Dereplication of a Dichloromethane Extract of Goniothalamus lanceolatus Leaves using UHPLC-ESI-ORBITRAP HRMS

In our continuing search for bioactive compounds in Goniothalamus lanceolatus, we scrutinized the chemical constituents present in the leaves of this plant. As these leaves are traditionally used to repel mosquitoes, we were inspired to examine the plant for potential anti-dengue activity. Our preli...

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Published in:Malaysian Journal of Chemistry
Main Author: Abdullah N.N.; Afzan A.; Jelas N.H.; Razak M.R.M.A.; Syaidatul N.; Rasol N.E.; Bihud N.V.; Zainol M.; Ahmad F.B.; Abdullah F.; Ismail N.H.
Format: Article
Language:English
Published: Malaysian Institute of Chemistry 2021
Online Access:https://www.scopus.com/inward/record.uri?eid=2-s2.0-85127478162&doi=10.55373%2fMJCHEM.V23I4.1193&partnerID=40&md5=972efd7be54a68b81c63453761aebcd4
id 2-s2.0-85127478162
spelling 2-s2.0-85127478162
Abdullah N.N.; Afzan A.; Jelas N.H.; Razak M.R.M.A.; Syaidatul N.; Rasol N.E.; Bihud N.V.; Zainol M.; Ahmad F.B.; Abdullah F.; Ismail N.H.
Dereplication of a Dichloromethane Extract of Goniothalamus lanceolatus Leaves using UHPLC-ESI-ORBITRAP HRMS
2021
Malaysian Journal of Chemistry
23
4
10.55373/MJCHEM.V23I4.1193
https://www.scopus.com/inward/record.uri?eid=2-s2.0-85127478162&doi=10.55373%2fMJCHEM.V23I4.1193&partnerID=40&md5=972efd7be54a68b81c63453761aebcd4
In our continuing search for bioactive compounds in Goniothalamus lanceolatus, we scrutinized the chemical constituents present in the leaves of this plant. As these leaves are traditionally used to repel mosquitoes, we were inspired to examine the plant for potential anti-dengue activity. Our preliminary screening showed that at a concentration of 50 µg/ml, the dichloromethane extract of these leaves was able to inhibit 90.9% of Dengue Virus Type-2 (DENV-2). Dose-dependent plaque assays gave an IC50 of 4.16 µg/ml with a selectivity index (SI) of 5.82. Thus, this extract was selected for in-depth phytochemical analysis. This paper reports an efficient chemical profiling of the G. lanceolatus leaf dichloromethane extract using high-resolution mass spectrometry (UHPLC-ESI-Orbitrap), via data-dependent MS/MS experiments. We used MZmine2 software version 2.50 (MZmine2) for data processing and peak deconvolution. The dereplication strategy began with the determination of molecular formula from accurate mass measurements (m/z). Data mining using MZmine2 followed by cross-search filters against the Dictionary of Natural Products (DNP) produced several hits consisting of styryl-lactones, alkaloids, and acetogenins. A further search of the molecular formula of isolated compounds from different parts of G. lanceolatus using an in-house library unambiguously identified seven compounds including goniolanceolatin A, goniolanceolatin E, (6S,7S,8S)-goniodiol, 1S,5S,7R,8S,3-exo,7-endo-(+)-8-epi-9-deoxygoniopypyrone, goniofupyrone B, parvistone D, and deoxygoniopypyrone B. © 2021 Malaysian Institute of Chemistry. All rights reserved.
Malaysian Institute of Chemistry
15112292
English
Article
All Open Access; Bronze Open Access
author Abdullah N.N.; Afzan A.; Jelas N.H.; Razak M.R.M.A.; Syaidatul N.; Rasol N.E.; Bihud N.V.; Zainol M.; Ahmad F.B.; Abdullah F.; Ismail N.H.
spellingShingle Abdullah N.N.; Afzan A.; Jelas N.H.; Razak M.R.M.A.; Syaidatul N.; Rasol N.E.; Bihud N.V.; Zainol M.; Ahmad F.B.; Abdullah F.; Ismail N.H.
Dereplication of a Dichloromethane Extract of Goniothalamus lanceolatus Leaves using UHPLC-ESI-ORBITRAP HRMS
author_facet Abdullah N.N.; Afzan A.; Jelas N.H.; Razak M.R.M.A.; Syaidatul N.; Rasol N.E.; Bihud N.V.; Zainol M.; Ahmad F.B.; Abdullah F.; Ismail N.H.
author_sort Abdullah N.N.; Afzan A.; Jelas N.H.; Razak M.R.M.A.; Syaidatul N.; Rasol N.E.; Bihud N.V.; Zainol M.; Ahmad F.B.; Abdullah F.; Ismail N.H.
title Dereplication of a Dichloromethane Extract of Goniothalamus lanceolatus Leaves using UHPLC-ESI-ORBITRAP HRMS
title_short Dereplication of a Dichloromethane Extract of Goniothalamus lanceolatus Leaves using UHPLC-ESI-ORBITRAP HRMS
title_full Dereplication of a Dichloromethane Extract of Goniothalamus lanceolatus Leaves using UHPLC-ESI-ORBITRAP HRMS
title_fullStr Dereplication of a Dichloromethane Extract of Goniothalamus lanceolatus Leaves using UHPLC-ESI-ORBITRAP HRMS
title_full_unstemmed Dereplication of a Dichloromethane Extract of Goniothalamus lanceolatus Leaves using UHPLC-ESI-ORBITRAP HRMS
title_sort Dereplication of a Dichloromethane Extract of Goniothalamus lanceolatus Leaves using UHPLC-ESI-ORBITRAP HRMS
publishDate 2021
container_title Malaysian Journal of Chemistry
container_volume 23
container_issue 4
doi_str_mv 10.55373/MJCHEM.V23I4.1193
url https://www.scopus.com/inward/record.uri?eid=2-s2.0-85127478162&doi=10.55373%2fMJCHEM.V23I4.1193&partnerID=40&md5=972efd7be54a68b81c63453761aebcd4
description In our continuing search for bioactive compounds in Goniothalamus lanceolatus, we scrutinized the chemical constituents present in the leaves of this plant. As these leaves are traditionally used to repel mosquitoes, we were inspired to examine the plant for potential anti-dengue activity. Our preliminary screening showed that at a concentration of 50 µg/ml, the dichloromethane extract of these leaves was able to inhibit 90.9% of Dengue Virus Type-2 (DENV-2). Dose-dependent plaque assays gave an IC50 of 4.16 µg/ml with a selectivity index (SI) of 5.82. Thus, this extract was selected for in-depth phytochemical analysis. This paper reports an efficient chemical profiling of the G. lanceolatus leaf dichloromethane extract using high-resolution mass spectrometry (UHPLC-ESI-Orbitrap), via data-dependent MS/MS experiments. We used MZmine2 software version 2.50 (MZmine2) for data processing and peak deconvolution. The dereplication strategy began with the determination of molecular formula from accurate mass measurements (m/z). Data mining using MZmine2 followed by cross-search filters against the Dictionary of Natural Products (DNP) produced several hits consisting of styryl-lactones, alkaloids, and acetogenins. A further search of the molecular formula of isolated compounds from different parts of G. lanceolatus using an in-house library unambiguously identified seven compounds including goniolanceolatin A, goniolanceolatin E, (6S,7S,8S)-goniodiol, 1S,5S,7R,8S,3-exo,7-endo-(+)-8-epi-9-deoxygoniopypyrone, goniofupyrone B, parvistone D, and deoxygoniopypyrone B. © 2021 Malaysian Institute of Chemistry. All rights reserved.
publisher Malaysian Institute of Chemistry
issn 15112292
language English
format Article
accesstype All Open Access; Bronze Open Access
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