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Controlled synthesis and biomolecular probe application of gold nanoparticles

机译:金纳米粒子的可控合成及生物分子探针应用

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摘要

In addition to their optical properties, the ability of gold nanoparticles (Au NPs) to generate table immobilization of biomolecules, whilst retaining their bioactivities is a major advantage to apply them as biosensors. Optical biosensors using Au NPs are simple, fast and reliable and, recently, they have been moving from laboratory study to the point of practical use. The optical properties of Au NPs strongly depend on their size, shape, degree of aggregation and the functional groups on their surface. Rapid advances in the field of nanotechnology offer us a great opportunity to develop the controllable synthesis and modification of Au NPs as well as to study on their properties and applications. The size-controlled growth of Au NPs requires the isotropic growth on the surface of Au nuclei whereas anisotropic growth will induce the formation of Au NPs of varying shape. Functionalized Au NPs provide sensitive and selective biosensors for the detection of many targets, including metal ions, small organic compounds, protein, DNA, RNA and cell based on their optical, electrical or electrochemical signals. In this review, we will discuss the size- and shape-controlled growth and functionalization of Au NPs to obtain Au nanoprobes. The basis of the optical detection of Au nanoprobes and their applications in nucleic acid, protein detection and cell imaging are also introduced.
机译:除了它们的光学特性外,金纳米颗粒(Au NPs)能够将生物分子固定在桌子上,同时又保持其生物活性,这是将其用作生物传感器的主要优势。使用金纳米颗粒的光学生物传感器简单,快速且可靠,最近,它们已从实验室研究转移到实际应用。金纳米颗粒的光学性质在很大程度上取决于其尺寸,形状,聚集程度和表面上的官能团。纳米技术领域的飞速发展为我们提供了开发可控的合成和修饰金纳米颗粒以及研究其性质和应用的绝佳机会。 Au NPs的尺寸控制生长需要在Au核表面上各向同性生长,而各向异性生长将诱导形成各种形状的Au NPs。功能化的金纳米颗粒基于其光,电或电化学信号,为检测许多目标(包括金属离子,小型有机化合物,蛋白质,DNA,RNA和细胞)提供灵敏且选择性的生物传感器。在这篇综述中,我们将讨论金纳米颗粒的尺寸和形状控制的生长和功能化,以获得金纳米探针。还介绍了金纳米探针的光学检测基础及其在核酸,蛋白质检测和细胞成像中的应用。

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