Identification of geographical origins of Panax notoginseng based on HPLC multi-wavelength fusion profiling combined with average linear quantitative fingerprint method

Abstract The aim of this study was to establish a method for geographical origins identification of Panax notoginseng (P. notoginseng) based on abundant chromatographic spectral information. Characteristic fingerprints of P. notoginseng extracts samples were generated by Multi-wavelength Fusion Prof...

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Autores principales: Jing Bai, Pan Yue, Qiang Dong, Fang Wang, Chengyan He, Yang Li, Jinlin Guo
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Lenguaje:EN
Publicado: Nature Portfolio 2021
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Acceso en línea:https://doaj.org/article/b4bdf5a30e444c08b43b854611faadb8
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spelling oai:doaj.org-article:b4bdf5a30e444c08b43b854611faadb82021-12-02T13:20:14ZIdentification of geographical origins of Panax notoginseng based on HPLC multi-wavelength fusion profiling combined with average linear quantitative fingerprint method10.1038/s41598-021-84589-92045-2322https://doaj.org/article/b4bdf5a30e444c08b43b854611faadb82021-03-01T00:00:00Zhttps://doi.org/10.1038/s41598-021-84589-9https://doaj.org/toc/2045-2322Abstract The aim of this study was to establish a method for geographical origins identification of Panax notoginseng (P. notoginseng) based on abundant chromatographic spectral information. Characteristic fingerprints of P. notoginseng extracts samples were generated by Multi-wavelength Fusion Profiling (MWFP) method based on the HPLC fingerprints established at three wavelengths of 203 nm, 270 nm and 325 nm. The samples grouping results calculated with the averagely linear quantified fingerprint method (ALQFM) and the unsupervised statistical methods based on fusion fingerprints matches with the geographical origins. The Multi-wavelength Fusion Profiling (MWFP) method has been successfully applied to identification of geographical origins of P. notoginseng and shows the advantages compared with single—channel fingerprints. In addition, eight physiologically active components, including four saponins, two flavones and two amino acids, were identified from the most relevant ingredients of P. notoginseng geographical origins by fusion fingerprint-efficacy relationship analysis. Besides the recognized active saponins, other categories of active ingredients such as flavonoids and amino acids should be paid attention to in the producing areas identification or the quality judgment of P. notoginseng.Jing BaiPan YueQiang DongFang WangChengyan HeYang LiJinlin GuoNature PortfolioarticleMedicineRScienceQENScientific Reports, Vol 11, Iss 1, Pp 1-10 (2021)
institution DOAJ
collection DOAJ
language EN
topic Medicine
R
Science
Q
spellingShingle Medicine
R
Science
Q
Jing Bai
Pan Yue
Qiang Dong
Fang Wang
Chengyan He
Yang Li
Jinlin Guo
Identification of geographical origins of Panax notoginseng based on HPLC multi-wavelength fusion profiling combined with average linear quantitative fingerprint method
description Abstract The aim of this study was to establish a method for geographical origins identification of Panax notoginseng (P. notoginseng) based on abundant chromatographic spectral information. Characteristic fingerprints of P. notoginseng extracts samples were generated by Multi-wavelength Fusion Profiling (MWFP) method based on the HPLC fingerprints established at three wavelengths of 203 nm, 270 nm and 325 nm. The samples grouping results calculated with the averagely linear quantified fingerprint method (ALQFM) and the unsupervised statistical methods based on fusion fingerprints matches with the geographical origins. The Multi-wavelength Fusion Profiling (MWFP) method has been successfully applied to identification of geographical origins of P. notoginseng and shows the advantages compared with single—channel fingerprints. In addition, eight physiologically active components, including four saponins, two flavones and two amino acids, were identified from the most relevant ingredients of P. notoginseng geographical origins by fusion fingerprint-efficacy relationship analysis. Besides the recognized active saponins, other categories of active ingredients such as flavonoids and amino acids should be paid attention to in the producing areas identification or the quality judgment of P. notoginseng.
format article
author Jing Bai
Pan Yue
Qiang Dong
Fang Wang
Chengyan He
Yang Li
Jinlin Guo
author_facet Jing Bai
Pan Yue
Qiang Dong
Fang Wang
Chengyan He
Yang Li
Jinlin Guo
author_sort Jing Bai
title Identification of geographical origins of Panax notoginseng based on HPLC multi-wavelength fusion profiling combined with average linear quantitative fingerprint method
title_short Identification of geographical origins of Panax notoginseng based on HPLC multi-wavelength fusion profiling combined with average linear quantitative fingerprint method
title_full Identification of geographical origins of Panax notoginseng based on HPLC multi-wavelength fusion profiling combined with average linear quantitative fingerprint method
title_fullStr Identification of geographical origins of Panax notoginseng based on HPLC multi-wavelength fusion profiling combined with average linear quantitative fingerprint method
title_full_unstemmed Identification of geographical origins of Panax notoginseng based on HPLC multi-wavelength fusion profiling combined with average linear quantitative fingerprint method
title_sort identification of geographical origins of panax notoginseng based on hplc multi-wavelength fusion profiling combined with average linear quantitative fingerprint method
publisher Nature Portfolio
publishDate 2021
url https://doaj.org/article/b4bdf5a30e444c08b43b854611faadb8
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AT fangwang identificationofgeographicaloriginsofpanaxnotoginsengbasedonhplcmultiwavelengthfusionprofilingcombinedwithaveragelinearquantitativefingerprintmethod
AT chengyanhe identificationofgeographicaloriginsofpanaxnotoginsengbasedonhplcmultiwavelengthfusionprofilingcombinedwithaveragelinearquantitativefingerprintmethod
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