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苯并取代 BODIPYs 的合成、计算建模及性质。

Synthesis, computational modeling, and properties of benzo-appended BODIPYs.

机构信息

Department of Chemistry, Louisiana State University, Baton Rouge, LA 70803, USA.

出版信息

Chemistry. 2012 Mar 26;18(13):3893-905. doi: 10.1002/chem.201103002. Epub 2012 Feb 24.

Abstract

A series of new functionalized mono- and dibenzo-appended BODIPY dyes were synthesized from a common tetrahydroisoindole precursor following two different synthetic routes. Route A involved the assembly of the BODIPY core prior to aromatization, while in Route B the aromatization step was performed first. In general, Route A gave higher yields of the target dibenzo-BODIPYs, due to the ease of aromatization of the BODIPYs compared with the corresponding dipyrromethenes, probably due to their higher stability under the oxidative conditions (2,3-dichloro-5,6-dicyano-1,4-benzoquinone in refluxing toluene). However, due to the slow oxidation of highly electron-deficient BODIPY 3 c bearing a meso-C(6)F(5) group, dibenzo-BODIPY 4 c was obtained, in 35 % overall from dipyrromethane, only by Route B. Computational calculations performed at the 6-31G(d,p) level are in agreement with the experimental results, showing similar relative energies for all reaction intermediates in both routes. In addition, BODIPY 3 c had the highest molecular electrostatic potential (MEPN), confirming its high electron deficiency and consequent resistance toward oxidation. X-ray analyses of eight BODIPYs and several intermediates show that benzannulation further enhances the planarity of these systems. The π-extended BODIPYs show strong red-shifted absorptions and emissions, about 50-60 nm per benzoannulated ring, at 589-658 and 596-680 nm, respectively. In particular, db-BODIPY 4 c bearing a meso-C(6)F(5) group showed the longest λ(max) of absorption and emission, along with the lowest fluorescence quantum yield (0.31 in CH(2)Cl(2)); on the other hand monobenzo-BODIPY 8 showed the highest quantum yield (0.99) of this series. Cellular investigations using human carcinoma HEp2 cells revealed high plasma membrane permeability for all dibenzo-BODIPYs, low dark- and photo-cytotoxicities and intracellular localization in the cell endoplasmic reticulum, in addition to other organelles. Our studies indicate that benzo-appended BODIPYs, in particular the highly stable meso-substituted BODIPYs, are promising fluorophores for bioimaging applications.

摘要

一系列新的功能化单苯并和二苯并稠合 BODIPY 染料是由一个共同的四氢异吲哚前体通过两种不同的合成路线合成的。路线 A 涉及到 BODIPY 核的组装,然后再进行芳构化,而在路线 B 中,先进行芳构化步骤。一般来说,由于 BODIPY 比相应的二吡咯甲川更容易芳构化,路线 A 得到了更高产率的目标二苯并 BODIPY,这可能是由于它们在氧化条件下(回流甲苯中的 2,3-二氯-5,6-二氰基-1,4-苯醌)具有更高的稳定性。然而,由于具有间-C(6)F(5)基团的高度缺电子 BODIPY 3 c 的缓慢氧化,只有通过路线 B 才能以 35%的总收率从二吡咯甲烷获得二苯并 BODIPY 4 c。在 6-31G(d,p)水平上进行的计算与实验结果一致,表明两条路线中所有反应中间体的相对能量相似。此外,BODIPY 3 c 的分子静电势(MEPN)最高,证实了其高电子缺乏性和相应的抗氧化性。对八个 BODIPY 和几个中间体的 X 射线分析表明,苯并稠合进一步增强了这些体系的平面性。π-扩展的 BODIPY 显示出强烈的红移吸收和发射,每个苯并稠合环约 50-60nm,分别在 589-658nm 和 596-680nm。特别是,具有间-C(6)F(5)基团的 db-BODIPY 4 c 表现出最长的吸收和发射 λ(max),以及最低的荧光量子产率(在 CH(2)Cl(2)中为 0.31);另一方面,单苯并 BODIPY 8 表现出该系列中最高的量子产率(0.99)。使用人癌细胞 HEp2 细胞进行的细胞研究表明,所有二苯并 BODIPY 都具有高的质膜通透性、低的暗毒性和光毒性以及在细胞内质网中的细胞内定位,以及其他细胞器。我们的研究表明,苯并稠合 BODIPY,特别是高度稳定的间位取代的 BODIPY,是生物成像应用有前途的荧光团。

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