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Exploring the Chemical Constituents, Antioxidant, Xanthine Oxidase and COX Inhibitory Activity of Commiphora gileadensis Commonly Grown Wild in Saudi Arabia

The use of the synthetic drugs has increased in the last few decades; however, these drugs exhibit various side effects. Scientists are therefore seeking alternatives from natural sources. Commiphora gileadensis has long been used to treat various disorders. It is commonly known as bisham or balm of...

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Autores principales: Shadid, Khalid A., Shakya, Ashok K., Naik, Rajashri R., Al-Qaisi, Talal S., Oriquat, Ghaleb A., Atoom, Ali M., Farah, Husni S.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10004785/
https://www.ncbi.nlm.nih.gov/pubmed/36903563
http://dx.doi.org/10.3390/molecules28052321
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author Shadid, Khalid A.
Shakya, Ashok K.
Naik, Rajashri R.
Al-Qaisi, Talal S.
Oriquat, Ghaleb A.
Atoom, Ali M.
Farah, Husni S.
author_facet Shadid, Khalid A.
Shakya, Ashok K.
Naik, Rajashri R.
Al-Qaisi, Talal S.
Oriquat, Ghaleb A.
Atoom, Ali M.
Farah, Husni S.
author_sort Shadid, Khalid A.
collection PubMed
description The use of the synthetic drugs has increased in the last few decades; however, these drugs exhibit various side effects. Scientists are therefore seeking alternatives from natural sources. Commiphora gileadensis has long been used to treat various disorders. It is commonly known as bisham or balm of Makkah. This plant contains various phytochemicals, including polyphenols and flavonoids, with biological potential. We found that steam-distilled essential oil of C. gileadensis exhibited higher antioxidant activity (IC(50,) 22.2 µg/mL) than ascorbic acid (IC(50,) 1.25 µg/mL). The major constituents (>2%) in the essential oil were β-myrcene, nonane, verticiol, β-phellandrene, β-cadinene, terpinen-4-ol, β-eudesmol, α-pinene, cis-β-copaene and verticillol, which might be responsible for the antioxidant and antimicrobial activity against Gram-positive bacteria. The extract of C. gileadensis exhibited inhibitory activity against cyclooxygenase (IC(50,) 450.1 µg/mL), xanthine oxidase (251.2 µg/mL) and protein denaturation (110.5 µg/mL) compared to standard treatments, making it a viable treatment from a natural plant source. LC-MS analysis revealed the presence of phenolic compounds such as caffeic acid phenyl ester, hesperetin, hesperidin, chrysin and transient amounts of catechin, gallic acid, rutin and caffeic acid. The chemical constituents of this plant can be explored further to investigate its wide variety of therapeutic potential.
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spelling pubmed-100047852023-03-11 Exploring the Chemical Constituents, Antioxidant, Xanthine Oxidase and COX Inhibitory Activity of Commiphora gileadensis Commonly Grown Wild in Saudi Arabia Shadid, Khalid A. Shakya, Ashok K. Naik, Rajashri R. Al-Qaisi, Talal S. Oriquat, Ghaleb A. Atoom, Ali M. Farah, Husni S. Molecules Article The use of the synthetic drugs has increased in the last few decades; however, these drugs exhibit various side effects. Scientists are therefore seeking alternatives from natural sources. Commiphora gileadensis has long been used to treat various disorders. It is commonly known as bisham or balm of Makkah. This plant contains various phytochemicals, including polyphenols and flavonoids, with biological potential. We found that steam-distilled essential oil of C. gileadensis exhibited higher antioxidant activity (IC(50,) 22.2 µg/mL) than ascorbic acid (IC(50,) 1.25 µg/mL). The major constituents (>2%) in the essential oil were β-myrcene, nonane, verticiol, β-phellandrene, β-cadinene, terpinen-4-ol, β-eudesmol, α-pinene, cis-β-copaene and verticillol, which might be responsible for the antioxidant and antimicrobial activity against Gram-positive bacteria. The extract of C. gileadensis exhibited inhibitory activity against cyclooxygenase (IC(50,) 450.1 µg/mL), xanthine oxidase (251.2 µg/mL) and protein denaturation (110.5 µg/mL) compared to standard treatments, making it a viable treatment from a natural plant source. LC-MS analysis revealed the presence of phenolic compounds such as caffeic acid phenyl ester, hesperetin, hesperidin, chrysin and transient amounts of catechin, gallic acid, rutin and caffeic acid. The chemical constituents of this plant can be explored further to investigate its wide variety of therapeutic potential. MDPI 2023-03-02 /pmc/articles/PMC10004785/ /pubmed/36903563 http://dx.doi.org/10.3390/molecules28052321 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Shadid, Khalid A.
Shakya, Ashok K.
Naik, Rajashri R.
Al-Qaisi, Talal S.
Oriquat, Ghaleb A.
Atoom, Ali M.
Farah, Husni S.
Exploring the Chemical Constituents, Antioxidant, Xanthine Oxidase and COX Inhibitory Activity of Commiphora gileadensis Commonly Grown Wild in Saudi Arabia
title Exploring the Chemical Constituents, Antioxidant, Xanthine Oxidase and COX Inhibitory Activity of Commiphora gileadensis Commonly Grown Wild in Saudi Arabia
title_full Exploring the Chemical Constituents, Antioxidant, Xanthine Oxidase and COX Inhibitory Activity of Commiphora gileadensis Commonly Grown Wild in Saudi Arabia
title_fullStr Exploring the Chemical Constituents, Antioxidant, Xanthine Oxidase and COX Inhibitory Activity of Commiphora gileadensis Commonly Grown Wild in Saudi Arabia
title_full_unstemmed Exploring the Chemical Constituents, Antioxidant, Xanthine Oxidase and COX Inhibitory Activity of Commiphora gileadensis Commonly Grown Wild in Saudi Arabia
title_short Exploring the Chemical Constituents, Antioxidant, Xanthine Oxidase and COX Inhibitory Activity of Commiphora gileadensis Commonly Grown Wild in Saudi Arabia
title_sort exploring the chemical constituents, antioxidant, xanthine oxidase and cox inhibitory activity of commiphora gileadensis commonly grown wild in saudi arabia
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10004785/
https://www.ncbi.nlm.nih.gov/pubmed/36903563
http://dx.doi.org/10.3390/molecules28052321
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