Yang Feng Q, Li Shaoping, Li Peng, Wang Yi T
Institute of Chinese Medical Sciences, University of Macau, Taipa, Macau, China.
Electrophoresis. 2007 Jun;28(11):1681-8. doi: 10.1002/elps.200600416.
A CEC method is described for the simultaneous determination of 11 nucleosides and nucleobases including cytosine, uracil, uridine, hypoxanthine, 2'-deoxyuridine, inosine, guanosine, thymidine, adenine, adenosine, and cordycepin in Cordyceps using 5-chlorocytosine arabinoside as internal standard (IS). Chemometric optimization based on central composite design was employed to find the optimum conditions. The factors for optimization were defined as three parameters: voltage, pH, and concentration of ACN as organic modifier. The resolution (R(s)) between inosine and guanosine, as well as the entire run time were employed to evaluate the response function. A running buffer composed of 4 mM ammonium acetate and 2 mM triethylamine (TEA) adjusted to pH 5.3 using acetic acid, and containing 3% ACN as modifier, with gradient voltage (0-4 min: 20 kV, 4-12 min: linear gradient from 20 to 30 kV; 12-16 min: 30 kV) were found to be the optimum conditions for the separation. Separation of the 11 investigated compounds and 5-chlorocytosine arabinoside was achieved within 16 min. The contents of the 11 compounds in natural and cultured Cordyceps sinensis, and cultured Cordyceps militaris were also compared. The result showed that CEC is an efficient method for analysis of nucleosides and nucleobases in Cordyceps, which is helpful to control the quality of this valued traditional Chinese medicine.
描述了一种毛细管电泳法,以5-氯胞嘧啶阿拉伯糖苷作为内标(IS),同时测定冬虫夏草中的11种核苷和碱基,包括胞嘧啶、尿嘧啶、尿苷、次黄嘌呤、2'-脱氧尿苷、肌苷、鸟苷、胸苷、腺嘌呤、腺苷和虫草素。采用基于中心复合设计的化学计量学优化方法来寻找最佳条件。优化因素定义为三个参数:电压、pH值和作为有机改性剂的乙腈浓度。肌苷和鸟苷之间的分离度(R(s))以及整个运行时间被用作评估响应函数。发现由4 mM醋酸铵和2 mM三乙胺(TEA)组成的运行缓冲液,用醋酸调节至pH 5.3,并含有3%乙腈作为改性剂,采用梯度电压(0 - 4分钟:20 kV,4 - 12分钟:从20 kV线性梯度至30 kV;12 - 16分钟:30 kV)是分离的最佳条件。11种被测化合物和5-氯胞嘧啶阿拉伯糖苷在16分钟内实现了分离。还比较了天然冬虫夏草、人工培养的冬虫夏草和人工培养的蛹虫草中11种化合物的含量。结果表明,毛细管电泳法是分析冬虫夏草中核苷和碱基的有效方法,有助于控制这种珍贵中药的质量。