Cargando…

Berberine isolation from Coscinium fenestratum: optical, electrochemical, and computational studies

Berberine was extracted from Coscinium fenestratum (tree turmeric) and purified by column chromatography. The UV-Vis absorption spectroscopy of berberine was studied in acetonitrile and aqueous media. TD-DFT calculations employing the B3LYP functional were found to reproduce the general features of...

Descripción completa

Detalles Bibliográficos
Autores principales: Rajapakse, R. M. Gamini, Horrocks, Benjamin R., Malikaramage, A. U., Gunarathna, H. M. N. P., Egodawele, M. G. S. A. M. E. W. D. D. K., Jayasinghe, J. M. Susanthi, Ranatunga, Udayana, Herath, W. H. M. R. N. K., Sandakelum, Lahiru, Wylie, Shane, Abewardana, P. G. P. R., Seneviratne, V. N., Perera, L. L. K., Velauthapillai, D.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10245225/
https://www.ncbi.nlm.nih.gov/pubmed/37293467
http://dx.doi.org/10.1039/d3ra01769a
_version_ 1785054818361933824
author Rajapakse, R. M. Gamini
Horrocks, Benjamin R.
Malikaramage, A. U.
Gunarathna, H. M. N. P.
Egodawele, M. G. S. A. M. E. W. D. D. K.
Jayasinghe, J. M. Susanthi
Ranatunga, Udayana
Herath, W. H. M. R. N. K.
Sandakelum, Lahiru
Wylie, Shane
Abewardana, P. G. P. R.
Seneviratne, V. N.
Perera, L. L. K.
Velauthapillai, D.
author_facet Rajapakse, R. M. Gamini
Horrocks, Benjamin R.
Malikaramage, A. U.
Gunarathna, H. M. N. P.
Egodawele, M. G. S. A. M. E. W. D. D. K.
Jayasinghe, J. M. Susanthi
Ranatunga, Udayana
Herath, W. H. M. R. N. K.
Sandakelum, Lahiru
Wylie, Shane
Abewardana, P. G. P. R.
Seneviratne, V. N.
Perera, L. L. K.
Velauthapillai, D.
author_sort Rajapakse, R. M. Gamini
collection PubMed
description Berberine was extracted from Coscinium fenestratum (tree turmeric) and purified by column chromatography. The UV-Vis absorption spectroscopy of berberine was studied in acetonitrile and aqueous media. TD-DFT calculations employing the B3LYP functional were found to reproduce the general features of the absorption and emission spectra correctly. The electronic transitions to the first and second excited singlet states involve a transfer of electron density from the electron donating methylenedioxy phenyl ring to the electron accepting isoquinolium moiety. An estimate of the electrochemical gap (2.64 V) was obtained from microelectrode voltammetry and good agreement was found with quantum chemical calculations using the cc-pVTZ basis set and the B3LYP, CAM-B3LYP and wB97XD functionals. The calculations indicate spin density of the radical dication is delocalised over the molecule. These basic data are useful for assessment of the synthesis of donor–acceptor polymeric materials employing oxidative polymerization or co-polymerisation of berberine.
format Online
Article
Text
id pubmed-10245225
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher The Royal Society of Chemistry
record_format MEDLINE/PubMed
spelling pubmed-102452252023-06-08 Berberine isolation from Coscinium fenestratum: optical, electrochemical, and computational studies Rajapakse, R. M. Gamini Horrocks, Benjamin R. Malikaramage, A. U. Gunarathna, H. M. N. P. Egodawele, M. G. S. A. M. E. W. D. D. K. Jayasinghe, J. M. Susanthi Ranatunga, Udayana Herath, W. H. M. R. N. K. Sandakelum, Lahiru Wylie, Shane Abewardana, P. G. P. R. Seneviratne, V. N. Perera, L. L. K. Velauthapillai, D. RSC Adv Chemistry Berberine was extracted from Coscinium fenestratum (tree turmeric) and purified by column chromatography. The UV-Vis absorption spectroscopy of berberine was studied in acetonitrile and aqueous media. TD-DFT calculations employing the B3LYP functional were found to reproduce the general features of the absorption and emission spectra correctly. The electronic transitions to the first and second excited singlet states involve a transfer of electron density from the electron donating methylenedioxy phenyl ring to the electron accepting isoquinolium moiety. An estimate of the electrochemical gap (2.64 V) was obtained from microelectrode voltammetry and good agreement was found with quantum chemical calculations using the cc-pVTZ basis set and the B3LYP, CAM-B3LYP and wB97XD functionals. The calculations indicate spin density of the radical dication is delocalised over the molecule. These basic data are useful for assessment of the synthesis of donor–acceptor polymeric materials employing oxidative polymerization or co-polymerisation of berberine. The Royal Society of Chemistry 2023-06-07 /pmc/articles/PMC10245225/ /pubmed/37293467 http://dx.doi.org/10.1039/d3ra01769a Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by/3.0/
spellingShingle Chemistry
Rajapakse, R. M. Gamini
Horrocks, Benjamin R.
Malikaramage, A. U.
Gunarathna, H. M. N. P.
Egodawele, M. G. S. A. M. E. W. D. D. K.
Jayasinghe, J. M. Susanthi
Ranatunga, Udayana
Herath, W. H. M. R. N. K.
Sandakelum, Lahiru
Wylie, Shane
Abewardana, P. G. P. R.
Seneviratne, V. N.
Perera, L. L. K.
Velauthapillai, D.
Berberine isolation from Coscinium fenestratum: optical, electrochemical, and computational studies
title Berberine isolation from Coscinium fenestratum: optical, electrochemical, and computational studies
title_full Berberine isolation from Coscinium fenestratum: optical, electrochemical, and computational studies
title_fullStr Berberine isolation from Coscinium fenestratum: optical, electrochemical, and computational studies
title_full_unstemmed Berberine isolation from Coscinium fenestratum: optical, electrochemical, and computational studies
title_short Berberine isolation from Coscinium fenestratum: optical, electrochemical, and computational studies
title_sort berberine isolation from coscinium fenestratum: optical, electrochemical, and computational studies
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10245225/
https://www.ncbi.nlm.nih.gov/pubmed/37293467
http://dx.doi.org/10.1039/d3ra01769a
work_keys_str_mv AT rajapaksermgamini berberineisolationfromcosciniumfenestratumopticalelectrochemicalandcomputationalstudies
AT horrocksbenjaminr berberineisolationfromcosciniumfenestratumopticalelectrochemicalandcomputationalstudies
AT malikaramageau berberineisolationfromcosciniumfenestratumopticalelectrochemicalandcomputationalstudies
AT gunarathnahmnp berberineisolationfromcosciniumfenestratumopticalelectrochemicalandcomputationalstudies
AT egodawelemgsamewddk berberineisolationfromcosciniumfenestratumopticalelectrochemicalandcomputationalstudies
AT jayasinghejmsusanthi berberineisolationfromcosciniumfenestratumopticalelectrochemicalandcomputationalstudies
AT ranatungaudayana berberineisolationfromcosciniumfenestratumopticalelectrochemicalandcomputationalstudies
AT herathwhmrnk berberineisolationfromcosciniumfenestratumopticalelectrochemicalandcomputationalstudies
AT sandakelumlahiru berberineisolationfromcosciniumfenestratumopticalelectrochemicalandcomputationalstudies
AT wylieshane berberineisolationfromcosciniumfenestratumopticalelectrochemicalandcomputationalstudies
AT abewardanapgpr berberineisolationfromcosciniumfenestratumopticalelectrochemicalandcomputationalstudies
AT seneviratnevn berberineisolationfromcosciniumfenestratumopticalelectrochemicalandcomputationalstudies
AT pererallk berberineisolationfromcosciniumfenestratumopticalelectrochemicalandcomputationalstudies
AT velauthapillaid berberineisolationfromcosciniumfenestratumopticalelectrochemicalandcomputationalstudies