4.7 Article

A green protocol for efficient discovery of novel natural compounds: Characterization of new ginsenosides from the stems and leaves of Panax ginseng as a case study

Journal

ANALYTICA CHIMICA ACTA
Volume 893, Issue -, Pages 65-76

Publisher

ELSEVIER SCIENCE BV
DOI: 10.1016/j.aca.2015.08.048

Keywords

Offline comprehensive 2D LC; LTQ-Orbitrap-MS; Stems and leaves of Panax ginseng; Ginsenoside; HCD; Sapogenin diversity

Funding

  1. National Science and Technology Major Project for Major Drug Development [2013ZX09508104, 2014ZX09304-307-001-007]
  2. Twelfth Five-Year National Science & Technology Support Program [2012BAI29B06]
  3. Special Scientific Research in the Chinese Medicine Industry of State Administration of Traditional Chinese Medicine [201307002]
  4. National Natural Science Foundation of China [81473344, 81503240]

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Exploration of new natural compounds is of vital significance for drug discovery and development. The conventional approaches by systematic phytochemical isolation are low-efficiency and consume masses of organic solvent. This study presents an integrated strategy that combines offline comprehensive two-dimensional liquid chromatography, hybrid linear ion-trap/Orbitrap mass spectrometry, and NMR analysis (2D LC/LTQ-Orbitrap-MS/NMR), aimed to establish a green protocol for the efficient discovery of new natural molecules. A comprehensive chemical analysis of the total ginsenosides of stems and leaves of Panax ginseng (SLP), a cardiovascular disease medicine, was performed following this strategy. An offline 2D LC system was constructed with an orthogonality of 0.79 and a practical peak capacity of 11,000. The much greener UHPLC separation and LTQ-Orbitrap-MS detection by data-dependent highenergy C-trap dissociation (HCD)/dynamic exclusion were employed for separation and characterization of ginsenosides from thirteen fractionated SLP samples. Consequently, a total of 646 ginsenosides were characterized, and 427 have not been isolated from the genus of Panax L. The ginsenosides identified from SLP exhibited distinct sapogenin diversity and molecular isomerism. NMR analysis was finally employed to verify and offer complementary structural information to MS-oriented characterization. The established 2D LC/LTQ-Orbitrap-MS/NMR approach outperforms the conventional approaches in respect of significantly improved efficiency, much less use of drug materials and organic solvent. The integrated strategy enables a deep investigation on the therapeutic basis of an herbal medicine, and facilitates new compounds discovery in an efficient and environmentally friendly manner as well. (C) 2015 Elsevier B.V. All rights reserved.

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