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一种新型衍生试剂用于高效液相色谱荧光检测法改善氨基酸分析的研究:应用于水解油菜蜂花粉

Study of a new derivatizing reagent that improves the analysis of amino acids by HPLC with fluorescence detection: application to hydrolyzed rape bee pollen.

作者信息

You Jinmao, Liu Lingjun, Zhao Wenchen, Zhao Xianen, Suo Yourui, Wang Honglun, Li Yulin

机构信息

Northwest Plateau Institute of Biology, Chinese Academy of Sciences, Xining 810001, China.

出版信息

Anal Bioanal Chem. 2007 Apr;387(8):2705-18. doi: 10.1007/s00216-007-1155-9. Epub 2007 Feb 28.

Abstract

A simple and sensitive method for evaluating the chemical compositions of protein amino acids, including cystine (Cys)(2) and tryptophane (Try) has been developed, based on the use of a sensitive labeling reagent 2-(11H-benzo[alpha]-carbazol-11-yl) ethyl chloroformate (BCEC-Cl) along with fluorescence detection. The chromophore of the 1,2-benzo-3,4-dihydrocarbazole-ethyl chloroformate (BCEOC-Cl) molecule was replaced with the 2-(11H-benzo[alpha]-carbazol-11-yl) ethyl functional group, yielding the sensitive fluorescence molecule BCEC-Cl. The new reagent BCEC-Cl could then be substituted for labeling reagents commonly used in amino acid derivatization. The BCEC-amino acid derivatives exhibited very high detection sensitivities, particularly in the cases of (Cys)(2) and Try, which cannot be determined using traditional labeling reagents such as 9-fluorenyl methylchloroformate (FMOC-Cl) and ortho-phthaldialdehyde (OPA). The fluorescence detection intensities for the BCEC derivatives were compared to those obtained when using FMOC-Cl and BCEOC-Cl as labeling reagents. The ratios I (BCEC)/I (BCEOC) = 1.17-3.57, I (BCEC)/I (FMOC) = 1.13-8.21, and UV(BCEC)/UV(BCEOC) = 1.67-4.90 (where I is the fluorescence intensity and UV is the ultraviolet absorbance). Derivative separation was optimized on a Hypersil BDS C(18) column. The detection limits calculated from 1.0 pmol injections, at a signal-to-noise ratio of 3, ranged from 7.2 fmol for Try to 8.4 fmol for (Cys)(2). Excellent linear responses were observed, with coefficients of >0.9994. When coupled with high-performance liquid chromatography, the method established here allowed the development of a highly sensitive and specific method for the quantitative analysis of trace levels of amino acids including (Cys)(2) and Try from bee-collected pollen (bee pollen) samples.

摘要

基于使用灵敏的标记试剂2-(11H-苯并[α]-咔唑-11-基)氯甲酸乙酯(BCEC-Cl)并结合荧光检测,已开发出一种用于评估蛋白质氨基酸化学组成的简单且灵敏的方法,这些氨基酸包括胱氨酸(Cys)(2)和色氨酸(Try)。1,2-苯并-3,4-二氢咔唑-氯甲酸乙酯(BCEOC-Cl)分子的发色团被2-(11H-苯并[α]-咔唑-11-基)乙基官能团取代,从而得到灵敏的荧光分子BCEC-Cl。然后,新试剂BCEC-Cl可替代氨基酸衍生化中常用的标记试剂。BCEC-氨基酸衍生物表现出非常高的检测灵敏度,特别是在(Cys)(2)和Try的情况下,而使用传统标记试剂如9-芴甲基氯甲酸酯(FMOC-Cl)和邻苯二甲醛(OPA)则无法测定它们。将BCEC衍生物的荧光检测强度与使用FMOC-Cl和BCEOC-Cl作为标记试剂时获得的强度进行了比较。比值I(BCEC)/I(BCEOC)=1.17 - 3.57,I(BCEC)/I(FMOC)=1.13 - 8.21,以及UV(BCEC)/UV(BCEOC)=1.67 - 4.90(其中I为荧光强度,UV为紫外吸光度)。在Hypersil BDS C(18)柱上对衍生物分离进行了优化。在信噪比为3时,由1.0 pmol进样量计算出的检测限范围为:Try为7.2 fmol,(Cys)(2)为8.4 fmol。观察到了出色的线性响应,系数>0.9994。当与高效液相色谱联用时,此处建立的方法能够开发出一种高度灵敏且特异的方法,用于定量分析来自蜜蜂采集花粉(蜂花粉)样品中的痕量氨基酸,包括(Cys)(2)和Try。

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