Jose Jiney, Burgess Kevin
Department of Chemistry, Texas A&M University, Box 30012, College Station, Texas 77841, USA.
J Org Chem. 2006 Sep 29;71(20):7835-9. doi: 10.1021/jo061369v.
Nile Red (compound A) fluoresces at about 530 nm with good quantum yields in apolar solvents. In more polar ones its fluorescence emission shows a dramatic, and potentially useful, shift to about 640 nm, but its quantum yield is significantly reduced. Further, Nile Red has a very poor solubility in aqueous media. The hypothesis tested in this paper is that Nile Red derivatives that incorporate water-solubilizing groups will tend to fluoresce with good quantum yields in aqueous media, and in the more useful wavelength range around 640 nm. Thus three Nile Red derivatives, 1-3, were prepared. Compound 1 had three hydroxyl groups more than Nile Red, but was surprisingly insoluble in aqueous media. However, the dicarboxylic acid 2 and carboxylic/sulfonic acid derivative 3 showed excellent water solubilities. Spectral data for 2 and 3 showed that they do indeed fluoresce with good quantum yields in the 640 nm region in aqueous media. These properties of compounds 2 and 3 might be useful in the development of fluorescent probes for biotechnology.
尼罗红(化合物A)在非极性溶剂中于约530纳米处发出荧光,量子产率良好。在极性更强的溶剂中,其荧光发射会显著且可能有用地移至约640纳米处,但其量子产率会大幅降低。此外,尼罗红在水性介质中的溶解度非常低。本文所检验的假设是,引入水溶性基团的尼罗红衍生物在水性介质中以及在更有用的约640纳米波长范围内往往会以良好的量子产率发出荧光。因此,制备了三种尼罗红衍生物1 - 3。化合物1比尼罗红多三个羟基,但令人惊讶的是它不溶于水性介质。然而,二羧酸2和羧酸/磺酸衍生物3表现出优异的水溶性。2和3的光谱数据表明,它们在水性介质中于640纳米区域确实以良好的量子产率发出荧光。化合物2和3的这些性质可能在生物技术荧光探针的开发中有用。