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Antiinflammation Derived Suzuki-Coupled Fenbufens as COX-2 Inhibitors: Minilibrary Construction and Bioassay

A small fenbufen library comprising 18 compounds was prepared via Suzuki Miyara coupling. The five-step preparations deliver 9–17% biphenyl compounds in total yield. These fenbufen analogs exert insignificant activity against the IL-1 release as well as inhibiting cyclooxygenase 2 considerably. Both...

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Autores principales: Farn, Shiou-Shiow, Lai, Yen-Buo, Hua, Kuo-Fong, Chen, Hsiang-Ping, Yu, Tzu-Yi, Lo, Sheng-Nan, Shen, Li-Hsin, Sheu, Rong-Jiun, Yu, Chung-Shan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9105197/
https://www.ncbi.nlm.nih.gov/pubmed/35566202
http://dx.doi.org/10.3390/molecules27092850
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author Farn, Shiou-Shiow
Lai, Yen-Buo
Hua, Kuo-Fong
Chen, Hsiang-Ping
Yu, Tzu-Yi
Lo, Sheng-Nan
Shen, Li-Hsin
Sheu, Rong-Jiun
Yu, Chung-Shan
author_facet Farn, Shiou-Shiow
Lai, Yen-Buo
Hua, Kuo-Fong
Chen, Hsiang-Ping
Yu, Tzu-Yi
Lo, Sheng-Nan
Shen, Li-Hsin
Sheu, Rong-Jiun
Yu, Chung-Shan
author_sort Farn, Shiou-Shiow
collection PubMed
description A small fenbufen library comprising 18 compounds was prepared via Suzuki Miyara coupling. The five-step preparations deliver 9–17% biphenyl compounds in total yield. These fenbufen analogs exert insignificant activity against the IL-1 release as well as inhibiting cyclooxygenase 2 considerably. Both the para-amino and para-hydroxy mono substituents display the most substantial COX-2 inhibition, particularly the latter one showing a comparable activity as celecoxib. The most COX-2 selective and bioactive disubstituted compound encompasses one electron-withdrawing methyl and one electron-donating fluoro groups in one arene. COX-2 is selective but not COX-2 to bioactive compounds that contain both two electron-withdrawing groups; disubstituted analogs with both resonance-formable electron-donating dihydroxy groups display high COX-2 activity but inferior COX-2 selectivity. In silico simulation and modeling for three COX-2 active—p-fluoro, p-hydroxy and p-amino—fenbufens show a preferable docking to COX-2 than COX-1. The most stabilization by the p-hydroxy fenbufen with COX-2 predicted by theoretical simulation is consistent with its prominent COX-2 inhibition resulting from experiments.
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spelling pubmed-91051972022-05-14 Antiinflammation Derived Suzuki-Coupled Fenbufens as COX-2 Inhibitors: Minilibrary Construction and Bioassay Farn, Shiou-Shiow Lai, Yen-Buo Hua, Kuo-Fong Chen, Hsiang-Ping Yu, Tzu-Yi Lo, Sheng-Nan Shen, Li-Hsin Sheu, Rong-Jiun Yu, Chung-Shan Molecules Article A small fenbufen library comprising 18 compounds was prepared via Suzuki Miyara coupling. The five-step preparations deliver 9–17% biphenyl compounds in total yield. These fenbufen analogs exert insignificant activity against the IL-1 release as well as inhibiting cyclooxygenase 2 considerably. Both the para-amino and para-hydroxy mono substituents display the most substantial COX-2 inhibition, particularly the latter one showing a comparable activity as celecoxib. The most COX-2 selective and bioactive disubstituted compound encompasses one electron-withdrawing methyl and one electron-donating fluoro groups in one arene. COX-2 is selective but not COX-2 to bioactive compounds that contain both two electron-withdrawing groups; disubstituted analogs with both resonance-formable electron-donating dihydroxy groups display high COX-2 activity but inferior COX-2 selectivity. In silico simulation and modeling for three COX-2 active—p-fluoro, p-hydroxy and p-amino—fenbufens show a preferable docking to COX-2 than COX-1. The most stabilization by the p-hydroxy fenbufen with COX-2 predicted by theoretical simulation is consistent with its prominent COX-2 inhibition resulting from experiments. MDPI 2022-04-29 /pmc/articles/PMC9105197/ /pubmed/35566202 http://dx.doi.org/10.3390/molecules27092850 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
Farn, Shiou-Shiow
Lai, Yen-Buo
Hua, Kuo-Fong
Chen, Hsiang-Ping
Yu, Tzu-Yi
Lo, Sheng-Nan
Shen, Li-Hsin
Sheu, Rong-Jiun
Yu, Chung-Shan
Antiinflammation Derived Suzuki-Coupled Fenbufens as COX-2 Inhibitors: Minilibrary Construction and Bioassay
title Antiinflammation Derived Suzuki-Coupled Fenbufens as COX-2 Inhibitors: Minilibrary Construction and Bioassay
title_full Antiinflammation Derived Suzuki-Coupled Fenbufens as COX-2 Inhibitors: Minilibrary Construction and Bioassay
title_fullStr Antiinflammation Derived Suzuki-Coupled Fenbufens as COX-2 Inhibitors: Minilibrary Construction and Bioassay
title_full_unstemmed Antiinflammation Derived Suzuki-Coupled Fenbufens as COX-2 Inhibitors: Minilibrary Construction and Bioassay
title_short Antiinflammation Derived Suzuki-Coupled Fenbufens as COX-2 Inhibitors: Minilibrary Construction and Bioassay
title_sort antiinflammation derived suzuki-coupled fenbufens as cox-2 inhibitors: minilibrary construction and bioassay
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9105197/
https://www.ncbi.nlm.nih.gov/pubmed/35566202
http://dx.doi.org/10.3390/molecules27092850
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