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首页> 外文期刊>ACS Omega >Development of a Fluorogenic Reactivity Palette for the Study of Nucleophilic Addition Reactions Based on meso-Formyl BODIPY Dyes
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Development of a Fluorogenic Reactivity Palette for the Study of Nucleophilic Addition Reactions Based on meso-Formyl BODIPY Dyes

机译:用于研究基于内消旋-甲酰基-BODIPY染料的亲核加成反应的荧光反应性调色板的开发

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We describe herein a fluorescence-based assay to characterize and report on nucleophilic addition to carbonyl moieties and highlight the advantages a fluorescence-based assay and multiplex analysis can offer. The assay relies on the fluorogenic properties of meso -formyl boron-dipyrromethene (BODIPY) dyes that become emissive following nucleophilic addition. A reactivity palette is assembled based on the increasing electrophilic character of five meso -formyl BODIPY compounds tested. We show that increasing rates of emission enhancement correlate with the decreasing electrophilic character of BODIPY dyes in the presence of an acid catalyst and a nucleophile. These results are consistent with the rate-limiting step involving activation of the electrophile. Increasing product formation is shown to correlate with the increasing electrophilic character of the BODIPY dyes, as expected based on thermodynamics. In addition to providing rates of reaction, analysis of the fluorescence parameters for the reaction mixtures, including emission quantum yields and fluorescence lifetimes, enables us to determine the extent of reactant conversion at equilibrium (in our case the estimated yield of a transient species) and the presence of different products, without the need for isolation. We anticipate that our reactivity palette approach, combined with the in-depth fluorescence analysis discussed herein, will provide guidelines toward developing fluorogenic assays of reactivity offering multiplex information, beyond fluorescence intensity.
机译:我们在本文中描述了基于荧光的测定法,以表征和报告对羰基部分的亲核加成,并强调了基于荧光的测定法和多重分析可以提供的优势。该测定法依赖于间苯二甲酰基硼-二吡咯亚甲基(BODIPY)染料的荧光性质,其在亲核加成后发光。基于所测试的五种间苯甲酰基BODIPY化合物的增加的亲电特性来组装反应性调色板。我们表明,在酸性催化剂和亲核试剂的存在下,发射增强速率的增加与BODIPY染料的亲电特性的降低相关。这些结果与涉及亲电试剂活化的限速步骤一致。如基于热力学所预期的,显示出增加的产物形成与BODIPY染料的亲电子特性增加相关。除了提供反应速率外,分析反应混合物的荧光参数,包括发射量子产率和荧光寿命,还使我们能够确定平衡状态下反应物转化的程度(在我们的情况下,是估计的瞬时物种的产率),并且存在不同的产品,而无需隔离。我们期望我们的反应性调色板方法与本文讨论的深入荧光分析相结合,将为开发反应性的荧光检测提供指导,从而提供超出荧光强度的多重信息。

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