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Label-free colorimetric detection of biological thiols based on target-triggered inhibition of photoinduced formation of AuNPs

机译:基于目标触发的光诱导AuNPs形成的抑制,对生物硫醇进行无标记比色检测

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摘要

A label-free colorimetric method for the detection of biological thiols (biothiols) was developed. This method is based on prevention of the photoinduced reduction of auric ions (Au(III)) in the presence of amino acids (acting as a reducing agent) by biothiols; the photoinduced reduction is inhibited due to the strong interaction of the biothiols with Au(III). In this method, the sample was first incubated in an assay solution containing Au(III) and threonine; the sample solution was then exposed to 254 nm UV light. For samples without biothiols, this process led to the photoreduction of Au(III) followed by growth of gold nanoparticles accompanied by the visually detectable development of a red coloration typified by an absorption peak at ca 530 nm. Conversely, in the presence of biothiols, reduction of Au(III) to Au(0) was prevented by entrapment of Au(III) within the biothiols via the thiol group. The solution thus remained colorless even after UV irradiation, which was used as an indicator of the presence of biothiols. Using this strategy, biothiols were very conveniently analyzed by monitoring color changes of the samples with the naked eye or a UV-vis spectrometer. The strategy based on this interesting phenomenon exhibited high selectivity toward biothiols over common amino acids and was successfully employed for reliable quantification of biothiols present in human plasma, demonstrating its great potential for clinical applications.
机译:开发了一种无标记的比色法检测生物硫醇(biothiols)。该方法基于生物硫醇在存在氨基酸(作为还原剂)的情况下防止光诱导还原金原子离子(Au(III))。由于生物硫醇与Au(III)的强烈相互作用,抑制了光诱导的还原。在这种方法中,首先将样品在含有Au(III)和苏氨酸的分析溶液中孵育;然后将样品溶液暴露于254 nm的紫外线下。对于没有生物硫醇的样品,该过程导致Au(III)的光还原,接着是金纳米颗粒的生长,并伴随着可见色的红色发展,其在530 nm处具有吸收峰。相反,在存在生物硫醇的情况下,通过硫醇基团将Au(III)截留在生物硫醇中可防止Au(III)还原为Au(0)。因此,即使在紫外线照射后,溶液也保持无色,这被用作生物硫醇存在的指示。使用这种策略,通过用肉眼或紫外可见光谱仪监测样品的颜色变化,可以非常方便地分析生物硫醇。基于这种有趣现象的策略对普通氨基酸对生物硫醇具有较高的选择性,并成功用于人血浆中生物硫醇的可靠定量,证明了其在临床应用中的巨大潜力。

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