Kumar Niraj, Tripathi Nancy, Kumar Sanjeev, Kushwaha Manoj, Banerjee Chiranjib, Dey Swapan
Department of Chemistry and Chemical Biology, Indian Institute of Technology (ISM), Dhanbad, India.
Cadila Pharmaceuticals Ltd., Dholka, India.
J Biomol Struct Dyn. 2024;42(19):9939-9948. doi: 10.1080/07391102.2023.2253914. Epub 2023 Sep 5.
The bioassay-guided fractionation of the extract of aerial parts of resulted in two fractions 3 and 4 with moderate and potent antioxidant activity, respectively. The purification of fraction 3 gave swertiamarin (), while the LCMS profile of fraction 4 unveiled the presence of another constituent along with swertiamarin. The extensive purification of fraction 4 led to the unusual isolation of mangiferin () from . The uncommon isolation of mangiferin from motivated us to conduct its and screening as an anti-inflammatory agent. Both studies have proved mangiferin to be a promising anti-inflammatory molecule with a binding energy of -9.17 kcal/mol against Cyclooxygenase-2 protein and IC of 146.07 nanomolar. This study is the first report of the isolation of mangiferin, a xanthone glycoside from e.Communicated by Ramaswamy H. Sarma.
对[植物名称]地上部分提取物进行生物测定导向的分馏,得到了分别具有中等和强抗氧化活性的两个馏分3和4。馏分3的纯化得到了獐牙菜苦苷(),而馏分4的液相色谱-质谱图谱显示除獐牙菜苦苷外还存在另一种成分。馏分4的广泛纯化导致从不常见的[植物名称]中分离出芒果苷()。从不常见的[植物名称]中分离出芒果苷促使我们将其作为抗炎剂进行[相关实验]和[相关实验]筛选。两项研究均证明芒果苷是一种有前景的抗炎分子,其对环氧合酶-2蛋白的结合能为-9.17千卡/摩尔,半数抑制浓度为146.07纳摩尔。本研究是首次报道从[植物名称]中分离出芒果苷(一种氧杂蒽酮糖苷)。由拉马斯瓦米·H·萨尔马通讯。