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Substituted spirooxindole derivatives as potent anticancer agents through inhibition of phosphodiesterase 1

Spirooxindole is a promising chemo therapeutic agent. Possible targets include cancers of the liver, prostate, lung, stomach, colon, and breast. Here, we demonstrate a one-pot three-component reaction via a [3 + 2] cycloaddition/ring contraction sequence of a dipolarophile (activated alkene) with in...

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Autores principales: Barakat, Assem, Islam, Mohammad Shahidul, Ghawas, Hussien Mansur, Al-Majid, Abdullah Mohammed, El-Senduny, Fardous F., Badria, Farid A., Elshaier, Yaseen A. M. M., Ghabbour, Hazem A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9079959/
https://www.ncbi.nlm.nih.gov/pubmed/35540737
http://dx.doi.org/10.1039/c8ra02358a
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author Barakat, Assem
Islam, Mohammad Shahidul
Ghawas, Hussien Mansur
Al-Majid, Abdullah Mohammed
El-Senduny, Fardous F.
Badria, Farid A.
Elshaier, Yaseen A. M. M.
Ghabbour, Hazem A.
author_facet Barakat, Assem
Islam, Mohammad Shahidul
Ghawas, Hussien Mansur
Al-Majid, Abdullah Mohammed
El-Senduny, Fardous F.
Badria, Farid A.
Elshaier, Yaseen A. M. M.
Ghabbour, Hazem A.
author_sort Barakat, Assem
collection PubMed
description Spirooxindole is a promising chemo therapeutic agent. Possible targets include cancers of the liver, prostate, lung, stomach, colon, and breast. Here, we demonstrate a one-pot three-component reaction via a [3 + 2] cycloaddition/ring contraction sequence of a dipolarophile (activated alkene) with in situ-generated azomethine ylide (1,3-dipoles) without the use of any catalyst. The reaction provides efficient access to synthetically useful and biologically important spirooxindoles in high yield (69–94%) with high diastereoselectivity. The synthesized compounds were subjected to cytotoxicity evaluation using colorectal cancer (HCT-116), hepatocellular carcinoma (HepG2), and prostate cancer (PC-3) cells. Compounds 4i, 4j, and 4k showed potent cytotoxic activity and high selectivity against HCT-116 cells when compared to cisplatin. Meanwhile compound 4d retained high cytotoxic activity and selectivity against HepG2 and PC-3 cells in comparison to cisplatin. The mechanism of compound 4d was further studied using phosphodiesterase 1 enzyme and showed 74.2% inhibitory activity. A possible binding mode for compound 4d to PDE-1 was investigated by molecular modeling using OpenEye software. Pose predictions for the active compounds were demonstrated by ROCS alignments. Compound 4d has a special geometry and differs from other active compounds.
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spelling pubmed-90799592022-05-09 Substituted spirooxindole derivatives as potent anticancer agents through inhibition of phosphodiesterase 1 Barakat, Assem Islam, Mohammad Shahidul Ghawas, Hussien Mansur Al-Majid, Abdullah Mohammed El-Senduny, Fardous F. Badria, Farid A. Elshaier, Yaseen A. M. M. Ghabbour, Hazem A. RSC Adv Chemistry Spirooxindole is a promising chemo therapeutic agent. Possible targets include cancers of the liver, prostate, lung, stomach, colon, and breast. Here, we demonstrate a one-pot three-component reaction via a [3 + 2] cycloaddition/ring contraction sequence of a dipolarophile (activated alkene) with in situ-generated azomethine ylide (1,3-dipoles) without the use of any catalyst. The reaction provides efficient access to synthetically useful and biologically important spirooxindoles in high yield (69–94%) with high diastereoselectivity. The synthesized compounds were subjected to cytotoxicity evaluation using colorectal cancer (HCT-116), hepatocellular carcinoma (HepG2), and prostate cancer (PC-3) cells. Compounds 4i, 4j, and 4k showed potent cytotoxic activity and high selectivity against HCT-116 cells when compared to cisplatin. Meanwhile compound 4d retained high cytotoxic activity and selectivity against HepG2 and PC-3 cells in comparison to cisplatin. The mechanism of compound 4d was further studied using phosphodiesterase 1 enzyme and showed 74.2% inhibitory activity. A possible binding mode for compound 4d to PDE-1 was investigated by molecular modeling using OpenEye software. Pose predictions for the active compounds were demonstrated by ROCS alignments. Compound 4d has a special geometry and differs from other active compounds. The Royal Society of Chemistry 2018-04-17 /pmc/articles/PMC9079959/ /pubmed/35540737 http://dx.doi.org/10.1039/c8ra02358a Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by/3.0/
spellingShingle Chemistry
Barakat, Assem
Islam, Mohammad Shahidul
Ghawas, Hussien Mansur
Al-Majid, Abdullah Mohammed
El-Senduny, Fardous F.
Badria, Farid A.
Elshaier, Yaseen A. M. M.
Ghabbour, Hazem A.
Substituted spirooxindole derivatives as potent anticancer agents through inhibition of phosphodiesterase 1
title Substituted spirooxindole derivatives as potent anticancer agents through inhibition of phosphodiesterase 1
title_full Substituted spirooxindole derivatives as potent anticancer agents through inhibition of phosphodiesterase 1
title_fullStr Substituted spirooxindole derivatives as potent anticancer agents through inhibition of phosphodiesterase 1
title_full_unstemmed Substituted spirooxindole derivatives as potent anticancer agents through inhibition of phosphodiesterase 1
title_short Substituted spirooxindole derivatives as potent anticancer agents through inhibition of phosphodiesterase 1
title_sort substituted spirooxindole derivatives as potent anticancer agents through inhibition of phosphodiesterase 1
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9079959/
https://www.ncbi.nlm.nih.gov/pubmed/35540737
http://dx.doi.org/10.1039/c8ra02358a
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