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Gold nanorod biochip functionalization by antibody thiolation

机译:金纳米棒生物芯片通过抗体硫醇化功能化

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Conjugation of biomolecules on gold nanorod (GNR) surfaces is the basis for successful applications in biosensing, imaging, and drug delivery. Current functionalization methods are often problematic, involving multi-step nanoparticle modification to replace surfactant bilayer, delicate nanoparticle protection during surfactant exchange, and material loss due to inevitable aggregation. Instead of intensive surface modification of GNRs, we describe herein a facile method to functionalize gold nanorod surfaces via covalent Au-S bonds by thiolating receptors. The resulting GNR-bioconjugates showed superior dispersion and stability in buffer for months without morphology change and aggregation. ELISA tests confirmed the high biofunctionality of the thiolated anti-IgG moieties immobilized on the GNR surfaces. Furthermore, this simple method facilitated a straightforward functionalization of GNR assembly on glass substrate to construct a specific biochip, which can detect human IgG targets in a label-free fashion with high sensitivity and specificity. Compared to electropolymeric coating to functionalize the GNR, our method exhibited a five-fold enhancement in the spectral sensitivity to refractive index change caused by the target binding. This universal GNR bioconjugation method can be extended to bind different proteins and antibodies for development of biosensors or drug delivery. (C) 2015 Published by Elsevier B.V.
机译:金纳米棒(GNR)表面上生物分子的结合是成功应用于生物传感,成像和药物递送的基础。当前的功能化方法通常是有问题的,涉及多步纳米粒子改性以代替表面活性剂双层,在表面活性剂交换期间的精细纳米粒子保护以及由于不可避免的聚集导致的材料损失。代替对GNR进行密集的表面修饰,我们在此描述一种简便的方法,通过硫键化受体通过共价Au-S键对金纳米棒表面进行功能化。所得的GNR-生物缀合物在缓冲液中表现出卓越的分散性和稳定性,可维持数月之久,而无形态变化和聚集。 ELISA测试证实了固定在GNR表面上的硫醇化抗IgG部分具有很高的生物功能。此外,这种简单的方法促进了玻璃基板上GNR组件的直接功能化,以构建特定的生物芯片,该芯片可以以无标记的方式检测人类IgG靶标,具有很高的灵敏度和特异性。与将GNR功能化的电聚合涂层相比,我们的方法在光谱上对由目标结合引起的折射率变化的灵敏度提高了五倍。这种通用的GNR生物偶联方法可以扩展为结合不同的蛋白质和抗体,以开发生物传感器或药物。 (C)2015由Elsevier B.V.发布

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