Computational assessment of environmental hazards of nitroaromatic compounds: Influence of the type and position of aromatic ring substituents on toxicity
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TINKOV, Oleg, OGNICHENKO, L., KUZ'MIN, Victor, GORB, Leonid G., KOSINSKAYA, Anna, MURATOV, Nail, MURATOV, Eugene N., HILL, Frances C., LESZCZYNSKI, Jerzy. Computational assessment of environmental hazards of nitroaromatic compounds: Influence of the type and position of aromatic ring substituents on toxicity. In: Structural Chemistry, 2016, nr. 1(27), pp. 191-198. ISSN 1040-0400. DOI: https://doi.org/10.1007/s11224-015-0715-4
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Structural Chemistry
Numărul 1(27) / 2016 / ISSN 1040-0400 /ISSNe 1572-9001

Computational assessment of environmental hazards of nitroaromatic compounds: Influence of the type and position of aromatic ring substituents on toxicity

DOI:https://doi.org/10.1007/s11224-015-0715-4

Pag. 191-198

Tinkov Oleg1, Ognichenko L.2, Kuz'min Victor2, Gorb Leonid G.3, Kosinskaya Anna24, Muratov Nail5, Muratov Eugene N.6, Hill Frances C.7, Leszczynski Jerzy8
 
1 T.G. Shevchenko State University of Pridnestrovie, Tiraspol,
2 A.V. Bogatsky Physico-Chemical Institute of the NAS of Ukraine,
3 HX5, LLC, Vicksburg,
4 Odessa National Medical University,
5 Odesа Polytechnic National University,
6 University of North Carolina,
7 US Army Research and Development Center, Vicksburg,
8 Jackson State University
 
 
Disponibil în IBN: 23 ianuarie 2023


Rezumat

This study summarizes the results of our recent QSAR and QSPR investigations on prediction of numerous aspects of environmental behavior of nitro compounds. In this study, we applied the QSAR/QSPR models previously developed by our group for virtual screening of energetic compounds, their precursors and other compounds containing nitro groups. To make predictions on the environmental impact of nitro compounds, we analyzed the trends in the change of the experimentally obtained and QSAR/QSPR-predicted values of aqueous solubility, lipophilicity, Ames mutagenicity, bioavailability, blood-brain barrier penetration, aquatic toxicity on T. pyriformis and acute oral toxicity on rats as a function of chemical structure of nitro compounds. All the models were developed using simplex descriptors in combination with random forest (RF) modeling techniques. We interpreted the possible environmental impact (different toxicological properties) in terms of dividing considered nitro compounds based on hydrophobic and hydrophilic characteristics and in terms of the influence of their molecular fragments that promote and interfere with toxicity. In particular, we found that, in general, the presence of amide or tertiary amine groups leads to an increase in toxicity. Also, it was predicted that compounds containing a NO2 group in the para-position of a benzene ring are more toxic than meta-isomers, which, in turn, are more toxic than ortho-isomers. In general, we concluded that hydrophobic nitroaromatic compounds, especially the ones with electron-accepting substituents, halogens and amino groups, are the most environmentally hazardous. 

Cuvinte-cheie
acute toxicity, Nitroaromatic xenobiotics, SiRMS, Virtual screening