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The investigation of anti-inflammatory activity of volatile oil of Angelica sinensis by plasma metabolomics approach

机译:用血浆代谢组学方法研究当归挥发油的抗炎活性

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摘要

Angelica sinensis (AS) is an important medicinal plant, and volatile oil is the main pharmacologically active ingredient. This study was aimed to investigate the anti-inflammatory activity of the volatile oil of A. sinensis (VOAS) and explore its potential anti-inflammatory mechanism by plasma metabolomics approach. Rat acute inflammation was induced by subcutaneous injection of carrageenan in hind paws. Paw edema, histamine (HIS) and 5-hydroxytryptamine (5-HT) were detected. Then, we analyzed plasma metabolic profiling of acute inflammation and performed pathway analysis on the metabolite markers reversed after VOAS administration and further integration of metabolic networks. The results showed that VOAS could alleviate the paw edema and decrease plasma HIS and 5-HT levels. Fourteen metabolite markers of acute inflammation were screened, and the levels were all reversed to different degrees after VOAS administration. These metabolite markers mainly related to linoleic acid metabolism, ascorbate and aldarate metabolism, arachidonic acid metabolism, glyoxylate and dicarboxylate metabolism, and glycine, serine and threonine metabolism. In metabolic networks, glycine and arachidonic acid were node molecules. It indicated that VOAS could significantly inhibit systemic inflammatory response triggered by acute local stimulation and it exerted anti-inflammatory activity mainly through regulating the disturbed metabolic networks centered on glycine and arachidonic acid. (C) 2015 Elsevier B.V. All rights reserved.
机译:当归(AS)是重要的药用植物,挥发油是主要的药理活性成分。本研究旨在探讨中华曲霉挥发油的抗炎活性,并通过血浆代谢组学方法探讨其潜在的抗炎机制。皮下注射角叉菜胶可诱发大鼠急性炎症。检出爪水肿,组胺(HIS)和5-羟基色胺(5-HT)。然后,我们分析了急性炎症的血浆代谢谱,并对通过VOAS给药和代谢网络的进一步整合后逆转的代谢物标记物进行了途径分析。结果表明,VOAS可以减轻爪水肿并降低血浆HIS和5-HT水平。筛查了14种急性炎症的代谢物标志物,并在VOAS施用后将其水平全部反转至不同程度。这些代谢物标志物主要与亚油酸代谢,抗坏血酸和藻酸酯代谢,花生四烯酸代谢,乙醛酸和二羧酸酯代谢以及甘氨酸,丝氨酸和苏氨酸代谢有关。在代谢网络中,甘氨酸和花生四烯酸是节点分子。这表明VOAS可以显着抑制急性局部刺激引起的全身炎症反应,并且主要通过调节以甘氨酸和花生四烯酸为中心的紊乱代谢网络来发挥抗炎活性。 (C)2015 Elsevier B.V.保留所有权利。

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