Investigating Structural Requirements of Some Pyrimidine-linked Benzimidazole Derivatives as Anticancer Agents Against MCF-7 Cancerous Cell Line Through the use of 2D and 3D QSARs
{"title":"Investigating Structural Requirements of Some Pyrimidine-linked Benzimidazole Derivatives as Anticancer Agents Against MCF-7 Cancerous Cell Line Through the use of 2D and 3D QSARs","authors":"K. Mayura, S. L. Khan, Hature Jyoti","doi":"10.2174/2212796813666190207144407","DOIUrl":null,"url":null,"abstract":"\n\nCancer is an extremely fast, unrestrained and pathological propagation\nof cells. Yet there is no cancer treatment that is 100% efficient against scattered cancer.\nHeterocycles have been considered as a boon to treat several cancers of which pyrimidine is\na core nucleus and holds an important place in cancer chemotherapy which is reflected in the\nuse of drugs such as 5-fluorouracil, erlotinib, gefitinib and caneratinib. Also, many good antitumor\nactive agents possess benzimidazoleas its core nucleus.\n\n\n\nTo design novel pyrimidine-linked benzimidazoles and to explore their structural\nrequirements related to anticancer potential.\n\n\n\n2D and 3D Quantitative structure–activity relationship (QSAR) studies were carried\nout on a series of already synthesized 27 pyrimidine-benzimidazole derivatives.\n\n\n\nStatistically significant and optimum 2D-QSAR model was developed by using\nstep-wise variable multiple linear regression method, yielding correlation coefficient r2 =\n0.89, cross-validated squared correlation coefficient q2 = 0.79 and external predictive ability\nof pred_r2 = 0.73 Best 3D-QSAR model was developed by employing molecular field analysis\nusing step-wise variable k-nearest neighbor method which showed good correlative and\npredictive abilities in terms of q2 =0.77 and pred_r2= 0.93.\n\n\n\nThese 2D and 3D models were found to give dependable indications which\nhelped to optimize the pyrimidine-benzimidazole derivatives of the data set. The data yielded\nby 2D- QSAR and 3D-QSAR models will aid in giving better perceptions about structural\nrequirements for developing newer anticancer agents.\n","PeriodicalId":10784,"journal":{"name":"Current Chemical Biology","volume":"1 1","pages":""},"PeriodicalIF":0.0000,"publicationDate":"2019-11-30","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"1","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"Current Chemical Biology","FirstCategoryId":"1085","ListUrlMain":"https://doi.org/10.2174/2212796813666190207144407","RegionNum":0,"RegionCategory":null,"ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"","JCRName":"","Score":null,"Total":0}
引用次数: 1
Abstract
Cancer is an extremely fast, unrestrained and pathological propagation
of cells. Yet there is no cancer treatment that is 100% efficient against scattered cancer.
Heterocycles have been considered as a boon to treat several cancers of which pyrimidine is
a core nucleus and holds an important place in cancer chemotherapy which is reflected in the
use of drugs such as 5-fluorouracil, erlotinib, gefitinib and caneratinib. Also, many good antitumor
active agents possess benzimidazoleas its core nucleus.
To design novel pyrimidine-linked benzimidazoles and to explore their structural
requirements related to anticancer potential.
2D and 3D Quantitative structure–activity relationship (QSAR) studies were carried
out on a series of already synthesized 27 pyrimidine-benzimidazole derivatives.
Statistically significant and optimum 2D-QSAR model was developed by using
step-wise variable multiple linear regression method, yielding correlation coefficient r2 =
0.89, cross-validated squared correlation coefficient q2 = 0.79 and external predictive ability
of pred_r2 = 0.73 Best 3D-QSAR model was developed by employing molecular field analysis
using step-wise variable k-nearest neighbor method which showed good correlative and
predictive abilities in terms of q2 =0.77 and pred_r2= 0.93.
These 2D and 3D models were found to give dependable indications which
helped to optimize the pyrimidine-benzimidazole derivatives of the data set. The data yielded
by 2D- QSAR and 3D-QSAR models will aid in giving better perceptions about structural
requirements for developing newer anticancer agents.
期刊介绍:
Current Chemical Biology aims to publish full-length and mini reviews on exciting new developments at the chemistry-biology interface, covering topics relating to Chemical Synthesis, Science at Chemistry-Biology Interface and Chemical Mechanisms of Biological Systems. Current Chemical Biology covers the following areas: Chemical Synthesis (Syntheses of biologically important macromolecules including proteins, polypeptides, oligonucleotides, oligosaccharides etc.; Asymmetric synthesis; Combinatorial synthesis; Diversity-oriented synthesis; Template-directed synthesis; Biomimetic synthesis; Solid phase biomolecular synthesis; Synthesis of small biomolecules: amino acids, peptides, lipids, carbohydrates and nucleosides; and Natural product synthesis).