Laboratory of Advanced Analytical Techniques in Natural Products, Universidad de los Andes, Bogotá 111711, Colombia.
"Grupo de Investigación en Productos Naturales Amazónicos", Facultad de Ciencias Básicas, Universidad de la Amazonia, Florencia 180002, Colombia.
Biomolecules. 2019 Jul 31;9(8):328. doi: 10.3390/biom9080328.
In this study, we describe the optimization of a Hydrophilic Interaction Liquid Chromatography coupled to mass spectrometry (HILIC-MS) method for the evaluation of 14 metabolites related to the de novo synthesis of pyrimidines (dnSP) while using multivariate analysis, which is the metabolic pathway for pyrimidine nucleotide production. A multivariate design was used to set the conditions of the column temperature, flow of the mobile phase, additive concentration, gradient rate, and pH of the mobile phase in order to attain higher peak resolution and ionization efficiency in shorter analysis times. The optimization process was carried out while using factorial fractional designs, Box-Behnken design and central composite design while using two zwitterionic columns, ZIC-p-HILIC and ZIC-HILIC, polymeric, and silica-based columns, respectively. The factors were evaluated while using resolution (R), retention factor (), efficiency of the column (N), and peak height (h) as the response variables. The best optimized conditions were found with the ZIC-p-HILIC column: elution gradient rate 2 min., pH 7.0, temperature 45 °C, mobile phase flow of 0.35 mL min, and additive (ammonium acetate) concentration of 6 mM. The total analysis time was 28 min. The ZIC-p-HILIC LC-MS method yielded satisfactory results for linearity of calibration curves, limit of detection (LOD), and limit of quantification (LOQ). The method has been shown to be appropriate for the analysis of dnSP on samples of tomato plants that were infected with Phytophthora infestans.
在这项研究中,我们描述了亲水相互作用液相色谱与质谱联用(HILIC-MS)方法的优化,用于评估与从头合成嘧啶(dnSP)相关的 14 种代谢物,同时使用多元分析,这是嘧啶核苷酸产生的代谢途径。使用多元设计来设置柱温、流动相流速、添加剂浓度、梯度速率和流动相 pH 等条件,以在更短的分析时间内获得更高的峰分辨率和离子化效率。优化过程是在使用析因分数设计、Box-Behnken 设计和中心复合设计的同时,分别使用两种两性离子柱(ZIC-p-HILIC 和 ZIC-HILIC)、聚合物和硅胶柱进行的。使用分辨率(R)、保留因子()、柱效(N)和峰高(h)作为响应变量来评估因素。使用 ZIC-p-HILIC 柱找到了最佳的优化条件:洗脱梯度速率为 2 分钟,pH 值为 7.0,温度为 45°C,流动相流速为 0.35 mL min,添加剂(乙酸铵)浓度为 6 mM。总分析时间为 28 分钟。ZIC-p-HILIC LC-MS 方法在番茄植物感染疫霉菌样本的 dnSP 分析中表现出令人满意的校准曲线线性、检测限(LOD)和定量限(LOQ)结果。