Department of Pharmaceutical Engineering, Institute of Agricultural and Life Science, Anti-aging Bio Cell Factory Regional Leading Research Center, Gyeongsang National University, Jinju 52725, Republic of Korea.
Brain Health Lab. Co., Ltd., Business Incubating Center (C-203), Gyeongsang National University, 501 Jinju-daero, Jinju 52828, Republic of Korea.
Molecules. 2024 May 24;29(11):2494. doi: 10.3390/molecules29112494.
Spinach () is one of the most famous vegetables worldwide, rich in essential metabolites for various health benefits. It is a valuable plant source that has the potential to be a nutraceutical. This study aimed to evaluate the single characteristic marker compound to establish the validation of HPLC-DAD methods applied to the development of a nutraceutical using spinach samples. Six metabolites (-) were identified from the spinach samples such as freeze-dried spinach (FDS) and spinach extract concentrate (SEC) by LC-Q-TOF/MS analysis. Among the six metabolites, 3',4',5-trihydroxy-3-methoxy-6,7-methylenedioxyflavone 4'-glucuronide (TMG) was selected as a marker compound due to its highest abundance and high selectivity. The specificity, accuracy, linearity, precision, repeatability, limit of detection (LOD), and limit of quantification (LOQ) of TMG in the spinach samples (FDS and SEC) were validated according to AOAC international guideline. The specificity was confirmed by monitoring the well separation of the marker compound from other compounds of spinach samples in the base peak intensity (BPI) and ultraviolet (UV) chromatogram. The calibration curve of TMG (15.625~500 μg/mL) had reasonable linearity (R = 0.999) considered with LOD and LOQ values, respectively. Recovery rate of TMG was 93-101% for FDS and 90-95% for SEC. The precision was less than 3 and 6% in the intraday and interday. As a result, the HPLC-DAD validation method of TMG in the spinach samples (FDS and SEC) was first established with AOAC and KFDA regulations for approving functional ingredients in functional foods.
菠菜是全球最著名的蔬菜之一,富含对各种健康益处至关重要的代谢物。它是一种有价值的植物来源,具有成为营养保健品的潜力。本研究旨在评估单一特征标志物化合物,以建立 HPLC-DAD 方法的验证,用于开发使用菠菜样品的营养保健品。通过 LC-Q-TOF/MS 分析,从菠菜样品(如冻干菠菜(FDS)和菠菜提取物浓缩物(SEC))中鉴定出六种代谢物(-)。在六种代谢物中,由于其丰度最高且选择性高,选择 3',4',5-三羟基-3-甲氧基-6,7-亚甲二氧基黄酮 4'-葡萄糖醛酸苷(TMG)作为标志物化合物。根据 AOAC 国际指南,对菠菜样品(FDS 和 SEC)中 TMG 的特异性、准确性、线性、精密度、重复性、检测限(LOD)和定量限(LOQ)进行了验证。通过监测标记化合物与菠菜样品中其他化合物在基峰强度(BPI)和紫外(UV)色谱图中的良好分离,确认了特异性。TMG 的校准曲线(15.625-500μg/mL)具有合理的线性(R=0.999),考虑到 LOD 和 LOQ 值。FDS 中 TMG 的回收率为 93-101%,SEC 中为 90-95%。日内和日间精密度均小于 3%和 6%。因此,根据 AOAC 和 KFDA 法规,首次建立了用于批准功能食品中功能成分的 HPLC-DAD 验证方法,用于验证菠菜样品(FDS 和 SEC)中 TMG 的含量。