Gutkin Sara, Tannous Rozan, Jaber Qais, Fridman Micha, Shabat Doron
Department of Organic Chemistry, School of Chemistry, Raymond and Beverly Sackler Faculty of Exact Sciences, Tel-Aviv University Tel Aviv 69978 Israel
Chem Sci. 2023 Jun 1;14(25):6953-6962. doi: 10.1039/d3sc02386a. eCollection 2023 Jun 28.
Multiplex technology is an important emerging field, in diagnostic sciences, that enables the simultaneous detection of several analytes in a single sample. The light-emission spectrum of a chemiluminescent phenoxy-dioxetane luminophore can be accurately predicted by determining the fluorescence-emission spectrum of its corresponding benzoate species, which is generated during the chemiexcitation process. Based on this observation, we designed a library of chemiluminescent dioxetane luminophores with multicolor emission wavelengths. Two dioxetane luminophores that have different emission spectra, but similar quantum yield properties, were selected from the synthesized library for a duplex analysis. The selected dioxetane luminophores were equipped with two different enzymatic substrates to generate turn-ON chemiluminescent probes. This pair of probes exhibited a promising ability to act as a chemiluminescent duplex system for the simultaneous detection of two different enzymatic activities in a physiological solution. In addition, the pair of probes were also able to simultaneously detect the activities of the two enzymes in a bacterial assay, using a blue filter slit for one enzyme and a red filter slit for the other enzyme. As far as we know, this is the first successful demonstration of a chemiluminescent duplex system composed of two-color phenoxy-1,2-dioxetane luminophores. We believe that the library of dioxetanes presented here will be beneficial for developing chemiluminescence luminophores for multiplex analysis of enzymes and bioanalytes.
多重技术是诊断科学中一个重要的新兴领域,它能够在单个样本中同时检测多种分析物。通过测定其相应苯甲酸酯物种在化学激发过程中产生的荧光发射光谱,可以准确预测化学发光苯氧基二氧杂环丁烷发光体的发光光谱。基于这一观察结果,我们设计了一个具有多色发射波长的化学发光二氧杂环丁烷发光体库。从合成库中选择了两种发射光谱不同但量子产率特性相似的二氧杂环丁烷发光体进行双工分析。所选的二氧杂环丁烷发光体配备了两种不同的酶底物,以生成开启式化学发光探针。这对探针表现出了作为化学发光双工系统在生理溶液中同时检测两种不同酶活性的良好能力。此外,这对探针还能够在细菌检测中同时检测两种酶的活性,一种酶使用蓝色滤光片狭缝,另一种酶使用红色滤光片狭缝。据我们所知,这是首次成功展示由双色苯氧基-1,2-二氧杂环丁烷发光体组成的化学发光双工系统。我们相信,这里展示的二氧杂环丁烷库将有助于开发用于酶和生物分析物多重分析的化学发光发光体。