National Center for Natural Products Research, School of Pharmacy, The University of Mississippi, University, MS, USA.
Division of Pharmacognosy, Department of BioMolecular Sciences, School of Pharmacy, The University of Mississippi, University, MS, USA.
Planta Med. 2021 Apr;87(5):417-427. doi: 10.1055/a-1240-6186. Epub 2020 Oct 21.
is known as a drumstick tree and is cultivated in the subtropics and tropics. It exhibits antihypertensive and antidiabetic effects. An ultra-high-performance liquid chromatography method was developed for the determination of 9 phytochemicals in leaves and marketed products. The efficient separation was achieved within 7 min with a temperature of 45 °C by using a C-18 column as the stationary phase and water/acetonitrile with 0.05% formic acid as the mobile phase. The method was validated for linearity, repeatability, limits of detection, and limits of quantification. The limits of detections of phenolic compounds 1: - 9: were as low as 0.2 µg/mL. The photodiode array detector at 220 and 255 nm wavelengths was recruited for quantification. The key phytochemicals were detected in the range of 0.42 to 2.57 mg/100 mg sample weight in 13 dietary supplements. This study considers the quantitative analysis for lignans in for the first time. Isoquercitrin (5: ) and quercetin 3--(6--malonyl)--D-glucopyranoside (6: ) predominates the leaves of with inherent degradable nature detected for compound 6: . Niazirin (2: ) was detected in amounts between 0.010 - 0.049 mg/100 mg while compound 1: was undetectable and potentially an artifact because of the fractionation process. The characterization and confirmation of components were achieved by liquid chromatography-electrospray ionization-mass spectrometry with extractive ion monitoring for the positive and negative ion modes. The developed and validated method is robust and rapid in the conclusive quantification of phytochemicals and authentication of the samples for quality assurance.
该植物被称为辣木叶,生长在亚热带和热带地区。它具有降血压和降血糖的作用。建立了一种超高效液相色谱法,用于测定叶和市售产品中的 9 种植物化学物质。通过使用 C-18 柱作为固定相,水/乙腈中含有 0.05%甲酸作为流动相,在 45°C 的温度下,在 7 分钟内实现了高效分离。该方法对线性、重复性、检测限和定量限进行了验证。酚类化合物 1:-9:的检测限低至 0.2µg/mL。采用 220nm 和 255nm 波长的光电二极管阵列检测器进行定量。在 13 种膳食补充剂中,检测到的关键植物化学物质含量在 0.42 至 2.57mg/100mg 样品重量之间。本研究首次考虑对辣木叶中的木脂素进行定量分析。异槲皮苷(5:)和槲皮素 3--(6--丙二酰基)-D-吡喃葡萄糖苷(6:)是辣木叶的主要成分,检测到化合物 6:具有固有可降解性。尼扎林(2:)的含量在 0.010-0.049mg/100mg 之间,而化合物 1:未被检测到,可能是由于分馏过程中的一种副产物。采用液相色谱-电喷雾电离-质谱法,通过提取离子监测对正、负离子模式进行成分的表征和确认。所建立和验证的方法快速、稳健,可用于植物化学物质的定量分析和辣木叶样品的鉴定,以保证质量。