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Combination of high-performance thin-layer chromatography and liquid chromatography–quadrupole time-of-flight–tandem mass spectrometry analysis: a promising analytical tool for discrimination between oleo-gum resin of raw and purified Commiphora wightii

Guggulu (Commiphora wightii oleo-gum resin) is exported in more than 42 countries including developed countries like the United Kingdom and the United States of America. The demand for guggulu is more than its production. Various purification processes have been mentioned in Ayurvedic classical lite...

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Autores principales: Charde, Vaibhav, Jagtap, Chandrashekar, Gandhi, Yashika, Verma, Ravi, Mishra, Sujeet K., Kumar, Vijay, Acharya, Rabinarayan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Springer International Publishing 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9464467/
http://dx.doi.org/10.1007/s00764-022-00197-x
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author Charde, Vaibhav
Jagtap, Chandrashekar
Gandhi, Yashika
Verma, Ravi
Mishra, Sujeet K.
Kumar, Vijay
Acharya, Rabinarayan
author_facet Charde, Vaibhav
Jagtap, Chandrashekar
Gandhi, Yashika
Verma, Ravi
Mishra, Sujeet K.
Kumar, Vijay
Acharya, Rabinarayan
author_sort Charde, Vaibhav
collection PubMed
description Guggulu (Commiphora wightii oleo-gum resin) is exported in more than 42 countries including developed countries like the United Kingdom and the United States of America. The demand for guggulu is more than its production. Various purification processes have been mentioned in Ayurvedic classical literature which are not explored well yet, so it is impossible to discriminate between purified and raw guggulu. In the present study, an effort was made where guggulu was purified by using cow urine and changes were analyzed by using high-performance thin-layer chromatography (HPTLC) and liquid chromatography–quadrupole time-of-flight–tandem mass spectrometry (LC–QTOF–MS/MS). In HPTLC analysis, three new bands (R(F) 0.31, 0.68, 0.74) and twelve other bands were observed including the bands of marker compounds guggulsterone E (R(F) 0.81) and Z (R(F) 0.85) at 254 nm. In LC–QTOF–MS/MS analysis, two new peaks at Rt 5.00 and 16.21 min were observed in cow urine-purified guggulu. After purification, all the peaks were resolute well which shows the effects of purification. Overall, in LC–MS/MS study, metabolites, viz., 5-(13′Z-nonadecenyl)resorcinol (Rt 8.31), 8β-hydroxy-3,20-dioxopregn-4,6-diene (Rt 10.33), guggulsterone E (Rt 12.99), guggulsterone Z (Rt 13.28), guggulsterol I (Rt = 15.19), mangiferolic acid (Rt = 15.27), 20(S),21-epoxy-3-oxocholest-4-ene (Rt = 15.75), and guggulsterol II (Rt 16.23) were identified. The present study reports the first time a comparative analysis of raw guggulu and cow urine-purified guggulu by using advanced analytical tools like HPTLC and LC–QTOF–MS/MS. This study may be helpful in the standardization of and quality control of raw guggulu and cow urine-purified guggulu used in various formulations of guggulu.
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spelling pubmed-94644672022-09-12 Combination of high-performance thin-layer chromatography and liquid chromatography–quadrupole time-of-flight–tandem mass spectrometry analysis: a promising analytical tool for discrimination between oleo-gum resin of raw and purified Commiphora wightii Charde, Vaibhav Jagtap, Chandrashekar Gandhi, Yashika Verma, Ravi Mishra, Sujeet K. Kumar, Vijay Acharya, Rabinarayan JPC-J Planar Chromat Original Research Paper Guggulu (Commiphora wightii oleo-gum resin) is exported in more than 42 countries including developed countries like the United Kingdom and the United States of America. The demand for guggulu is more than its production. Various purification processes have been mentioned in Ayurvedic classical literature which are not explored well yet, so it is impossible to discriminate between purified and raw guggulu. In the present study, an effort was made where guggulu was purified by using cow urine and changes were analyzed by using high-performance thin-layer chromatography (HPTLC) and liquid chromatography–quadrupole time-of-flight–tandem mass spectrometry (LC–QTOF–MS/MS). In HPTLC analysis, three new bands (R(F) 0.31, 0.68, 0.74) and twelve other bands were observed including the bands of marker compounds guggulsterone E (R(F) 0.81) and Z (R(F) 0.85) at 254 nm. In LC–QTOF–MS/MS analysis, two new peaks at Rt 5.00 and 16.21 min were observed in cow urine-purified guggulu. After purification, all the peaks were resolute well which shows the effects of purification. Overall, in LC–MS/MS study, metabolites, viz., 5-(13′Z-nonadecenyl)resorcinol (Rt 8.31), 8β-hydroxy-3,20-dioxopregn-4,6-diene (Rt 10.33), guggulsterone E (Rt 12.99), guggulsterone Z (Rt 13.28), guggulsterol I (Rt = 15.19), mangiferolic acid (Rt = 15.27), 20(S),21-epoxy-3-oxocholest-4-ene (Rt = 15.75), and guggulsterol II (Rt 16.23) were identified. The present study reports the first time a comparative analysis of raw guggulu and cow urine-purified guggulu by using advanced analytical tools like HPTLC and LC–QTOF–MS/MS. This study may be helpful in the standardization of and quality control of raw guggulu and cow urine-purified guggulu used in various formulations of guggulu. Springer International Publishing 2022-09-11 2022 /pmc/articles/PMC9464467/ http://dx.doi.org/10.1007/s00764-022-00197-x Text en © Akadémiai Kiadó, Budapest, Hungary 2022, Springer Nature or its licensor holds exclusive rights to this article under a publishing agreement with the author(s) or other rightsholder(s); author self-archiving of the accepted manuscript version of this article is solely governed by the terms of such publishing agreement and applicable law. This article is made available via the PMC Open Access Subset for unrestricted research re-use and secondary analysis in any form or by any means with acknowledgement of the original source. These permissions are granted for the duration of the World Health Organization (WHO) declaration of COVID-19 as a global pandemic.
spellingShingle Original Research Paper
Charde, Vaibhav
Jagtap, Chandrashekar
Gandhi, Yashika
Verma, Ravi
Mishra, Sujeet K.
Kumar, Vijay
Acharya, Rabinarayan
Combination of high-performance thin-layer chromatography and liquid chromatography–quadrupole time-of-flight–tandem mass spectrometry analysis: a promising analytical tool for discrimination between oleo-gum resin of raw and purified Commiphora wightii
title Combination of high-performance thin-layer chromatography and liquid chromatography–quadrupole time-of-flight–tandem mass spectrometry analysis: a promising analytical tool for discrimination between oleo-gum resin of raw and purified Commiphora wightii
title_full Combination of high-performance thin-layer chromatography and liquid chromatography–quadrupole time-of-flight–tandem mass spectrometry analysis: a promising analytical tool for discrimination between oleo-gum resin of raw and purified Commiphora wightii
title_fullStr Combination of high-performance thin-layer chromatography and liquid chromatography–quadrupole time-of-flight–tandem mass spectrometry analysis: a promising analytical tool for discrimination between oleo-gum resin of raw and purified Commiphora wightii
title_full_unstemmed Combination of high-performance thin-layer chromatography and liquid chromatography–quadrupole time-of-flight–tandem mass spectrometry analysis: a promising analytical tool for discrimination between oleo-gum resin of raw and purified Commiphora wightii
title_short Combination of high-performance thin-layer chromatography and liquid chromatography–quadrupole time-of-flight–tandem mass spectrometry analysis: a promising analytical tool for discrimination between oleo-gum resin of raw and purified Commiphora wightii
title_sort combination of high-performance thin-layer chromatography and liquid chromatography–quadrupole time-of-flight–tandem mass spectrometry analysis: a promising analytical tool for discrimination between oleo-gum resin of raw and purified commiphora wightii
topic Original Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9464467/
http://dx.doi.org/10.1007/s00764-022-00197-x
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