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A direct protein kinase B-targeted anti-inflammatory activity of cordycepin from artificially cultured fruit body of Cordyceps militaris

机译:mil虫草人工培养的虫草对虫草素的直接蛋白激酶B靶向抗炎活性

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Background:Cordyceps militaris is one of well-known medicinal mushrooms with anti-inflammatory, anti-cancer, anti-diabetic, and anti-obesity activities.Objective:The objective of the following study is to isolate chemical components from the ethanol extract (Cm-EE) from Cordyceps militaris and to evaluate their anti-inflammatory activities.Materials and Methods:Column chromatographic separation was performed and anti-inflammatory roles of these compounds were also examined by using NO production and protein kinase B (AKT) activity assays.Results:From Cm-EE, 13 constituents, including trehalose (1), cordycepin (2), 6-hydroxyethyladenosine (3), nicotinic amide (4), butyric acid (5), β-dimorphecolic acid (6), α-dimorphecolic acid (7), palmitic acid (8), linoleic acid (9), cordycepeptide A (10), 4-(2-hydroxy-3-((9E,12E)-octadeca-9,12-dienoyloxy)propoxy)-2-(trimethylammonio)butanoate (11), 4-(2-hydroxy-3-(palmitoyloxy)propoxy)-2-(trimethylammonio)butanoate (12), and linoleic acid methyl ester (13) were isolated. Of these components, compound 2 displayed a significant inhibitory effect on NO production in lipopolysaccharide (LPS)-activated RAW264.7 cells. Furthermore, this compound strongly and directly suppressed the kinase activity of AKT, an essential signalling enzyme in LPS-induced NO production, by interacting with its ATP binding site.Conclusion:C. militaris could have anti-inflammatory activity mediated by cordycepin-induced suppression of AKT.
机译:背景:Cor虫草是具有抗炎,抗癌,抗糖尿病和抗肥胖作用的著名药用蘑菇之一。目的:以下研究的目的是从乙醇提取物中分离化学成分(Cm材料和方法:进行柱色谱分离,并使用NO产生和蛋白激酶B(AKT)活性测定法研究了这些化合物的抗炎作用。 :来自Cm-EE的13种成分包括海藻糖(1),虫草素(2),6-羟乙基腺苷(3),烟酰胺(4),丁酸(5),β-二吗啡酸(6),α-二吗啡酸酸(7),棕榈酸(8),亚油酸(9),虫草肽A(10),4-(2-羟基-3-((9E,12E)-octadeca-9,12-dinoyloxy)propoxy)- 2-(三甲基铵)丁酸酯(11),4-(2-羟基-3-(棕榈酰氧基)丙氧基)-2-(三甲基铵)丁酸酯(12)和亚油酸甲酯er(13)被隔离了。在这些成分中,化合物2对脂多糖(LPS)激活的RAW264.7细胞中NO的产生具有明显的抑制作用。此外,该化合物通过与其ATP结合位点相互作用,强烈而直接地抑制了AKT的激酶活性,AKT是LPS诱导的NO产生中的必需信号转导酶。 cord虫草可能具有由虫草素诱导的AKT抑制介导的抗炎活性。

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