Institute of Organic Chemistry, Polish Academy of Sciences, Kasprzaka 44/52, 01-224, Warsaw, Poland.
Department of Chemistry, POSTECH, 77 Cheongam-Ro, Nam-Gu, Pohang, Gyungbuk, 37673, Korea.
Chemistry. 2019 Oct 17;25(58):13354-13362. doi: 10.1002/chem.201902534. Epub 2019 Sep 13.
New L-shaped fluorophores possessing five conjugated rings have been synthesized through a four-step procedure involving diketopyrrolopyrrole synthesis and its double N-alkylation, followed by trimethylsilyl bromide-mediated rearrangement to thieno[2,3-f]isoindole-5,8-dione and an intramolecular Friedel-Crafts reaction. In comparison with the parent isoindolediones and π-expanded diketopyrrolopyrroles, these new dyes show red-shifted absorption and emission (up to ≈630 nm). Their structural rigidity is responsible for both the observed small Stokes shifts and large fluorescence quantum yields. Tissue imaging studies revealed that these new dyes show advantageous features including minimal autofluorescence interference and pronounced solvent-sensitive emission. Interestingly, there is a fundamental difference between a dye possessing an amino group and its analog bearing an N-alkyl substituent. The former dye under two-photon excitation at 900 nm gives bright images whereas its N-alkylated counterpart does not. A new type of membrane localization has been discovered by an N-alkylated isoindoledione possessing a benzofuryl substituent. In spite of the fact that the fluorescence quantum yield of this dye in a range of solvents is rather low, it does stain cell membranes exclusively. This new mode of cellular staining opens the door towards further development of membrane staining dyes.
新型 L 型荧光染料具有五个共轭环,通过四步反应合成,包括二酮吡咯并吡咯的合成及其双 N-烷基化,然后用三甲基溴硅烷介导重排为噻吩[2,3-f]异吲哚-5,8-二酮和分子内傅克反应。与母体异吲哚二酮和 π 扩展二酮吡咯并吡咯相比,这些新型染料表现出红移的吸收和发射(高达≈630nm)。它们的结构刚性是观察到小斯托克斯位移和大荧光量子产率的原因。组织成像研究表明,这些新型染料具有包括最小的自发荧光干扰和明显的溶剂敏感发射等优势特征。有趣的是,具有氨基的染料与其具有 N-烷基取代基的类似物之间存在根本区别。在 900nm 的双光子激发下,前者染料给出明亮的图像,而其 N-烷基化对应物则没有。具有苯并呋喃取代基的 N-烷基化异吲哚二酮发现了一种新型的膜定位。尽管该染料在一系列溶剂中的荧光量子产率相当低,但它确实专门染色细胞膜。这种新型的细胞染色模式为进一步开发膜染色染料开辟了道路。