Fu Guoni, He Youzhao, Wang Xiaokui, Wang Lei
Department of Chemistry, University of Science and Technology of China, Hefei 230026, China.
Se Pu. 2007 Mar;25(2):193-6.
An improved capillary electrophoretic (CE) separation and indirect ultraviolet (in-UV) detection system was proposed for the amino acid analysis in tea samples with a home-made partition cell and a background electrolyte (BGE) of p-aminobenzoic acid (PAB). PAB improved the separation efficiency and detection limits of the amino acids. The partition cell prevented PAB from chemical reaction at the electrode, reduced baseline noise and kept electric current inside the cell. The separation parameters of the amino acids, such as different BG-Es, BGE concentration, buffer pH and electroosmotic flow (EOF) modifiers, were investigated. The CE separation was carried out with the running buffer solution of pH 11. 2, 10 mmol/L PAB containing 0. 014 mmol/L cetyltrimethylamonium bromide (CTAB), an applied voltage of - 15 kV and a detection wavelength of 254 nm. Sixteen amino acids were separated within 14 min under the selected conditions. The linear ranges of the amino acids were 0. 02 - 0. 60 mmol/L except for theanine (0. 02 - 3. 80 mmol/L) and gamma-aminobutyric acid (0. 02 - 2. 00 mmol/L). The recoveries were in the range from 83. 0% to 106%. The relative standard deviations of peak area were less than 5% (n = 5) and the detection limits were in the range of 1. 7 -4. 5 gammamol/L. The method is fast, convenient and sensitive, and has been applied to the determination of 11 amino acids in tea samples satisfactorily.
提出了一种改进的毛细管电泳(CE)分离和间接紫外(in-UV)检测系统,用于茶叶样品中的氨基酸分析,该系统采用自制的分配池和对氨基苯甲酸(PAB)作为背景电解质(BGE)。PAB提高了氨基酸的分离效率和检测限。分配池可防止PAB在电极处发生化学反应,降低基线噪声并保持池内电流。研究了氨基酸的分离参数,如不同的BGE、BGE浓度、缓冲液pH值和电渗流(EOF)改性剂。CE分离在pH 11.2、含有0.014 mmol/L十六烷基三甲基溴化铵(CTAB)的10 mmol/L PAB的运行缓冲溶液中进行,施加电压为-15 kV,检测波长为254 nm。在选定条件下,14分钟内分离出16种氨基酸。除茶氨酸(0.02 - 3.80 mmol/L)和γ-氨基丁酸(0.02 - 2.00 mmol/L)外,氨基酸的线性范围为0.02 - 0.60 mmol/L。回收率在83.0%至106%之间。峰面积的相对标准偏差小于5%(n = 5),检测限在1.7 - 4.5 μmol/L范围内。该方法快速、简便、灵敏,已成功应用于茶叶样品中11种氨基酸的测定。