Abstract
Sabia schumanniana Diels (SSD) is a plant whose stems are used in traditional folk medicine for the treatment of lumbago and arthralgia. Previous studies have revealed chemical constituents of SSD, including triterpenoids and aporphine alkaloids. Aporphine alkaloids contain a variety of active components, which might facilitate the effective treatment of lumbago and arthralgia. However, only 5-oxoaporphine (fuseine) has been discovered in SSD to date. In this study, we sought to systematically identify the aporphine alkaloids in SSD. We established a fast and reliable method for the detection and identification of these aporphine alkaloids based on ultra-high-performance liquid chromatography (UHPLC)-Q-Exactive-Orbitrap/mass spectrometry combined with parallel reaction monitoring (PRM). We separated all of the analyzed samples using a Thermo Scientific Hypersil GOLD™ aQ C18 column (100 mm × 2.1 mm, 1.9 μm). Finally, we identified a total of 70 compounds by using data such as retention times and diagnostic ions. No fewer than 69 of these SSD aporphine alkaloids have been reported here for the first time. These findings may assist in future studies concerning this plant and will ultimately contribute to the research and development of new drugs.
Funder
science and technology innovation Program of Hunan Province
Scientific Research of Hunan Provincial Education Department
Hunan University of Medicine High-Level Talent Introduction Startup Funds
Subject
Chemistry (miscellaneous),Analytical Chemistry,Organic Chemistry,Physical and Theoretical Chemistry,Molecular Medicine,Drug Discovery,Pharmaceutical Science
Reference40 articles.
1. The Research Progress on Genus Sabia;Chen;J. Guizhou Univ. Tradit. Chin. Med.,2022
2. Flora of Hubei 2, 1979. Volume 480.
3. Research Progress in Anti-diabetic Activities of Apophine Alkaloids;Liu;Pharm. Sci.,2017
4. Studies on chemical constituents of Sabia schumanniana;Liang;Chin. Pharm. J.,2005
5. Anticancer and Reversing Multidrug Resistance Activities of Natural Isoquinoline Alkaloids and their Structure-activity Relationship;Qing;Curr. Med. Chem.,2018