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Seedless gold nanostars with seed-like advantages for biosensing applications

机译:具有种子样优势的无核金纳米星可用于生物传感应用

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摘要

Gold nanostars (AuNSs) are seen as promising building blocks for biosensors with potential for easy readouts based on naked-eye and ultraviolet–visible spectroscopy detection. We present a seedless synthesis strategy for AuNSs that has the advantages of the seeded methods. The method used ascorbic acid as a reducing agent and silver nitrate as an anisotropic growth control assisting agent. AuNSs with multiple branches and a diameter of 59 nm were produced. They showed good stability when capped with PVP and modified with an enzyme in relatively strong ionic conditions. We investigated their application in plasmonic sensing by modifying them with glucose oxidase and detection of glucose. The AuNSs were found to be a good scaffold for the enzyme, proved to be stable and sensitive as transducers. Thus, the AuNSs showed good promise for further applications in plasmonic biosensing for in vivo biomedical diagnosis.
机译:金纳米星(AuNSs)被认为是有前途的生物传感器构建基块,具有基于裸眼和紫外可见光谱检测的容易读出的潜力。我们提出了AuNSs的无种子合成策略,该策略具有种子方法的优势。该方法使用抗坏血酸作为还原剂,并使用硝酸银作为各向异性的生长控制辅助剂。产生具有多个分支且直径为59nm的AuNS。当用PVP封端并在相对强的离子条件下用酶修饰时,它们显示出良好的稳定性。我们通过用葡萄糖氧化酶修饰葡萄糖并检测葡萄糖来研究其在等离子体传感中的应用。发现AuNS是该酶的良好支架,被证明是稳定且敏感的换能器。因此,AuNSs有望在用于体内生物医学诊断的等离激元生物传感中进一步应用。

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