Roberts K P, Jankowiak R, Small G J
Ames Laboratory--USDOE, Iowa 50011, USA.
Anal Chem. 2001 Mar 1;73(5):951-6. doi: 10.1021/ac0008789.
We have demonstrated, for the first time, that high-performance liquid chromatography (HPLC) can be interfaced with fluorescence line-narrowing spectroscopy (FLNS) for on-line identification and characterization of analytes. Interfacing centered primarily on the design and construction of a novel liquid helium cryostat that accommodates variable-sized quartz tubes/capillaries suitable for HPLC as well as capillary electrophoresis/electrochromatography. In addition to the high spectral resolution afforded by FLNS, analyzing the separated components at 4.2 K minimizes photodegradation from the excitation source and provides indefinite detection times for signal averaging. The proof-of-principle for the HPLC-FLNS system is first demonstrated with a mixture of four structurally similar polycyclic aromatic hydrocarbons and then applied to the analysis of DNA adducts from mouse skin exposed to the carcinogen dibenzo[a,l]pyrene. With femtomole detection limits, HPLC-FLNS can be used for real-world analyses of complex mixtures.
我们首次证明,高效液相色谱(HPLC)可与荧光线窄化光谱(FLNS)联用,用于在线鉴定和表征分析物。联用主要集中在新型液氦低温恒温器的设计和构建上,该低温恒温器可容纳适用于HPLC以及毛细管电泳/电色谱的不同尺寸的石英管/毛细管。除了FLNS提供的高光谱分辨率外,在4.2 K下分析分离出的组分可将激发源引起的光降解降至最低,并为信号平均提供无限的检测时间。首先用四种结构相似的多环芳烃混合物证明了HPLC-FLNS系统的原理验证,然后将其应用于分析暴露于致癌物二苯并[a,l]芘的小鼠皮肤中的DNA加合物。由于具有飞摩尔检测限,HPLC-FLNS可用于复杂混合物的实际分析。