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用于改善荧光团性能的七甲川染料中心取代基工程

Engineering Central Substitutions in Heptamethine Dyes for Improved Fluorophore Performance.

作者信息

Guo Lei, Yang Meek, Dong Bin, Lewman Seth, Van Horn Alex, Jia Shang

机构信息

Department of Civil Engineering, University of Arkansas, Fayetteville, Fayetteville, Arkansas 72701, United States.

Department of Chemistry and Biochemistry, University of Arkansas, Fayetteville, Fayetteville, Arkansas 72701, United States.

出版信息

JACS Au. 2024 Aug 8;4(8):3007-3017. doi: 10.1021/jacsau.4c00343. eCollection 2024 Aug 26.

Abstract

As a major family of red-shifted fluorophores that operate beyond visible light, polymethine dyes are pivotal in light-based biological techniques. However, methods for tuning this kind of fluorophores by structural modification remain restricted to bottom-up synthesis and modification using coupling or nucleophilic substitutions. In this study, we introduce a two-step, late-stage functionalization process for heptamethine dyes. This process enables the substitution of the central chlorine atom in the commonly used 4'-chloro heptamethine scaffold with various aryl groups using aryllithium reagents. This method borrows the building block and designs from the xanthene dye community and offers a mild and convenient way for the diversification of heptamethine fluorophores. Notably, this efficient conversion allows for the synthesis of heptamethine-X, the heptamethine scaffold with two ortho-substituents on the 4'-aryl modification, which brings enhanced stability and reduced aggregation to the fluorophore. We showcase the utility of this method by a facile synthesis of a fluorogenic, membrane-localizing fluorophore that outperforms its commercial counterparts with a significantly higher brightness and contrast. Overall, this method establishes the synthetic similarities between polymethine and xanthene fluorophores and provides a versatile and feasible toolbox for future optimizing heptamethine fluorophores for their biological applications.

摘要

作为一类主要在可见光范围之外发挥作用的红移荧光团,聚甲炔染料在基于光的生物技术中至关重要。然而,通过结构修饰来调节这类荧光团的方法仍局限于使用偶联或亲核取代的自下而上合成和修饰。在本研究中,我们介绍了一种用于七甲川染料的两步后期功能化过程。该过程能够使用芳基锂试剂将常用的4'-氯七甲川支架中的中心氯原子用各种芳基取代。这种方法借鉴了呫吨染料领域的构建模块和设计理念,为七甲川荧光团的多样化提供了一种温和且便捷的方式。值得注意的是,这种高效转化能够合成七甲川-X,即在4'-芳基修饰上带有两个邻位取代基的七甲川支架,这使得荧光团的稳定性增强且聚集减少。我们通过简便合成一种荧光生成、膜定位荧光团展示了该方法的实用性,该荧光团的亮度和对比度显著高于其商业同类产品。总体而言,该方法确立了聚甲炔和呫吨荧光团之间的合成相似性,并为未来优化七甲川荧光团用于生物应用提供了一个通用且可行的工具箱。

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