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The Influence of Drying Temperatures on the Metabolic Profiles and Antioxidant Activity of Manilkara zapota Leaves

机译:干燥温度对马齿kara叶片代谢特性和抗氧化活性的影响

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摘要

In the present study, the leaves of (L.) P. Royen (Sapotaceae), an evergreen tree recognized for its medicinal properties in Southern Mexico, were used as a model to study the effect of different drying temperatures on its metabolic profile and therefore, its antioxidant potential. For this purpose, a methanol extraction of leaves dried at room temperature (25 °C) or by heat convection (50, 75 and 100 °C) were compared in terms of drying efficiency, yield of extraction, total phenol content, H-NMR metabolic profile, and DPPH antioxidant activity. The drying curves enabled the fact to be uncovered that drying efficiency improves with increase of temperature, as does the level of total phenols and antioxidant activity. A metabolomics approach using principal component analysis (PCA) and orthogonal projections to latent structures discriminant analysis (OPLS-DA) of the corresponding H-NMR profiles allowed the impact of the drying temperature on their metabolic profile to be documented and also, caffeic acid and epicatechin as main secondary metabolites contributing to the antioxidant activity of to be identified.
机译:在本研究中,以墨西哥南部具有药用特性的常绿乔木(L.)Royen(Sapotaceae)的叶子为模型,研究了不同干燥温度对其代谢谱的影响,因此,其抗氧化潜力。为此,在干燥效率,提取率,总酚含量,H-NMR方面,比较了在室温(25°C)或通过热对流(50、75和100°C)干燥的叶片的甲醇提取率代谢状况和DPPH抗氧化活性。干燥曲线使人们得以揭露干燥效率随温度的升高而提高,总酚水平和抗氧化剂活性也随之提高。使用主成分分析(PCA)和正交投影对相应的H-NMR谱进行潜在结构判别分析(OPLS-DA)的代谢组学方法可记录干燥温度对其代谢谱的影响,并记录咖啡酸和表儿茶素是主要的次要代谢产物,有助于抗氧化活性的鉴定。

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