High-resolution tandem mass spectrometry dataset reveals fragmentation patterns of cardiac glycosides in leaves of the foxglove plants

Cardiac glycosides, steroid derivatives extracted from the foxglove plants, have been used for the treatment of heart failure since the 18th century. A method based on liquid chromatography coupled with high-resolution tandem mass spectrometry (LC/MS2) has been developed to characterize and quantify...

Full description

Bibliographic Details
Main Authors: Baradwaj Gopal Ravi, Mary Grace E. Guardian, Rebecca Dickman, Zhen Q. Wang
Format: Article
Language:English
Published: Elsevier 2020-06-01
Series:Data in Brief
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S2352340920303589
_version_ 1818507546031292416
author Baradwaj Gopal Ravi
Mary Grace E. Guardian
Rebecca Dickman
Zhen Q. Wang
author_facet Baradwaj Gopal Ravi
Mary Grace E. Guardian
Rebecca Dickman
Zhen Q. Wang
author_sort Baradwaj Gopal Ravi
collection DOAJ
description Cardiac glycosides, steroid derivatives extracted from the foxglove plants, have been used for the treatment of heart failure since the 18th century. A method based on liquid chromatography coupled with high-resolution tandem mass spectrometry (LC/MS2) has been developed to characterize and quantify cardiac glycosides in fresh-leaf extracts of the foxglove (Digitalis sp.) plants [1]. In this report, the fragmentation spectra of additional authentic standards of cardiac glycoside (digitoxigenin, digoxigenin, β-acetyldigoxin) and cardenolides identified in the leaves of Digitalis lanata (D. lanata) and Digitalis purpurea (D. purpurea) were provided with high resolution. The exact mass of signature peaks for the aglycones and the sugar units of cardenolides were measured. This dataset is valuable to researchers interested in characterizing cardenolides in plants, or quantifying cardenolides in drug tablets, or studying cardenolide toxicities in animals. The fragmentation patterns of authentic cardenolide standards provided in these data can be used to validate relevant cardenolides in various biological samples and to infer chemical structures of unknown cardiac glycosides.
first_indexed 2024-12-10T22:19:56Z
format Article
id doaj.art-01dd93af0374400ea1a7da84f4276774
institution Directory Open Access Journal
issn 2352-3409
language English
last_indexed 2024-12-10T22:19:56Z
publishDate 2020-06-01
publisher Elsevier
record_format Article
series Data in Brief
spelling doaj.art-01dd93af0374400ea1a7da84f42767742022-12-22T01:31:20ZengElsevierData in Brief2352-34092020-06-0130105464High-resolution tandem mass spectrometry dataset reveals fragmentation patterns of cardiac glycosides in leaves of the foxglove plantsBaradwaj Gopal Ravi0Mary Grace E. Guardian1Rebecca Dickman2Zhen Q. Wang3Department of Biological Sciences, University at Buffalo, State University of New York, Buffalo, NY 14260, United StatesDepartment of Chemistry, Chemistry Instrumentation Center, University at Buffalo, State University of New York, Buffalo, NY 14260, United StatesDepartment of Chemistry, Chemistry Instrumentation Center, University at Buffalo, State University of New York, Buffalo, NY 14260, United StatesDepartment of Biological Sciences, University at Buffalo, State University of New York, Buffalo, NY 14260, United States; Corresponding author.Cardiac glycosides, steroid derivatives extracted from the foxglove plants, have been used for the treatment of heart failure since the 18th century. A method based on liquid chromatography coupled with high-resolution tandem mass spectrometry (LC/MS2) has been developed to characterize and quantify cardiac glycosides in fresh-leaf extracts of the foxglove (Digitalis sp.) plants [1]. In this report, the fragmentation spectra of additional authentic standards of cardiac glycoside (digitoxigenin, digoxigenin, β-acetyldigoxin) and cardenolides identified in the leaves of Digitalis lanata (D. lanata) and Digitalis purpurea (D. purpurea) were provided with high resolution. The exact mass of signature peaks for the aglycones and the sugar units of cardenolides were measured. This dataset is valuable to researchers interested in characterizing cardenolides in plants, or quantifying cardenolides in drug tablets, or studying cardenolide toxicities in animals. The fragmentation patterns of authentic cardenolide standards provided in these data can be used to validate relevant cardenolides in various biological samples and to infer chemical structures of unknown cardiac glycosides.http://www.sciencedirect.com/science/article/pii/S2352340920303589CardenolidesDigitalis purpureaDigitalis lanataDigoxinDigitoxinHeart failure
spellingShingle Baradwaj Gopal Ravi
Mary Grace E. Guardian
Rebecca Dickman
Zhen Q. Wang
High-resolution tandem mass spectrometry dataset reveals fragmentation patterns of cardiac glycosides in leaves of the foxglove plants
Data in Brief
Cardenolides
Digitalis purpurea
Digitalis lanata
Digoxin
Digitoxin
Heart failure
title High-resolution tandem mass spectrometry dataset reveals fragmentation patterns of cardiac glycosides in leaves of the foxglove plants
title_full High-resolution tandem mass spectrometry dataset reveals fragmentation patterns of cardiac glycosides in leaves of the foxglove plants
title_fullStr High-resolution tandem mass spectrometry dataset reveals fragmentation patterns of cardiac glycosides in leaves of the foxglove plants
title_full_unstemmed High-resolution tandem mass spectrometry dataset reveals fragmentation patterns of cardiac glycosides in leaves of the foxglove plants
title_short High-resolution tandem mass spectrometry dataset reveals fragmentation patterns of cardiac glycosides in leaves of the foxglove plants
title_sort high resolution tandem mass spectrometry dataset reveals fragmentation patterns of cardiac glycosides in leaves of the foxglove plants
topic Cardenolides
Digitalis purpurea
Digitalis lanata
Digoxin
Digitoxin
Heart failure
url http://www.sciencedirect.com/science/article/pii/S2352340920303589
work_keys_str_mv AT baradwajgopalravi highresolutiontandemmassspectrometrydatasetrevealsfragmentationpatternsofcardiacglycosidesinleavesofthefoxgloveplants
AT marygraceeguardian highresolutiontandemmassspectrometrydatasetrevealsfragmentationpatternsofcardiacglycosidesinleavesofthefoxgloveplants
AT rebeccadickman highresolutiontandemmassspectrometrydatasetrevealsfragmentationpatternsofcardiacglycosidesinleavesofthefoxgloveplants
AT zhenqwang highresolutiontandemmassspectrometrydatasetrevealsfragmentationpatternsofcardiacglycosidesinleavesofthefoxgloveplants