Laboratory of Applied Chemical Analysis, Department of Exact and Earth Sciences, Federal University of São Paulo, Diadema, SP, Brazil.
Laboratory of Applied Chemical Analysis, Department of Exact and Earth Sciences, Federal University of São Paulo, Diadema, SP, Brazil.
J Pharm Biomed Anal. 2022 Feb 20;210:114586. doi: 10.1016/j.jpba.2022.114586. Epub 2022 Jan 7.
Experimental mixture design was drawn to evaluated the effects of the interactions between water, methanol and ethyl acetate mixtures on the extraction efficiency of coumarin (1,2-benzopyrone) from Dipteryx odorata seeds. Solvents were defined considering those preferred as green solvents for natural products extraction. Ultrasonic-assisted extraction method developed was simple, fast, low cost and highly selective. Analyses were performed by reversed-phase liquid chromatography using acetonitrile/water (40:60 v/v) as mobile phase, a C18 column, and a diode-array detector at 274 nm. Results were evaluated in linear, quadratic, special cubic, and full cubic models. The Full cubic model showed the best extraction results with a total error of 3.67%. The optimal extraction point was obtained using 15% water, 20% methanol, and 65% ethyl acetate (v/v). Based on the Guide for the Expression of Uncertainty in Measurements and Monte Carlo simulations, the uncertainty expression presented deviations of 1.18 and 1.64, respectively, showing the reliability of the analytical method. D. odorata seeds are popularly used in the pharmaceutical, food, and cosmetic applications due to high content of coumarins. However, the yield of coumarins extraction depends on the proper choice of the extraction method and solvents. The ternary mixture was optimized and resulted in 3.82% coumarin (weight/seed), which, compared to literature, showed a good increase over that obtained using common solvents, without considering the mathematical modeling.
实验混合设计被用来评估水、甲醇和乙酸乙酯混合物之间的相互作用对从黄檀种子中提取香豆素(1,2-苯并吡喃酮)的萃取效率的影响。溶剂是根据那些被认为是天然产物提取的绿色溶剂来定义的。所开发的超声波辅助提取方法简单、快速、低成本且高度选择性。分析采用反相液相色谱法,以乙腈/水(40:60 v/v)为流动相,C18 柱,二极管阵列检测器在 274nm 处进行。结果在线性、二次、特殊立方和全立方模型中进行评估。全立方模型显示了最佳的提取结果,总误差为 3.67%。使用 15%水、20%甲醇和 65%乙酸乙酯(v/v)获得最佳提取点。基于测量不确定度的表示和蒙特卡罗模拟指南,不确定度表示分别出现了 1.18 和 1.64 的偏差,显示了分析方法的可靠性。由于香豆素含量高,黄檀种子在制药、食品和化妆品应用中很受欢迎。然而,香豆素提取的产率取决于适当选择提取方法和溶剂。三元混合物得到了优化,得到了 3.82%的香豆素(种子重量/种子),与文献相比,在不考虑数学模型的情况下,与使用常用溶剂相比,有了很好的提高。