Hirschfeld T
Appl Opt. 1976 Dec 1;15(12):3135-9. doi: 10.1364/AO.15.003135.
The sensitivity of chemical or biological analyses using fluorescent tagged reagents is limited by concentration quenching of the fluorescence at high tag concentrations and by photochemical bleaching if high illumination intensities are used. This paper shows by theoretical analysis and experimental verification that concentration quenching lengthens bleaching lifetimes, and the integrated fluorescent emission obtained on complete bleaching is invariant with fluorescent quantum efficiency, absorption cross section, and the illumination's intensity and duration. This can be used to produce extremely sensitive fluorescent tagging procedes. The procedure also improves photometric reproducibility, allows a fluorescent stain to act as a probe of several properties in its microenvironment, and allows sample background differentiation even when the free stain background is more fluorescent than the bound one.
使用荧光标记试剂进行化学或生物分析的灵敏度受到高标记浓度下荧光的浓度猝灭以及使用高光照强度时的光化学漂白的限制。本文通过理论分析和实验验证表明,浓度猝灭会延长漂白寿命,并且完全漂白时获得的积分荧光发射与荧光量子效率、吸收截面以及光照强度和持续时间无关。这可用于产生极其灵敏的荧光标记方法。该方法还提高了光度重现性,使荧光染料能够作为其微环境中多种性质的探针,并且即使游离染料背景比结合染料背景更具荧光性时也能实现样品背景区分。