Kamal Amira H, Hammad Mohamed A, Kannouma Reham E, Mansour Fotouh R
Department of Pharmaceutical Analytical Chemistry, Faculty of Pharmacy, Tanta University, Tanta, 31111, Egypt.
Department of Analytical Chemistry, Faculty of Pharmacy, University of Sadat City, Tanta, 32958, Egypt.
BMC Chem. 2022 May 14;16(1):33. doi: 10.1186/s13065-022-00826-w.
A vortex-assisted dispersive liquid-liquid microextraction (DLLME) method, mated to chemometrics and combined with HPLC/UV detection was optimized and validated for enrichment and determination of repaglinide in environmental samples using nateglinide as an internal standard (IS). A phosphate buffer (10 mM, pH 2.5): acetonitrile (45:55, v/v) was used as a mobile phase with a flow rate of 1 mL/min in an isocratic elution mode. Chemometrics-assisted optimization was performed using a quadratic integrated D-optimal design. The developed model assessed the statistical significance of the independent variables and their interactions to attain the optimum conditions revealing that extractant type, extractant volume and pH are the most influential factors. Optimization of the extraction procedures was performed with the aid of Design Expert 8® software, which suggested 58 different experiments. The optimal conditions were 30 µL of 1-octanol as extractant, 100 µL of acetonitrile as a disperser at pH 8. Under the optimized conditions, the method showed linearity over the range of 1-100 ng/mL with a limit of detection of 0.4 ng/mL. The accuracy, the intra- and inter-day precision were assessed, the %recoveries were found to be between 98.48 and 100.81% with %RSD lower than 1.3. Using chemometrics in method optimization helped achieve the maximum possible enrichment with the least effort, time, and reagents while considering all possible interactions between variables.
建立了一种涡旋辅助分散液液微萃取(DLLME)方法,该方法与化学计量学相结合,并与HPLC/UV检测联用,以那格列奈为内标(IS),用于环境样品中瑞格列奈的富集和测定。采用磷酸盐缓冲液(10 mM,pH 2.5):乙腈(45:55,v/v)作为流动相,等度洗脱模式下流速为1 mL/min。使用二次积分D-最优设计进行化学计量学辅助优化。所建立的模型评估了自变量及其相互作用的统计显著性,以获得最佳条件,结果表明萃取剂类型、萃取剂体积和pH是最具影响的因素。借助Design Expert 8®软件对萃取程序进行优化,该软件建议了58个不同的实验。最佳条件为:30 μL 1-辛醇作为萃取剂,100 μL乙腈作为分散剂,pH为8。在优化条件下,该方法在1-100 ng/mL范围内呈线性,检测限为0.4 ng/mL。评估了方法的准确性、日内和日间精密度,回收率在98.48%至100.81%之间,相对标准偏差低于1.3%。在方法优化中使用化学计量学有助于在考虑变量之间所有可能相互作用的同时,以最少的工作量、时间和试剂实现最大程度的富集。