Three-dimensional quantitative structure activity relationship (QSAR) of cytotoxic active 3,5-diaryl-4,5-dihydropyrazole analogs: a comparative molecular field analysis (CoMFA) revisited study

<p>Abstract</p> <p>In vitro antitumor evaluation of the synthesized 46 compounds of 3,5-diaryl-4,5-dihydropyrazoles against EAC cell lines and 3D QSAR study using pharmacophore and Comparative Molecular Field Analysis <b>(</b>CoMFA) methods were described. CoMFA derived...

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Main Authors: Hamad Elgazwy Abdel-Sattar S, Soliman DaliaH S, Atta-Allah Saad R, Ibrahim Diaa A
Format: Article
Language:English
Published: BMC 2012-05-01
Series:Chemistry Central Journal
Subjects:
Online Access:http://journal.chemistrycentral.com/content/6/1/50
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spelling doaj-86d9a5f7a79d4ee8b3fe8a337cbe1f022021-08-02T08:39:36ZengBMCChemistry Central Journal1752-153X2012-05-01615010.1186/1752-153X-6-50Three-dimensional quantitative structure activity relationship (QSAR) of cytotoxic active 3,5-diaryl-4,5-dihydropyrazole analogs: a comparative molecular field analysis (CoMFA) revisited studyHamad Elgazwy Abdel-Sattar SSoliman DaliaH SAtta-Allah Saad RIbrahim Diaa A<p>Abstract</p> <p>In vitro antitumor evaluation of the synthesized 46 compounds of 3,5-diaryl-4,5-dihydropyrazoles against EAC cell lines and 3D QSAR study using pharmacophore and Comparative Molecular Field Analysis <b>(</b>CoMFA) methods were described. CoMFA derived QSAR model shows a good conventional squared correlation coefficient r<sup>2</sup> and cross validated correlation coefficient r<sup>2</sup>cv 0.896 and 0.568 respectively. In this analysis steric and electrostatic field contribute to the QSAR equation by 70% and 30% respectively, suggesting that variation in biological activity of the compounds is dominated by differences in steric (van der Waals) interactions. To visualize the CoMFA steric and electrostatic field from partial least squares (PLS) analysis, contour maps are plotted as percentage contribution to the QSAR equation and are associated with the differences in biological activity.</p> <p>Background</p> <p>Pyrazole derivatives exhibit a wide range of biological properties including promising antitumor activity. Furthermore, Aldol condensation assisted organic synthesis has delivered rapid routes to <it>N</it>-containing heterocycles, including pyrazoles. Combining these features, the use of chalconisation-assisted processes will provide rapid access to a targeted dihydropyrazoles library bearing a hydrazino 3D QSAR study using pharmacophore and Comparative Molecular Field Analysis <b>(</b>CoMFA) methods were described for evaluation of antioxidant properties.</p> <p>Results</p> <p>Chalcones promoted 1 of the 2 steps in a rapid, convergent synthesis of a small library of hydrazinyl pyrazole derivatives, all of which exhibited significant antitumor activity against Ehrlich Ascites Carcinoma (EAC) human tumor cell line comparable to that of the natural anticancer doxorubicin, as a reference standard during this study. In order to understand the observed pharmacological properties, quantitative structure-activity relationship (3D QSAR) study was initiated.</p> <p>Conclusions</p> <p>Chalcones heating provides a rapid and expedient route to a series of pyrazoles to investigate their chracterization scavenging properties. Given their favorable properties, in comparison with known anticancer, these pyrazole derivatives are promising leads for further development and optimization.</p> http://journal.chemistrycentral.com/content/6/1/503,5-diaryl-4,5-dihydropyrazole-1-carbothioamide1-(3,5-diaryl-4,5-dihydropyrazol-1-yl)ethanethioneAntitumorQSARCoMFA
collection DOAJ
language English
format Article
sources DOAJ
author Hamad Elgazwy Abdel-Sattar S
Soliman DaliaH S
Atta-Allah Saad R
Ibrahim Diaa A
spellingShingle Hamad Elgazwy Abdel-Sattar S
Soliman DaliaH S
Atta-Allah Saad R
Ibrahim Diaa A
Three-dimensional quantitative structure activity relationship (QSAR) of cytotoxic active 3,5-diaryl-4,5-dihydropyrazole analogs: a comparative molecular field analysis (CoMFA) revisited study
Chemistry Central Journal
3,5-diaryl-4,5-dihydropyrazole-1-carbothioamide
1-(3,5-diaryl-4,5-dihydropyrazol-1-yl)ethanethione
Antitumor
QSAR
CoMFA
author_facet Hamad Elgazwy Abdel-Sattar S
Soliman DaliaH S
Atta-Allah Saad R
Ibrahim Diaa A
author_sort Hamad Elgazwy Abdel-Sattar S
title Three-dimensional quantitative structure activity relationship (QSAR) of cytotoxic active 3,5-diaryl-4,5-dihydropyrazole analogs: a comparative molecular field analysis (CoMFA) revisited study
title_short Three-dimensional quantitative structure activity relationship (QSAR) of cytotoxic active 3,5-diaryl-4,5-dihydropyrazole analogs: a comparative molecular field analysis (CoMFA) revisited study
title_full Three-dimensional quantitative structure activity relationship (QSAR) of cytotoxic active 3,5-diaryl-4,5-dihydropyrazole analogs: a comparative molecular field analysis (CoMFA) revisited study
title_fullStr Three-dimensional quantitative structure activity relationship (QSAR) of cytotoxic active 3,5-diaryl-4,5-dihydropyrazole analogs: a comparative molecular field analysis (CoMFA) revisited study
title_full_unstemmed Three-dimensional quantitative structure activity relationship (QSAR) of cytotoxic active 3,5-diaryl-4,5-dihydropyrazole analogs: a comparative molecular field analysis (CoMFA) revisited study
title_sort three-dimensional quantitative structure activity relationship (qsar) of cytotoxic active 3,5-diaryl-4,5-dihydropyrazole analogs: a comparative molecular field analysis (comfa) revisited study
publisher BMC
series Chemistry Central Journal
issn 1752-153X
publishDate 2012-05-01
description <p>Abstract</p> <p>In vitro antitumor evaluation of the synthesized 46 compounds of 3,5-diaryl-4,5-dihydropyrazoles against EAC cell lines and 3D QSAR study using pharmacophore and Comparative Molecular Field Analysis <b>(</b>CoMFA) methods were described. CoMFA derived QSAR model shows a good conventional squared correlation coefficient r<sup>2</sup> and cross validated correlation coefficient r<sup>2</sup>cv 0.896 and 0.568 respectively. In this analysis steric and electrostatic field contribute to the QSAR equation by 70% and 30% respectively, suggesting that variation in biological activity of the compounds is dominated by differences in steric (van der Waals) interactions. To visualize the CoMFA steric and electrostatic field from partial least squares (PLS) analysis, contour maps are plotted as percentage contribution to the QSAR equation and are associated with the differences in biological activity.</p> <p>Background</p> <p>Pyrazole derivatives exhibit a wide range of biological properties including promising antitumor activity. Furthermore, Aldol condensation assisted organic synthesis has delivered rapid routes to <it>N</it>-containing heterocycles, including pyrazoles. Combining these features, the use of chalconisation-assisted processes will provide rapid access to a targeted dihydropyrazoles library bearing a hydrazino 3D QSAR study using pharmacophore and Comparative Molecular Field Analysis <b>(</b>CoMFA) methods were described for evaluation of antioxidant properties.</p> <p>Results</p> <p>Chalcones promoted 1 of the 2 steps in a rapid, convergent synthesis of a small library of hydrazinyl pyrazole derivatives, all of which exhibited significant antitumor activity against Ehrlich Ascites Carcinoma (EAC) human tumor cell line comparable to that of the natural anticancer doxorubicin, as a reference standard during this study. In order to understand the observed pharmacological properties, quantitative structure-activity relationship (3D QSAR) study was initiated.</p> <p>Conclusions</p> <p>Chalcones heating provides a rapid and expedient route to a series of pyrazoles to investigate their chracterization scavenging properties. Given their favorable properties, in comparison with known anticancer, these pyrazole derivatives are promising leads for further development and optimization.</p>
topic 3,5-diaryl-4,5-dihydropyrazole-1-carbothioamide
1-(3,5-diaryl-4,5-dihydropyrazol-1-yl)ethanethione
Antitumor
QSAR
CoMFA
url http://journal.chemistrycentral.com/content/6/1/50
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