Whitaker J E, Haugland R P, Ryan D, Hewitt P C, Haugland R P, Prendergast F G
Molecular Probes, Inc., Eugene, Oregon 97402.
Anal Biochem. 1992 Dec;207(2):267-79. doi: 10.1016/0003-2697(92)90011-u.
A series of chemically reactive, fluorescent rhodol derivatives was prepared and evaluated. Reactive functional groups included activated esters, amines, haloacetamides, fixable hydrazide derivatives, acrylamides, and photoaffinity reagents. Depending on the choice of substituents, absorption maxima of the dyes varied from 490 to 550 nm with extinction coefficients that were generally greater than 50,000 M-1 cm-1 in aqueous solution and emission maxima from 520 to 580 nm. Most of the compounds investigated exhibited fluorescence lifetimes between 3 and 4 ns. Individual derivatives were suitable for excitation with the 488 and 514-nm lines of the argon ion laser and the 546-nm line of the mercury arc lamp and were compatible for use with standard fluorescein and rhodamine filter sets. The rhodol dyes were more photostable and less sensitive to pH changes in the physiological range than fluorescein derivatives. Some examples show absorption maxima at or near 514 nm, an excitation wavelength that is useful for multicolor fluorescence microscopy, flow cytometry, and DNA sequencing. Derivatives were also prepared that exhibit absorption and emission maxima similar to those of tetramethylrhodamine (TMR) analogs but with higher quantum yields in aqueous solution. A number of the dyes had higher solubilities in aqueous systems and were less quenched on conjugation to proteins than TMR derivatives. Appropriate substitution results in a wider range of solubilities in hydrophilic or lipophilic solvents than is easily accomplished with fluorescein or TMR derivatives. Conjugates of a number of the rhodol fluorophores were generally more photostable and less pH sensitive than fluorescein conjugates and more fluorescent than TMR conjugates.
制备并评估了一系列具有化学反应性的荧光若丹明衍生物。反应性官能团包括活性酯、胺、卤代乙酰胺、可固定的酰肼衍生物、丙烯酰胺和光亲和试剂。根据取代基的选择,染料的最大吸收波长在490至550 nm之间,其消光系数在水溶液中通常大于50,000 M-1 cm-1,最大发射波长在520至580 nm之间。所研究的大多数化合物的荧光寿命在3至4 ns之间。个别衍生物适用于用氩离子激光的488和514 nm谱线以及汞弧灯的546 nm谱线进行激发,并且与标准荧光素和罗丹明滤光片组兼容。与荧光素衍生物相比,若丹明染料在生理范围内的光稳定性更高,对pH变化的敏感性更低。一些例子显示最大吸收波长在514 nm或其附近,这一激发波长可用于多色荧光显微镜、流式细胞术和DNA测序。还制备了一些衍生物,其吸收和发射最大值与四甲基罗丹明(TMR)类似物相似,但在水溶液中的量子产率更高。许多染料在水性体系中的溶解度更高,与蛋白质结合时的淬灭程度比TMR衍生物更低。适当的取代导致在亲水性或亲脂性溶剂中的溶解度范围比荧光素或TMR衍生物更容易实现的范围更广。许多若丹明荧光团的缀合物通常比荧光素缀合物更具光稳定性且对pH更不敏感,并且比TMR缀合物更具荧光性。