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一种全面的策略,用于分析越南特有金茶花花朵和叶片中的代谢产物。

A Comprehensive Strategy for Metabolites Profiling of Flowers and Leaves from Camellia tienii, an Endemic Golden Tea of Vietnam.

机构信息

University of Science and Technology of Ha Noi, Vietnam Academy of Science and Technology, 18 Hoang Quoc Viet, Cau Giay, Hanoi, Vietnam.

BIOPI-UPJV Lab of UMRt BioEcoAgro, INRAE1158, Amiens, France.

出版信息

Chem Biodivers. 2024 Oct;21(10):e202400997. doi: 10.1002/cbdv.202400997. Epub 2024 Sep 16.

DOI:10.1002/cbdv.202400997
PMID:39054897
Abstract

Golden camellia is defined as a species of the Camellia genus with yellow flowers, which have long been used as a medicine, food, and cosmetic in many Asian countries. To date, more than 50 golden camellia species are considered endemic in Vietnam; however, more information is needed about its chemical constituents and biological activity. This work aims to unveil the potential of Camellia tienii Ninh, a golden camellia species, as an herbal beverage by examining the presence and abundance of chemical components in flowers and leaves. A comprehensive strategy has been developed using both liquid and gas chromatography coupled with mass spectrometry. Specifically, LC-MS-based widely targeted analyses were opted to characterize 158 polar metabolites belonging mainly to flavonoids, catechins, and amino acids classes, and an untargeted approach using GC-MS annotated 42 major volatile compounds such as terpenes and fatty acids. The extensive profile revealed by these techniques could help understand the significant discrimination between two organs. C. tienii flowers accumulated more flavonoids, amino acids, and fatty acids, while leaves contain more terpenes, suggesting different pharmacological properties of these materials. Overall, this pipeline can be applied for other Camellia species and valorization of these valuable resources for health benefits purposes.

摘要

金花茶被定义为黄色花朵的山茶属物种,长期以来一直被许多亚洲国家用作药物、食品和化妆品。迄今为止,越南境内已有 50 多种金花茶被认为是特有种;然而,关于其化学成分和生物活性的信息还不够多。本工作旨在通过研究花和叶中化学成分的存在和丰度,揭示金花茶(Camellia tienii Ninh)作为草本饮料的潜力。采用液质联用和气质联用两种方法建立了全面的策略。具体来说,选择基于 LC-MS 的广泛靶向分析来表征主要属于类黄酮、儿茶素和氨基酸的 158 种极性代谢物,而使用 GC-MS 注释的非靶向方法则鉴定了 42 种主要挥发性化合物,如萜类化合物和脂肪酸。这些技术所揭示的广泛的特征图谱有助于理解两个器官之间的显著差异。C. tienii 花积累了更多的类黄酮、氨基酸和脂肪酸,而叶子则含有更多的萜类化合物,表明这些物质具有不同的药理特性。总的来说,该流水线可应用于其他山茶属物种,并可对这些有价值的资源进行增值利用,以造福健康。

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