Cargando…

Computational Design, Synthesis, and Pharmacological Evaluation of Naproxen-Guaiacol Chimera for Gastro-Sparing Anti-Inflammatory Response by Selective COX2 Inhibition

The 4-allyl guaiacol is a natural phenolic molecule that has been widely studied for its antioxidant capacity against reactive-oxygen-species-mediated cellular damage. Therefore, we hypothesized that concomitant use of an antioxidant and NSAID may decrease the risk of gastrointestinal toxicity and m...

Descripción completa

Detalles Bibliográficos
Autores principales: Shinu, Pottathil, Sharma, Manu, Gupta, Girdhari Lal, Mujwar, Somdutt, Kandeel, Mahmoud, Kumar, Manish, Nair, Anroop B., Goyal, Manoj, Singh, Purna, Attimarad, Mahesh, Venugopala, Katharigatta N., Nagaraja, Sreeharsha, Telsang, Mallikarjun, Aldhubiab, Bandar E., Morsy, Mohamed A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9609004/
https://www.ncbi.nlm.nih.gov/pubmed/36296501
http://dx.doi.org/10.3390/molecules27206905
_version_ 1784818908888301568
author Shinu, Pottathil
Sharma, Manu
Gupta, Girdhari Lal
Mujwar, Somdutt
Kandeel, Mahmoud
Kumar, Manish
Nair, Anroop B.
Goyal, Manoj
Singh, Purna
Attimarad, Mahesh
Venugopala, Katharigatta N.
Nagaraja, Sreeharsha
Telsang, Mallikarjun
Aldhubiab, Bandar E.
Morsy, Mohamed A.
author_facet Shinu, Pottathil
Sharma, Manu
Gupta, Girdhari Lal
Mujwar, Somdutt
Kandeel, Mahmoud
Kumar, Manish
Nair, Anroop B.
Goyal, Manoj
Singh, Purna
Attimarad, Mahesh
Venugopala, Katharigatta N.
Nagaraja, Sreeharsha
Telsang, Mallikarjun
Aldhubiab, Bandar E.
Morsy, Mohamed A.
author_sort Shinu, Pottathil
collection PubMed
description The 4-allyl guaiacol is a natural phenolic molecule that has been widely studied for its antioxidant capacity against reactive-oxygen-species-mediated cellular damage. Therefore, we hypothesized that concomitant use of an antioxidant and NSAID may decrease the risk of gastrointestinal toxicity and make the therapy safer. To address the gastrointestinal toxicity of conventional NSAIDs, a new S-naproxen-4-allyl guaiacol chimera (MAS-1696) was computationally developed, chemically synthesized, and tested for anti-inflammatory effectiveness and gastrointestinal safety. The inhibitory potency of MAS-1696 tested against cyclooxygenase-2 (COX2), 15-lipoxygenase-2 (15-LOX2), and lipoxygenase-5 (5-LOX) in vitro revealed a stronger inhibition of COX2. Furthermore, the MAS-1696 chimera increased the COX selectivity index by 23% as compared to the parent compound naproxen, implying higher efficacy and gastric safety. In vivo data showed that MAS-1696 was less likely to cause gastrointestinal harm than naproxen while also exerting anti-inflammatory and analgesic effects equivalent to or superior to naproxen. In conclusion, MAS-1696 is orally active, bio-labile, and crystalline, making it a medication that may be administered orally.
format Online
Article
Text
id pubmed-9609004
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-96090042022-10-28 Computational Design, Synthesis, and Pharmacological Evaluation of Naproxen-Guaiacol Chimera for Gastro-Sparing Anti-Inflammatory Response by Selective COX2 Inhibition Shinu, Pottathil Sharma, Manu Gupta, Girdhari Lal Mujwar, Somdutt Kandeel, Mahmoud Kumar, Manish Nair, Anroop B. Goyal, Manoj Singh, Purna Attimarad, Mahesh Venugopala, Katharigatta N. Nagaraja, Sreeharsha Telsang, Mallikarjun Aldhubiab, Bandar E. Morsy, Mohamed A. Molecules Article The 4-allyl guaiacol is a natural phenolic molecule that has been widely studied for its antioxidant capacity against reactive-oxygen-species-mediated cellular damage. Therefore, we hypothesized that concomitant use of an antioxidant and NSAID may decrease the risk of gastrointestinal toxicity and make the therapy safer. To address the gastrointestinal toxicity of conventional NSAIDs, a new S-naproxen-4-allyl guaiacol chimera (MAS-1696) was computationally developed, chemically synthesized, and tested for anti-inflammatory effectiveness and gastrointestinal safety. The inhibitory potency of MAS-1696 tested against cyclooxygenase-2 (COX2), 15-lipoxygenase-2 (15-LOX2), and lipoxygenase-5 (5-LOX) in vitro revealed a stronger inhibition of COX2. Furthermore, the MAS-1696 chimera increased the COX selectivity index by 23% as compared to the parent compound naproxen, implying higher efficacy and gastric safety. In vivo data showed that MAS-1696 was less likely to cause gastrointestinal harm than naproxen while also exerting anti-inflammatory and analgesic effects equivalent to or superior to naproxen. In conclusion, MAS-1696 is orally active, bio-labile, and crystalline, making it a medication that may be administered orally. MDPI 2022-10-14 /pmc/articles/PMC9609004/ /pubmed/36296501 http://dx.doi.org/10.3390/molecules27206905 Text en © 2022 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
Shinu, Pottathil
Sharma, Manu
Gupta, Girdhari Lal
Mujwar, Somdutt
Kandeel, Mahmoud
Kumar, Manish
Nair, Anroop B.
Goyal, Manoj
Singh, Purna
Attimarad, Mahesh
Venugopala, Katharigatta N.
Nagaraja, Sreeharsha
Telsang, Mallikarjun
Aldhubiab, Bandar E.
Morsy, Mohamed A.
Computational Design, Synthesis, and Pharmacological Evaluation of Naproxen-Guaiacol Chimera for Gastro-Sparing Anti-Inflammatory Response by Selective COX2 Inhibition
title Computational Design, Synthesis, and Pharmacological Evaluation of Naproxen-Guaiacol Chimera for Gastro-Sparing Anti-Inflammatory Response by Selective COX2 Inhibition
title_full Computational Design, Synthesis, and Pharmacological Evaluation of Naproxen-Guaiacol Chimera for Gastro-Sparing Anti-Inflammatory Response by Selective COX2 Inhibition
title_fullStr Computational Design, Synthesis, and Pharmacological Evaluation of Naproxen-Guaiacol Chimera for Gastro-Sparing Anti-Inflammatory Response by Selective COX2 Inhibition
title_full_unstemmed Computational Design, Synthesis, and Pharmacological Evaluation of Naproxen-Guaiacol Chimera for Gastro-Sparing Anti-Inflammatory Response by Selective COX2 Inhibition
title_short Computational Design, Synthesis, and Pharmacological Evaluation of Naproxen-Guaiacol Chimera for Gastro-Sparing Anti-Inflammatory Response by Selective COX2 Inhibition
title_sort computational design, synthesis, and pharmacological evaluation of naproxen-guaiacol chimera for gastro-sparing anti-inflammatory response by selective cox2 inhibition
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9609004/
https://www.ncbi.nlm.nih.gov/pubmed/36296501
http://dx.doi.org/10.3390/molecules27206905
work_keys_str_mv AT shinupottathil computationaldesignsynthesisandpharmacologicalevaluationofnaproxenguaiacolchimeraforgastrosparingantiinflammatoryresponsebyselectivecox2inhibition
AT sharmamanu computationaldesignsynthesisandpharmacologicalevaluationofnaproxenguaiacolchimeraforgastrosparingantiinflammatoryresponsebyselectivecox2inhibition
AT guptagirdharilal computationaldesignsynthesisandpharmacologicalevaluationofnaproxenguaiacolchimeraforgastrosparingantiinflammatoryresponsebyselectivecox2inhibition
AT mujwarsomdutt computationaldesignsynthesisandpharmacologicalevaluationofnaproxenguaiacolchimeraforgastrosparingantiinflammatoryresponsebyselectivecox2inhibition
AT kandeelmahmoud computationaldesignsynthesisandpharmacologicalevaluationofnaproxenguaiacolchimeraforgastrosparingantiinflammatoryresponsebyselectivecox2inhibition
AT kumarmanish computationaldesignsynthesisandpharmacologicalevaluationofnaproxenguaiacolchimeraforgastrosparingantiinflammatoryresponsebyselectivecox2inhibition
AT nairanroopb computationaldesignsynthesisandpharmacologicalevaluationofnaproxenguaiacolchimeraforgastrosparingantiinflammatoryresponsebyselectivecox2inhibition
AT goyalmanoj computationaldesignsynthesisandpharmacologicalevaluationofnaproxenguaiacolchimeraforgastrosparingantiinflammatoryresponsebyselectivecox2inhibition
AT singhpurna computationaldesignsynthesisandpharmacologicalevaluationofnaproxenguaiacolchimeraforgastrosparingantiinflammatoryresponsebyselectivecox2inhibition
AT attimaradmahesh computationaldesignsynthesisandpharmacologicalevaluationofnaproxenguaiacolchimeraforgastrosparingantiinflammatoryresponsebyselectivecox2inhibition
AT venugopalakatharigattan computationaldesignsynthesisandpharmacologicalevaluationofnaproxenguaiacolchimeraforgastrosparingantiinflammatoryresponsebyselectivecox2inhibition
AT nagarajasreeharsha computationaldesignsynthesisandpharmacologicalevaluationofnaproxenguaiacolchimeraforgastrosparingantiinflammatoryresponsebyselectivecox2inhibition
AT telsangmallikarjun computationaldesignsynthesisandpharmacologicalevaluationofnaproxenguaiacolchimeraforgastrosparingantiinflammatoryresponsebyselectivecox2inhibition
AT aldhubiabbandare computationaldesignsynthesisandpharmacologicalevaluationofnaproxenguaiacolchimeraforgastrosparingantiinflammatoryresponsebyselectivecox2inhibition
AT morsymohameda computationaldesignsynthesisandpharmacologicalevaluationofnaproxenguaiacolchimeraforgastrosparingantiinflammatoryresponsebyselectivecox2inhibition