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取代 9-二乙氨基苯并[]吩恶嗪-5-酮(尼罗红类似物)的合成及光物理性质。

Substituted 9-Diethylaminobenzo[]phenoxazin-5-ones (Nile Red Analogues): Synthesis and Photophysical Properties.

出版信息

J Org Chem. 2021 Jan 15;86(2):1471-1488. doi: 10.1021/acs.joc.0c02346. Epub 2020 Dec 28.

Abstract

Nile Red is a benzo[]phenoxazone dye containing a diethylamino substituent at the 9-position. In recent years, it has become a popular histological stain for cellular membranes and lipid droplets due to its unrivaled fluorescent properties in lipophilic environments. This makes it an attractive lead for chemical decoration to tweak its attributes and optimize it for more specialized microscopy techniques, e.g., fluorescence lifetime imaging or two-photon excited fluorescence microscopy, to which Nile Red has never been optimized. Herein, we present synthesis approaches to a series of monosubstituted Nile Red derivatives (9-diethylbenzo[]phenoxazin-5-ones) starting from 1-naphthols or 1,3-naphthalenediols. The solvatochromic responsiveness of these fluorophores is reported with focus on how the substituents affect the absorption and emission spectra, luminosity, fluorescence lifetimes, and two-photon absorptivity. Several of the analogues emerge as strong candidates for reporting the polarity of their local environment. Specifically, the one- and two-photon excited fluorescence of Nile Red turns out to be very responsive to substitution, and the spectroscopic features can be finely tuned by judiciously introducing substituents of distinct electronic character at specific positions. This new toolkit of 9-diethylbenzo[]phenoxazine-5-ones constitutes a step toward the next generation of optical molecular probes for advancing the understanding of lipid structures and cellular processes.

摘要

尼罗红是一种苯并[g,h]吩恶嗪染料,在 9 位含有二乙氨基取代基。近年来,由于其在亲脂性环境中无与伦比的荧光特性,它已成为细胞膜和脂滴的常用组织学染色剂。这使其成为化学修饰的有吸引力的先导物,可以调整其属性,并针对更专业的显微镜技术(例如荧光寿命成像或双光子激发荧光显微镜)进行优化,而尼罗红从未针对这些技术进行过优化。在此,我们提出了一系列从 1-萘酚或 1,3-萘二酚出发的单取代尼罗红衍生物(9-二乙基苯并[g,h]吩恶嗪-5-酮)的合成方法。报告了这些荧光团的溶剂化响应性,重点介绍了取代基如何影响吸收和发射光谱、发光度、荧光寿命和双光子吸收率。几种类似物被证明是报告其局部环境极性的有力候选物。具体来说,尼罗红的单光子和双光子激发荧光对取代基非常敏感,并且可以通过在特定位置引入具有不同电子特性的取代基来精细调整光谱特征。这套新的 9-二乙基苯并[g,h]吩恶嗪-5-酮构成了迈向下一代光学分子探针的一步,以推进对脂质结构和细胞过程的理解。

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