabilized gold bipyramid nanoparticles

机译:链烷醇稳定金双层纳米粒子的合成与生物缀合性

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摘要

Gold bipyramid (GBP) nanoparticles are promising for a range of biomedical applications, including biosensing and surface-enhanced Raman spectroscopy, due to their favorable optical properties and ease of chemical functionalization. Here we report improved synthesis methods, including preparation of gold seed particles with an increased shelf life of similar to 1 month, and preparation of GBPs with significantly shortened synthesis time (< 1 h). We also report methods for the functionalization and bioconjugation of the GBPs, including functionalization with alkanethiol self-assembled monolayers (SAMs) and bioconjugation with proteins via carbodiimide cross-linking. Binding of specific antibodies to the nanoparticle-bound proteins was subsequently observed via localized surface plasmon resonance sensing. Rabbit IgG and goat anti-Rabbit IgG antibodies were used as a model system for antibody-antigen interactions. As-synthesized, SAM-functionalized, and bioconjugated bipyramids were characterized using scanning electron microscopy, UV-vis spectroscopy, zeta potential, and dynamic light scattering.
机译:金双锥(GBP)纳米颗粒由于其良好的光学性质和易于化学功能化,在生物医学领域有着广泛的应用前景,包括生物传感和表面增强拉曼光谱。在这里,我们报告了改进的合成方法,包括制备保质期增加到1个月的金籽颗粒,以及制备合成时间显著缩短(<1小时)的GBPs。我们还报告了GBPs的功能化和生物结合方法,包括用烷硫醇自组装单分子膜(SAM)功能化和通过碳二亚胺交联与蛋白质生物结合。随后通过局部表面等离子体共振传感观察到特异性抗体与纳米颗粒结合蛋白的结合。兔IgG和山羊抗兔IgG抗体被用作抗体-抗原相互作用的模型系统。合成时,使用扫描电子显微镜、紫外-可见光谱、zeta电位和动态光散射对SAM功能化和生物结合的双锥酰胺进行了表征。

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