Pharmacognosy Department, National Research Center, Dokki, Giza, Egypt.
Pharmacognosy Department, College of Pharmacy, Cairo University, Cairo, Egypt.
J Food Biochem. 2021 Apr;45(4):e13648. doi: 10.1111/jfbc.13648. Epub 2021 Feb 9.
Caryota mitis and Caryota urens (F. Arecaceae) are well reported in Ayurvedic medicine and involved in several edible food products. Herein, the first comparative profiling of their leaf and fruit metabolites of both species via HR-UPLC/PDA/ESI-MS and multivariate data analyses is presented. A total of 142 metabolites were detected with seven reported for the first time in F. Arecaceae and a novel O-caffeoylshikimic acid conjugate. Screening of plants' leaf crude extracts via in vitro DCPIP kinetic assay revealed the induction of phase II cytoprotective enzyme NQO1 by 4.5- to 5-fold versus control, suggestive of potential chemopreventive activity. Two novel sulfated flavonols that is quercetin-3-O-sulfate-4'-O-rhamnosyl (1→6)-β-d-glucoside (F1) and kaempferol-3-O-sulfate-4'-O-rhamnosyl(1→6)-β-d-glucoside (F3) in addition to another five known flavonoids were isolated from C. mitis ethanol extract and identified via MS and NMR spectroscopic techniques. Among isolated compounds, F1 and F3 exhibited the highest docking score as KEAP-1 inhibitors and Nrf2 activators posing them as potential chemopreventive drug leads. PRACTICAL APPLICATIONS: The study extends the usages of this edible less explored Caryota species to a potential cancer chemopreventive action. Guided by the extensive chemical information presented herein, additional uses could be suggested for these plants with 142 identified metabolites including androst-en-diol that has aphrodisiac and muscle building effects. The presented multivariate data analyses could aid phytochemists in plants classification and mapping (chemotaxonomy) since several metabolites are reported herein for the first time either in family or genus.
糖棕和鱼尾葵(槟榔科)在印度阿育吠陀医学中已有很好的记载,并涉及多种可食用的食品。在此,首次通过 HR-UPLC/PDA/ESI-MS 和多元数据分析对这两个物种的叶和果代谢物进行了比较分析。共检测到 142 种代谢物,其中 7 种为槟榔科首次报道,一种新的 O-咖啡酰莽草酸共轭物。通过体外 DCPIP 动力学测定筛选植物叶粗提取物,发现与对照相比,4.5 至 5 倍诱导了 II 相细胞保护酶 NQO1,表明其具有潜在的化学预防活性。从糖棕乙醇提取物中分离得到两种新型硫酸化黄酮醇,即槲皮素-3-O-硫酸-4'-O-鼠李糖苷(F1)和山奈酚-3-O-硫酸-4'-O-鼠李糖苷(F3),以及另外五种已知的黄酮类化合物,通过 MS 和 NMR 光谱技术对其进行了鉴定。在所分离的化合物中,F1 和 F3 作为 KEAP-1 抑制剂和 Nrf2 激活剂的对接评分最高,表明它们可能是潜在的化学预防药物先导物。实际应用:该研究将这种食用较少的探索性卡里塔物种的用途扩展到潜在的癌症化学预防作用。根据本文提供的广泛化学信息,可以为这些植物提供更多的用途,包括具有壮阳和增肌作用的雄烯二酮。本文首次报道了 142 种代谢物,包括在科或属中首次报道的代谢物,提出的多元数据分析可以帮助植物化学家对植物进行分类和图谱绘制(化学分类学)。