Hewitt Joseph D, McGown Linda B
Department of Chemistry, Gross Chemical Laboratory, Box 90346, Duke University, Durham, North Carolina 27708, USA.
Appl Spectrosc. 2003 Mar;57(3):256-65. doi: 10.1366/000370203321558155.
On-the-fly fluorescence lifetime detection was investigated as a tool for studying humic substances in capillary zone electrophoresis (CZE). Humic substances are complex, heterogeneous mixtures of natural products that tend to migrate in a single, broad CZE peak. The intrinsic fluorescence lifetime of five humic substances from the International Humic Substances Society (IHSS) was monitored using excitation at 488 or 364 nm to produce intensity-lifetime electropherograms for each of the substances. Each frequency-domain lifetime measurement, collected at subsecond intervals during the CZE run, contains the equivalent of a complete decay profile. Lifetime analysis of each decay profile was used to construct a lifetime-resolved electropherogram for each lifetime component, from which the variation in relative intensity contributions of each lifetime across the broad CZE peak could be determined. Absorption spectra, fluorescence excitation-emission spectra, and lifetime profiles of batch solutions of the samples were determined as well. It was found that, whereas absorption and fluorescence spectral characteristics tended to discriminate between humic acids and fulvic acids, the batch solution lifetime profiles discriminated instead between samples from different sources, regardless of fraction. On-the-fly lifetime detection provided a more detailed view of the fluorescence decay of the samples, including greater resolution of lifetimes for two of the fulvic acids and greater discrimination among samples based on lifetime profiles across the CZE peaks.
研究了实时荧光寿命检测作为毛细管区带电泳(CZE)中研究腐殖质的一种工具。腐殖质是天然产物的复杂、非均相混合物,在CZE中往往迁移到一个单一的宽峰中。使用488或364 nm的激发光监测了国际腐殖质协会(IHSS)的五种腐殖质的固有荧光寿命,以生成每种物质的强度-寿命电泳图。在CZE运行期间以亚秒间隔收集的每个频域寿命测量值都包含一个完整的衰减曲线。对每个衰减曲线进行寿命分析,以构建每个寿命成分的寿命分辨电泳图,从中可以确定每个寿命在宽CZE峰上的相对强度贡献的变化。还测定了样品批次溶液的吸收光谱、荧光激发-发射光谱和寿命曲线。结果发现,虽然吸收光谱和荧光光谱特征倾向于区分腐殖酸和富里酸,但批次溶液寿命曲线反而区分了不同来源的样品,而与组分无关。实时寿命检测提供了样品荧光衰减的更详细视图,包括两种富里酸的寿命分辨率更高,以及基于CZE峰上的寿命曲线对样品的区分度更大。