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首页> 外文期刊>Food and Chemical Toxicology: An International Journal Published for the British Industrial Biological Research >Chemical findings and in vitro biological studies to uphold the use of Ficus exasperata Vahl leaf and stem bark
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Chemical findings and in vitro biological studies to uphold the use of Ficus exasperata Vahl leaf and stem bark

机译:化学调查结果和体外生物学研究,秉承Ficus exasperata VAHL叶和茎树皮的使用

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Ficus exasperata Vahl, commonly known as sandpaper, is a terrestrial Afro-tropical tree used in popular medicine. Despite the existence of some works on the biological activities of this species, its chemical composition is still poorly known. The aim of this study was to extend the knowledge on the phytochemistry and biological properties of this species. Aqueous extracts from F. exasperata leaves and stem bark were analysed. Thirty-one phenolic compounds, comprising cinnamoyl derivatives, flavonoid-O-glycosides, flavonoid-mono-C-glycosides, flavonoid-di-C-glycosides and one furanocoumarin, were determined by HPLC-DAD-ESI/MSn and UPLC-ESI-QTOF-MS, 26 of them being reported for the first time in this species. The profile of organic acids, characterized by HPLC-UV, was also reported for the first time. The best radical scavenging activity was observed for the aqueous extract from leaves (IC50 values of 222.5, 510.0 and 50.0 mu g/mL against DPPH center dot, (NO)-N-center dot and O-2(center dot-), respectively). In addition, both aqueous extracts of the leaves and stem bark displayed a weak effect on alpha-amylase, and no cytotoxicity against gastric adenocarcinoma cell line, AGS. This study contributes to the valorisation of these vegetal materials, which may have application in functional foods and/or nutraceuticals.
机译:Ficus Exasperata VAHL,俗称砂纸,是一种用于流行医学的陆地蓬热带。尽管存在对该物种的生物学活性有些作用,但其化学成分仍然是众所周知的。本研究的目的是扩大关于该物种的植物化学和生物学性质的知识。分析来自F. exasperata叶子和茎树皮的含水萃取物。通过HPLC-DAD-ESI / MSN和UPLC-ESI测定包含肉桂酰衍生物,黄酮醇-O-糖苷,黄酮类 - 单糖苷,黄酮类二甲糖苷和一种呋喃替莫里林的黄酮类二甲糖苷和一种呋喃替莫里林的酚类化合物QTOF-MS,其中26次在此类中首次报告。还首次报道了具有HPLC-UV的有机酸的轮廓,其特征在于HPLC-UV。从叶片(IC50值为222.5,510.0和50.0μmG/ ml对阵DPPH中心点,(NO)-N中心点和O-2(中心点)的情况下,观察到最佳的自由基清除活性)。此外,叶片和茎树皮的含水提取物对α-淀粉酶的薄弱作用,并且没有针对胃腺癌细胞系的细胞毒性。该研究有助于这些植物材料的储存,这可能适用于功能性食品和/或营养保健品。

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