首页> 美国卫生研究院文献>International Journal of Molecular Sciences >Computational Insights on the Mechanism of the Chemiluminescence Reaction of New Group of Chemiluminogens—10-Methyl-9-thiophenoxycarbonylacridinium Cations
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Computational Insights on the Mechanism of the Chemiluminescence Reaction of New Group of Chemiluminogens—10-Methyl-9-thiophenoxycarbonylacridinium Cations

机译:新组化学荧光-10-甲基-9-硫代苯氧基羰基阳离子阳离子化学发光反应机理的计算见解

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摘要

Immunodiagnostics, in which one of the promising procedures is the chemiluminescent labelling, is essential to facilitate the detection of infections in a human organism. One of the standards commonly used in luminometric assays is luminol, which characterized by low quantum yield in aqueous environments. Acridinium esters have better characteristics in this topic. Therefore, the search for new derivatives, especially those characterized by the higher quantum yield of chemiluminescence, is one of the aims of the research undertaken. Using the proposed mechanism of chemiluminescence, we examined the effect of replacing a single atom within a center of reaction on the efficient transformation of substrates into electronically excited products. The density functional theory (DFT) and time dependent (TD) DFT calculated thermodynamic and kinetic data concerning the chemiluminescence and competitive dark pathways suggests that some of the scrutinized derivatives have better characteristics than the chemiluminogens used so far. Synthesis of these candidates for efficient chemiluminogens, followed by studies of their chemiluminescent properties, and ultimately in chemiluminescent labelling, are further steps to confirm their potential applicability in immunodiagnostics.
机译:免疫诊断,其中有前途的程序是化学发光标记,对于促进人体中感染的检测至关重要。在发光量测定中通常用于的标准之一是Luminol,其特征在于水性环境中的量低量子产率。吖啶酯在本主题中具有更好的特征。因此,寻找新的衍生物,尤其是由化学发光量较高的量子产率的特征的衍生物,是所开展的研究的目的之一。使用所提出的化学发光机制,我们研究了在反应中心内替换单个原子的效果,以在电子激发产品中的有效转化中。密度函数理论(DFT)和时间依赖性(TD)DFT计算的热力学和有关化学发光和竞争性暗途径的动力学数据表明,一些审查的衍生物具有比到目前为止所使用的化学荧光素更好的特征。这些用于高效化学聚氯蛋白的候选物的合成,然后研究其化学发光性能,最终在化学发光标签中,是进一步的步骤,以确认其在免疫诊断中的潜在适用性。

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