首页> 外文期刊>European Journal of Medicinal Plants >Ginkgetin or Isoginkgetin: The Dimethylamentoflavone of Dioon edule Lindl. Leaves
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Ginkgetin or Isoginkgetin: The Dimethylamentoflavone of Dioon edule Lindl. Leaves

机译:银杏黄素或异银杏黄素:Dioon edule Lindl的二甲基黄酮。树叶

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Aims: Phytochemical study of the biflavonoid content of Dioon edule Lindl. leaves in addition to quantification of the phenolic content and evaluation of their antioxidant potential. Methodology: Chromatographic isolation of the total alcohol extract of the leaves followed by the spectroscopic identification of the isolated compounds was performed adopting 1D, 2D NMR techniques. The total phenolic content (TPC) was determined using the Folin-Ciocalteu method and the total flavonoids content (TFC) was measured by complexation with aluminum chloride and the antioxidant activity was evaluated with DPPH (2.2-diphenyl-1-picrylhydrazyl) assay. Results: Phytochemical investigation of Dioon edule Lindl. leaves afforded the isolation of 7,4′,7″,4″′-tetramethylamentoflavone (1), 4′,4″′-dimethylamentoflavone (isoginkgetin) (2) biolbetin (3) and amentoflavone (4) in addition to β-sitosterol (5). A more accurate assignment of 13C-NMR data of the methylated amentoflavone derivatives is performed using 2D NMR (HMQC and HMBC). Compounds 2 and 5 are reported for the first time in Dioon edule Lindl. leaves. Previous report on D. edule Lindl. leaves afforded the isolation of ginkgetin (6) as a dimethylamentoflavone but our investigation proved that it is isoginkgetin. The TPC was 0.27±0.01 gallic acid equivalents in mg/g plant material. The TFC was 1.8473±0.077 rutin equivalents in mg/g plant material. The plant exhibited a good antioxidant property as DPPH scavenging activity was 3.29±0.251 mg ascorbic acid equivalent antioxidant capacity in 1 g plant material. Conclusion: The phytochemical study of D. edule Lindl. leaves afforded isoginkgetin instead of the previously reported ginkgetin. The use of NMR provides the most powerful tool for a more accurate assignment of biflavonoids.
机译:目的:对Dioon edule Lindl中的总黄酮含量进行植物化学研究。除了酚含量的定量和其抗氧化能力的评估外,还留有叶子。方法:采用1D,2D NMR技术对叶中总醇提取物进行色谱分离,然后对分离出的化合物进行光谱鉴定。使用Folin-Ciocalteu方法确定总酚含量(TPC),通过与氯化铝络合测量总黄酮含量(TFC),并通过DPPH(2.2-二苯基-1-吡啶并肼基)测定抗氧化活性。结果:Dioon edule Lindl的植物化学研究。除β-谷甾醇(5)。使用2D NMR(HMQC和HMBC)对甲基化的黄酮类衍生物的 13 C-NMR数据进行更准确的分配。化合物2和5首次在Dioon edind Lindl中报道。树叶。 D. edule Lindl的先前报告。叶片分离出银杏黄酮(6),为二甲基甲黄酮,但我们的研究证明它是异银杏黄酮。 TPC是mg / g植物材料中的0.27±0.01没食子酸当量。 TFC为mg / g植物材料中的1.8473±0.077芦丁当量。该植物表现出良好的抗氧化性能,因为在1 g植物材料中DPPH清除活性为3.29±0.251 mg抗坏血酸当量。结论:小叶石竹的植物化学研究。叶子提供了isoginkgetin,而不是以前报道的ginkgetin。 NMR的使用为更准确地分配双黄酮提供了最强大的工具。

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