Effects of Different Drying Methods on Amino Acid Metabolite Content and Quality of Ophiocordyceps sinensis by LC-MS/MS Combined with Multivariate Statistical Methods.

IF 3.4 3区 生物学 Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY Metabolites Pub Date : 2024-08-18 DOI:10.3390/metabo14080459
Mengjun Xiao, Tao Wang, Chuyu Tang, Min He, Yuling Li, Xiuzhang Li
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Abstract

Ophiocordyceps sinensis, a medicinal fungus utilized in traditional Chinese medicine, exhibits a range of biological activities and pharmacological functions. In this study, we determined the amino acid composition of 94 amino acids in Ophiocordyceps sinensis using liquid chromatography-tandem mass spectrometry (LC-MS/MS). Fresh samples of Ophiocordyceps sinensis were analyzed under three different drying methods: vacuum freeze drying (DG), oven drying (HG), and air drying (YG). This investigation aims to assess the effects of these drying methods on the content and quality of amino acid metabolites in Ophiocordyceps sinensis. Principal component analysis (PCA) and hierarchical cluster analysis (HCA) were employed for sample classification and the identification of differentially accumulated metabolites (DAMs). The results revealed the detection of 79 amino acid metabolites, which included elevated levels of oxidized L-glutamic acid, L-glutamic acid, and glutathione. Differential amino acid metabolites that met the criteria of fold change (|FC|) ≥ 2, p-value (p) ≤ 0.5, and variable importance in projection (VIP) ≥ 1 were analyzed. Significant differences in 48 amino acid metabolites between the groups were primarily related to protein synthesis. According to the KEGG analysis, all three comparison samples exhibited significant enrichment in several pathways. These pathways included the interaction of neuroactive ligands with receptors, the metabolism of cysteine and methionine, and the biosynthesis of plant hormones. The variations in amino acid metabolite levels observed across the three drying methods may be attributed to the degradation of proteins or amino acid metabolites, influenced by several factors, including temperature, enzyme activity, and moisture content. Additionally, Maillard and oxidative reactions involving substances such as amino acids, sugars, and oxygen may also play a significant role. This study demonstrates that various drying methods significantly influence the amino acid metabolite content of Ophiocordyceps sinensis. Therefore, the selection of drying methods should be tailored to meet specific requirements. This research provides important insights into the metabolite composition of Ophiocordyceps sinensis under different drying techniques, thereby contributing to a more comprehensive understanding of its nutritional and therapeutic properties.

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用 LC-MS/MS 结合多元统计方法分析不同干燥方法对冬虫夏草氨基酸代谢物含量和质量的影响
冬虫夏草是传统中药中的一种药用真菌,具有多种生物活性和药理作用。本研究采用液相色谱-串联质谱法(LC-MS/MS)测定了冬虫夏草中 94 种氨基酸的组成。在真空冷冻干燥(DG)、烘箱干燥(HG)和空气干燥(YG)三种不同的干燥方法下,对新鲜的冬虫夏草样品进行了分析。本研究旨在评估这些干燥方法对冬虫夏草氨基酸代谢物含量和质量的影响。采用主成分分析法(PCA)和层次聚类分析法(HCA)对样品进行分类,并鉴定差异累积代谢物(DAMs)。结果显示检测到 79 种氨基酸代谢物,其中包括氧化 L-谷氨酸、L-谷氨酸和谷胱甘肽水平的升高。对符合折叠变化(|FC|)≥2、P 值(p)≤0.5 和预测中可变重要性(VIP)≥1 标准的差异氨基酸代谢物进行了分析。组间 48 种氨基酸代谢物的显著差异主要与蛋白质合成有关。根据 KEGG 分析,所有三个对比样本在几条通路上都表现出显著的富集。这些途径包括神经活性配体与受体的相互作用、半胱氨酸和蛋氨酸的代谢以及植物激素的生物合成。在三种干燥方法中观察到的氨基酸代谢物水平的变化可能是蛋白质或氨基酸代谢物降解的结果,受温度、酶活性和水分含量等多种因素的影响。此外,涉及氨基酸、糖和氧等物质的马氏反应和氧化反应也可能起到重要作用。本研究表明,各种干燥方法都会对冬虫夏草的氨基酸代谢物含量产生重大影响。因此,应根据具体要求选择干燥方法。这项研究为了解不同干燥技术下的冬虫夏草代谢物组成提供了重要见解,从而有助于更全面地了解冬虫夏草的营养和治疗特性。
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来源期刊
Metabolites
Metabolites Biochemistry, Genetics and Molecular Biology-Molecular Biology
CiteScore
5.70
自引率
7.30%
发文量
1070
审稿时长
17.17 days
期刊介绍: Metabolites (ISSN 2218-1989) is an international, peer-reviewed open access journal of metabolism and metabolomics. Metabolites publishes original research articles and review articles in all molecular aspects of metabolism relevant to the fields of metabolomics, metabolic biochemistry, computational and systems biology, biotechnology and medicine, with a particular focus on the biological roles of metabolites and small molecule biomarkers. Metabolites encourages scientists to publish their experimental and theoretical results in as much detail as possible. Therefore, there is no restriction on article length. Sufficient experimental details must be provided to enable the results to be accurately reproduced. Electronic material representing additional figures, materials and methods explanation, or supporting results and evidence can be submitted with the main manuscript as supplementary material.
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