QUANTITATIVE ELECTRONIC STRUCTURE - ACTIVITY RELATIONSHIPS ANALYSIS ANTIMUTAGENIC BENZALACETONE DERIVATIVES BY PRINCIPAL COMPONENT REGRESSION APPROACH

Quantitative Electronic Structure Activity Relationship (QSAR) analysis of a series of benzalacetones has been investigated based on semi empirical PM3 calculation data using Principal Components Regression (PCR). Investigation has been done based on antimutagen activity from benzalacetone compounds...

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Main Authors: Yuliana Yuliana, Harno Dwi Pranowo, Jumina Jumina, Iqmal Tahir
Format: Article
Language:English
Published: Universitas Gadjah Mada 2010-06-01
Series:Indonesian Journal of Chemistry
Online Access:https://jurnal.ugm.ac.id/ijc/article/view/21876
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spelling doaj-05041cc0f7d04aad867a5e0c3b9a11902020-11-25T01:05:17ZengUniversitas Gadjah MadaIndonesian Journal of Chemistry1411-94202460-15782010-06-0141687510.22146/ijc.2187614974QUANTITATIVE ELECTRONIC STRUCTURE - ACTIVITY RELATIONSHIPS ANALYSIS ANTIMUTAGENIC BENZALACETONE DERIVATIVES BY PRINCIPAL COMPONENT REGRESSION APPROACHYuliana Yuliana0Harno Dwi Pranowo1Jumina Jumina2Iqmal Tahir3Austrian-Indonesian Centre for Computational Chemistry, Universitas Gadjah Mada, YogyakartaAustrian-Indonesian Centre for Computational Chemistry, Universitas Gadjah Mada, YogyakartaChemistry Department, Faculty of Mathematics and Natural Sciences, Universitas Gadjah Mada, YogyakartaAustrian-Indonesian Centre for Computational Chemistry, Universitas Gadjah Mada, YogyakartaQuantitative Electronic Structure Activity Relationship (QSAR) analysis of a series of benzalacetones has been investigated based on semi empirical PM3 calculation data using Principal Components Regression (PCR). Investigation has been done based on antimutagen activity from benzalacetone compounds (presented by log 1/IC50) and was studied as linear correlation with latent variables (Tx) resulted from transformation of atomic net charges using Principal Component Analysis (PCA). QSAR equation was determinated based on distribution of selected components and then was analysed with PCR. The result was described by the following QSAR equation : log 1/IC50 = 6.555 + (2.177).T1 + (2.284).T2 + (1.933).T3 The equation was significant on the 95% level with statistical parameters : n = 28 r = 0.766  SE  = 0.245  Fcalculation/Ftable = 3.780 and gave the PRESS result 0.002. It means that there were only a relatively few deviations between the experimental and theoretical data of antimutagenic activity.          New types of benzalacetone derivative compounds were designed  and their theoretical activity were predicted based on the best QSAR equation. It was found that compounds number 29, 30, 31, 32, 33, 35, 36, 37, 38, 40, 41, 42, 44, 47, 48, 49 and 50  have  a relatively high antimutagenic activity.   Keywords: QSAR; antimutagenic activity; benzalaceton; atomic net chargehttps://jurnal.ugm.ac.id/ijc/article/view/21876
collection DOAJ
language English
format Article
sources DOAJ
author Yuliana Yuliana
Harno Dwi Pranowo
Jumina Jumina
Iqmal Tahir
spellingShingle Yuliana Yuliana
Harno Dwi Pranowo
Jumina Jumina
Iqmal Tahir
QUANTITATIVE ELECTRONIC STRUCTURE - ACTIVITY RELATIONSHIPS ANALYSIS ANTIMUTAGENIC BENZALACETONE DERIVATIVES BY PRINCIPAL COMPONENT REGRESSION APPROACH
Indonesian Journal of Chemistry
author_facet Yuliana Yuliana
Harno Dwi Pranowo
Jumina Jumina
Iqmal Tahir
author_sort Yuliana Yuliana
title QUANTITATIVE ELECTRONIC STRUCTURE - ACTIVITY RELATIONSHIPS ANALYSIS ANTIMUTAGENIC BENZALACETONE DERIVATIVES BY PRINCIPAL COMPONENT REGRESSION APPROACH
title_short QUANTITATIVE ELECTRONIC STRUCTURE - ACTIVITY RELATIONSHIPS ANALYSIS ANTIMUTAGENIC BENZALACETONE DERIVATIVES BY PRINCIPAL COMPONENT REGRESSION APPROACH
title_full QUANTITATIVE ELECTRONIC STRUCTURE - ACTIVITY RELATIONSHIPS ANALYSIS ANTIMUTAGENIC BENZALACETONE DERIVATIVES BY PRINCIPAL COMPONENT REGRESSION APPROACH
title_fullStr QUANTITATIVE ELECTRONIC STRUCTURE - ACTIVITY RELATIONSHIPS ANALYSIS ANTIMUTAGENIC BENZALACETONE DERIVATIVES BY PRINCIPAL COMPONENT REGRESSION APPROACH
title_full_unstemmed QUANTITATIVE ELECTRONIC STRUCTURE - ACTIVITY RELATIONSHIPS ANALYSIS ANTIMUTAGENIC BENZALACETONE DERIVATIVES BY PRINCIPAL COMPONENT REGRESSION APPROACH
title_sort quantitative electronic structure - activity relationships analysis antimutagenic benzalacetone derivatives by principal component regression approach
publisher Universitas Gadjah Mada
series Indonesian Journal of Chemistry
issn 1411-9420
2460-1578
publishDate 2010-06-01
description Quantitative Electronic Structure Activity Relationship (QSAR) analysis of a series of benzalacetones has been investigated based on semi empirical PM3 calculation data using Principal Components Regression (PCR). Investigation has been done based on antimutagen activity from benzalacetone compounds (presented by log 1/IC50) and was studied as linear correlation with latent variables (Tx) resulted from transformation of atomic net charges using Principal Component Analysis (PCA). QSAR equation was determinated based on distribution of selected components and then was analysed with PCR. The result was described by the following QSAR equation : log 1/IC50 = 6.555 + (2.177).T1 + (2.284).T2 + (1.933).T3 The equation was significant on the 95% level with statistical parameters : n = 28 r = 0.766  SE  = 0.245  Fcalculation/Ftable = 3.780 and gave the PRESS result 0.002. It means that there were only a relatively few deviations between the experimental and theoretical data of antimutagenic activity.          New types of benzalacetone derivative compounds were designed  and their theoretical activity were predicted based on the best QSAR equation. It was found that compounds number 29, 30, 31, 32, 33, 35, 36, 37, 38, 40, 41, 42, 44, 47, 48, 49 and 50  have  a relatively high antimutagenic activity.   Keywords: QSAR; antimutagenic activity; benzalaceton; atomic net charge
url https://jurnal.ugm.ac.id/ijc/article/view/21876
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AT harnodwipranowo quantitativeelectronicstructureactivityrelationshipsanalysisantimutagenicbenzalacetonederivativesbyprincipalcomponentregressionapproach
AT juminajumina quantitativeelectronicstructureactivityrelationshipsanalysisantimutagenicbenzalacetonederivativesbyprincipalcomponentregressionapproach
AT iqmaltahir quantitativeelectronicstructureactivityrelationshipsanalysisantimutagenicbenzalacetonederivativesbyprincipalcomponentregressionapproach
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