1.河南省农业科学院农产品质量安全研究所,河南 郑州 450002
2.宁夏医科大学 药学院, 宁夏 银川 750004
李淑芳,博士,助理研究员,研究方向:化学计量学仪器分析应用研究,E-mail:lishufang@hnagri.org.cn
纸质出版日期:2024-02-15,
收稿日期:2023-07-10,
修回日期:2023-10-17,
扫 描 看 全 文
李淑芳,王会锋,郝学飞等.基于UHPLC-Q-Exactive Orbitrap HRMS技术结合化学计量学方法的不同干燥处理杜仲叶成分分析[J].分析测试学报,2024,43(02):213-225.
LI Shu-fang,WANG Hui-feng,HAO Xue-fei,et al.Component Analysis of E. ulmoides Oliv. Leaves in Various Drying Treatments by UHPLC-Q-Exactive Orbitrap HRMS Technology Combined with Chemometrics[J].Journal of Instrumental Analysis,2024,43(02):213-225.
李淑芳,王会锋,郝学飞等.基于UHPLC-Q-Exactive Orbitrap HRMS技术结合化学计量学方法的不同干燥处理杜仲叶成分分析[J].分析测试学报,2024,43(02):213-225. DOI: 10.12452/j.fxcsxb.23071004.
LI Shu-fang,WANG Hui-feng,HAO Xue-fei,et al.Component Analysis of E. ulmoides Oliv. Leaves in Various Drying Treatments by UHPLC-Q-Exactive Orbitrap HRMS Technology Combined with Chemometrics[J].Journal of Instrumental Analysis,2024,43(02):213-225. DOI: 10.12452/j.fxcsxb.23071004.
采用基于液质联用的非靶向代谢组学技术结合化学计量学数据自动解析软件AntDAS-LCHRMS分析了4种不同干燥处理(冻干、热泵烘干、电热烘干、晒干)杜仲叶样本中的化合物。杜仲叶样本数据由超高效液相色谱-四极杆-静电场轨道阱高分辨质谱(UHPLC-Q-Exactive Orbitrap HRMS)分别在正、负离子模式下进行采集,经AntDAS-LCHRMS软件解析,共鉴定出71种差异性化合物,经标准品验证确定40种化合物,包括环烯醚萜类、有机酸类、黄酮类、氨基酸类、核苷类、维生素类等9类物质。其中,正、负离子模式下均可识别并验证的化合物有车叶草苷、绿原酸、芦丁、异槲皮苷、车叶草苷酸、京尼平苷等25种化合物。层次聚类分析(HCA)及主成分分析(PCA)结果均显示,相同处理的杜仲叶样本各自聚成一类,不同处理的杜仲叶样本可明显区分。热图分析进一步揭示了不同干燥处理杜仲叶样本中差异性化合物的含量变化。晒干处理样本中苯丙氨酸及色氨酸等氨基酸类物质的水平较高;冻干及热泵烘干处理样本中有机酸类、环烯醚萜类、糖类等含量较高;电热烘干样本中核苷类、黄酮类物质的含量较高;黄酮类物质在冻干、热泵烘干及晒干样本中差异较小。研究结果为不同干燥处理杜仲叶的成分分析、品质评价及其开发应用提供了科学依据,也可为其他复杂药用植物体系的化学成分分析提供参考。
A strategy that ultrahigh performance liquid chromatography-quadrupole-exactive orbitrap high resolution mass spectrometry(UHPLC-Q-Exactive orbitrap HRMS) based untargeted metabolomics was developed in combined with chemometric automatic data analysis software(AntDAS-LCHRMS) to investigate the metabolites from four types of
E. ulmoides Oliv.
leaves processed by different drying treatments(
i. e.
,freeze drying,heat pump drying,oven drying,sun drying). The data of samples was acquired by UHPLC-Q-Exactive orbitrap HRMS under both positive ionization mode and negative ionization mode,and directly imported into AntDAS-LCHRMS for automatic data analysis. The results indicated that about 71 differential metabolites were identified based on the above-mentioned data analysis workflow,and 40 compounds were further confirmed by standards,including iridoids,organic acids,flavonoids,amino acids,nucleosides,vitamins,sugars,lignans,and coumarins. Among of which 25 metabolites were identified and confirmed by standards under both positive and negative mode,including asperuloside,chlorogenic acid,rutin,isoquercitrin,asperulosidic acid and geniposide,etc. Finally,hierarchical clustering analysis(HCA),principal component analysis(PCA),and heatmap analysis were used for discriminating samples from various drying treatments. The results showed that
Eucommiae Folium
obtained from different drying treatments could be clearly separated,and compounds of them were significantly different. Heatmap analysis further explicated the compound variations in
E. ulmoides Oliv.
leaves from different drying groups. Samples of sun drying had higher levels of amino acids such as phenylalanine and tryptophan. Samples of freeze drying and heat pump drying had higher levels in organic acids,iridoids,and sugars. Samples of oven drying had higher levels of nucleotides and flavonoids. The content of flavonoids differed little among freeze drying,heat pump drying,and sun drying. The results could be helpful to offer a scientific guidance for the quality evaluation and application of
E. ulmoides Oliv.
leaves processed by different drying treatments. In addition,the developed strategy provides a new candidate for the analysis of other complex medicinal plant.
杜仲叶代谢组学化学计量学AntDAS-LCHRMS软件超高效液相色谱-四极杆-静电场轨道阱高分辨质谱(UHPLC-Q-Exactive Orbitrap HRMS)干燥处理
Eucommiae FoliummetabolomicschemometricsAntDAS-LCHRMS softwareUltrahigh performance liquid chromatography-Q-exactive orbitrap high resolution mass spectrometry(UHPLC-Q-Exactive Orbitrap HRMS)drying treatment
Chinese Pharmacopoeia Commission. China Pharmacopeia:Volume I. Beijing:Chemical Industry Press(国家药典委员会. 中华人民共和国药典:一部. 北京:化学工业出版社),2005:114.
Zhu M Q,Sun R C. J. Agric. Food Chem.,2018,66(22):5433-5438.
Wang Y F,Liu Y F,Wang S H,Yin R L,Li Q. J. Henan Univ. :Med. Sci. (王一飞,刘亚芳,王书辉,尹瑞林,李钦. 河南大学学报:医学版),2018,37(1):65-68.
Gong P,Han Y W,Zhai P T,Chen X F,Zhai W J,Zheng B Z,Chen F X. Sci. Technol. Food Ind.(龚频,韩业雯,翟鹏涛,陈雪峰,翟文俊,郑本忠,陈福欣. 食品工业科技),2022,43(10):395-404.
Wei H X,Hao L L,Liang G X,Ning J Y,Gao S. J. Toxicol. (魏洪鑫,郝丽丽,梁国欣,宁钧宇,高珊. 毒理学杂志),2020,34(6):431-434,440.
Yan J K,Zhang X Y,Shi X L,Ding L Q,Qiu F. Mod. Chin. Med.(闫建昆,张翔宇,石旭柳,丁丽琴,邱峰. 中国现代中药),2021,23(4):599-604.
Takamura C,Hirata T,Yamaguchi Y,Ono M,Miyashita,Ikeda T,Nohara T. J. Nat. Med.,2007,61(2):220-221.
Chen S M,Zhang N. Anhui Chem. Ind.(陈书明,张宁. 安徽化工),2023,49(1):94-97.
Hou X J,Zhang J F,Li W. J. Anhui Agric. Sci.(侯晓杰,张建锋,李玮. 安徽农业科学),2018,46(1):37-38,41.
Zheng Y P,Pan Y Q,Qin K M,Xu H. Chin. Pharm.(郑艳萍,潘艳琼,秦昆明,徐虹. 中国药房),2017,28(28):3973-3976.
Xuan Z H,Shou H,Yao H,Ma W H,He H Y,Chen H N. Chin. Tradit. Herb. Drugs(宣志红,寿辉,姚琥,马文华,何红永,陈慧浓. 中草药),2013,44(11):1431-1434.
Yan R J,Zhang S H,Luo Y L,Cai P,Xiao J,Wan D. Chin. Tradit. Herb. Drugs(严瑞娟,张水寒,罗跃龙,蔡萍,肖娟,万丹. 中草药),2013,44(15):2085-2901.
Liu X,Zhang J Q,Li Y,Yao C L,An Y L,Wei W L,Yao S,Yang L,Huang Y,Qu H,Guo D A. Food Chem.,2022,393:133346.
Chen J Y,Wang W T,Kong J Q,Yu Y D,Dong Y Y,Zhang J C,Liu L. Microchem. J.,2022,172:106919.
Yan Y,Zhao H,Zou L S,Liu X H,Chai C,Wang S N,Hua Y J. J. Chin. Mass Spectrom. Soc.(严颖,赵慧,邹立思,刘训红,柴川,王胜男,华愉教. 质谱学报),2018,39(1):101-111.
Shen M Y,Wu B,Duan H Q,Yang F Q,Wang F,Chen H P,Liu Y P. Nat. Prod. Res. Dev.(申梦园,吴蓓,段涵琪,杨放晴,王福,陈鸿平,刘友平. 天然产物研究与开发),2022,34:1385-1399.
Xu T R,Liu X Y,Xu G W. J. Instrum. Anal.(徐天润,刘心昱,许国旺. 分析测试学报),2020,39(1):10-18.
Fu H Y,Guo X M,Zhang Y M,Song J J,Zheng Q X,Liu P P,Lu P,Chen Q S,Yu Y J,She Y B. Anal. Chem.,2017,89:11083-11090.
Wang X C,Zhang J N,Zhao J J,Guo X M,Li S F,Zheng Q X,Liu P P,Lu P,Fu H Y,Yu Y J,She Y B. Anal. Chem.,2023,95:638-649.
Tan Y J,Pu Z J,Tang Y P,Yan H,Guo S,Zhu Z H,Yue S J,Chen Y Y,Peng G P,Huang S L,Zhou G S,Duan J A. Chin. Tradit. Herb. Drugs(谭亚杰,濮宗进,唐于平,严辉,郭盛,朱振华,乐世俊,陈艳琰,彭国平,黄胜良,周桂生,段金廒. 中草药),2019,50(7):1576-1586.
0
浏览量
30
下载量
0
CSCD
关联资源
相关文章
相关作者
相关机构