Literature DB >> 7069706

Potential antitumor agents. 36. Quantitative relationships between experimental antitumor activity, toxicity, and structure for the general class of 9-anilinoacridine antitumor agents.

W A Denny, B F Cain, G J Atwell, C Hansch, A Panthananickal, A Leo.   

Abstract

Quantitative relationships (QSAR) have been derived between antileukemic (L1210) activity and agent physicochemical properties for 509 tumor-active members of the general class of 9-anilinoacridines. One member of this class is the clinical agent m-AMSA (NSC 249992). Agent hydrophobicity proved a significant but not a dominant influence on in vivo potency. The electronic properties of substituent groups proved important, but the most significant effects on drug potency were shown by the steric influence of groups placed at various positions on the 9-anilinoacridine skeleton. The results are entirely consistent with the physiologically important step in the action of these compounds being their binding to double-stranded DNA by intercalation of the acridine chromophore between the base pairs and positioning of the anilino group in the minor groove, as previously suggested. An equation was also derived for the acute toxicities of 643 derivatives of 9-anilinoacridine. This equation took a somewhat similar form to the one modeling antileukemia potency, emphasizing the usual fairly close relationship between potency and acute toxicity for antitumor agents in general. This study demonstrated the power of QSAR techniques to structure very large amounts of biological data and to allow the extraction of useful information from them bearing on the possible site of action of the compounds concerned.

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Year:  1982        PMID: 7069706     DOI: 10.1021/jm00345a015

Source DB:  PubMed          Journal:  J Med Chem        ISSN: 0022-2623            Impact factor:   7.446


  12 in total

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Authors:  H Kubinyi
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2.  CNS Anticancer Drug Discovery and Development Conference White Paper.

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3.  DNA unwinding and inhibition of mouse leukemia L1210 DNA topoisomerase I by intercalators.

Authors:  Y Pommier; J M Covey; D Kerrigan; J Markovits; R Pham
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4.  2-(Phenyl-sulfan-yl)pyridine-3-carboxylic acid.

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5.  Structure-activity relationships and modes of action of 9-anilinoacridines against chloroquine-resistant Plasmodium falciparum in vitro.

Authors:  P Chavalitshewinkoon; P Wilairat; S Gamage; W Denny; D Figgitt; R Ralph
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6.  Recent Advances in the C-H-Functionalization of the Distal Positions in Pyridines and Quinolines.

Authors:  David E Stephens; Oleg V Larionov
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7.  CI-921: an analog of amsacrine with experimental activity against solid tumors.

Authors:  W R Grove; L W DeLap; A J Grillo-López
Journal:  Invest New Drugs       Date:  1986       Impact factor: 3.850

Review 8.  Development of quantitative structure-pharmacokinetic relationships.

Authors:  J M Mayer; H van de Waterbeemd
Journal:  Environ Health Perspect       Date:  1985-09       Impact factor: 9.031

9.  Palladium-Catalyzed C8-Selective C-H Arylation of Quinoline N-Oxides: Insights into the Electronic, Steric and Solvation Effects on the Site-Selectivity by Mechanistic and DFT Computational Studies.

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Journal:  ACS Catal       Date:  2015-01-02       Impact factor: 13.084

10.  Role of minor groove width and hydration pattern on amsacrine interaction with DNA.

Authors:  Deepak K Jangir; Suman Kundu; Ranjana Mehrotra
Journal:  PLoS One       Date:  2013-07-29       Impact factor: 3.240

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