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Metabolomics analysis based on a UPLC-Q-TOF-MS metabolomics approach to compare Lin-Xia-Shan-Shen and garden ginseng

机译:基于UPLC-Q-TOF-MS代谢组种比较林夏申和花园人参的代谢组科分析

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摘要

Background: Panax ginseng Meyer which has been cultivated and grown naturally in mountainous forests is formally called Lin-Xia-Shan-Shen (LXSS), but when cultivated it is called garden ginseng (GG), according to the Chinese Pharmacopoeia (2015 edition). The medicinal value of LXSS is significantly higher than that of GG based on the clinical experience of TCM. This study aimed to evaluate the variety of chemical constituents in LXSS and GG. Methods: 18 LXSS and 6 GG samples were investigated using a UPLC-Q-TOF-MS technique. Results: the contents of 16 metabolites, mainly involved in the biosynthesis of rare ginsenosides (ginsenosides Rg(3), -Rh-1, -Rh-2), galactose metabolism (myo-inositol), the citric cycle (citric acid and succinic acid), GABA shunt (GABA) and amino metabolism (alanine and aspartic acid), were higher in LXSS than in GG; while 14 metabolites, mainly involved in starch and sucrose metabolism (fructose and sucrose), amino metabolism (tryptophan, proline, dencichine and pyroglutamic acid) and campesterol biosynthesis (campesterol), were lower in LXSS than in GG. For LXSS with different growing years, 5 metabolites showed a tendency to increase dependent on the number of years, and these were related mainly to galactose metabolism (melibiose), the citric cycle (malic acid), fatty acid metabolism (2-hydroxy stearic acid); while 5 metabolites showed a tendency to decrease on ascending the grades, and these were related to sucrose metabolism (fructose and sucrose), fatty acid metabolism (2-hydroxy hexadecanoic acid) and campesterol biosynthesis (campesterol). Conclusion: this proposed analytical method coupled with multivariate analysis is fast, accurate, and reliable for discriminating GG and high cultivation ages of LXSS samples.
机译:背景:据中国药典(2015年版)(2015年版)(2015年版)培养,已培育和生长的Panax人参迈耶在山区森林中培育和生长的是正式称为Lin-Xia-Shen(LXSS),但当培养时被称为花园人参(GG) 。基于TCM的临床经验,LXSS的药物值显着高于GG。本研究旨在评估LXSS和GG中的各种化学成分。方法:采用UPLC-Q-TOF-MS技术研究了18 LXSS和6GG样品。结果:16种代谢物的含量,主要涉及稀少种植苷的生物合成(人参皂苷Rg(3),-RH-1,-RH-2),半乳糖代谢(肌醇),柠檬水循环(柠檬酸和琥珀酸酸),GABA分流(GABA)和氨基代谢(丙氨酸和天冬氨酸),LXS在LXS中高于GG;虽然14种代谢物主要参与淀粉和蔗糖新陈代谢(果糖和蔗糖),氨基代谢(色氨酸,脯氨酸,达氏菌酸)和冬式甾醇生物合成(Champertol),但LXSS较低,而不是GG。对于具有不同日益增长的年龄的LxSS,5种代谢物显示出依赖于年多年的趋势,这些趋势主要是半乳糖新陈代谢(Melibiose),柠檬循环(苹果酸),脂肪酸代谢(2-羟基硬脂酸);虽然5种代谢物显示出升高阶段的趋势,但这些与蔗糖代谢(果糖和蔗糖),脂肪酸代谢(2-羟基十六烷酸)和炉甾醇生物合成(Champertol)有关。结论:这种提出的分析方法与多变量分析相结合,对于鉴别GG和LxSS样品的高培养年龄,快速,准确,可靠,可靠。

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  • 来源
    《RSC Advances》 |2018年第53期|共8页
  • 作者单位

    Liaoning Univ Tradit Chinese Med Coll Pharm Dalian 116600 Peoples R China;

    Liaoning Univ Tradit Chinese Med Coll Pharm Dalian 116600 Peoples R China;

    Liaoning Univ Tradit Chinese Med Coll Pharm Dalian 116600 Peoples R China;

    China Acad Chinese Med Sci Expt Res Ctr Beijing 100700 Peoples R China;

    Liaoning Univ Tradit Chinese Med Coll Pharm Dalian 116600 Peoples R China;

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  • 正文语种 eng
  • 中图分类 化学;
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