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Carbocyclic functionalization of quinoxalines, their chalcogen congeners 2,1,3-benzothia/selenadiazoles, and related 1,2-diaminobenzenes based on nucleophilic substitution of fluorine. / Mikhailovskaya, Tatiana F.; Makarov, Arkady G.; Selikhova, Natalia Yu и др.

в: Journal of Fluorine Chemistry, Том 183, 01.03.2016, стр. 44-58.

Результаты исследований: Научные публикации в периодических изданияхстатьяРецензирование

Harvard

Mikhailovskaya, TF, Makarov, AG, Selikhova, NY, Makarov, AY, Pritchina, EA, Bagryanskaya, IY, Vorontsova, EV, Ivanov, ID, Tikhova, VD, Gritsan, NP, Slizhov, YG & Zibarev, AV 2016, 'Carbocyclic functionalization of quinoxalines, their chalcogen congeners 2,1,3-benzothia/selenadiazoles, and related 1,2-diaminobenzenes based on nucleophilic substitution of fluorine', Journal of Fluorine Chemistry, Том. 183, стр. 44-58. https://doi.org/10.1016/j.jfluchem.2016.01.009

APA

Mikhailovskaya, T. F., Makarov, A. G., Selikhova, N. Y., Makarov, A. Y., Pritchina, E. A., Bagryanskaya, I. Y., Vorontsova, E. V., Ivanov, I. D., Tikhova, V. D., Gritsan, N. P., Slizhov, Y. G., & Zibarev, A. V. (2016). Carbocyclic functionalization of quinoxalines, their chalcogen congeners 2,1,3-benzothia/selenadiazoles, and related 1,2-diaminobenzenes based on nucleophilic substitution of fluorine. Journal of Fluorine Chemistry, 183, 44-58. https://doi.org/10.1016/j.jfluchem.2016.01.009

Vancouver

Mikhailovskaya TF, Makarov AG, Selikhova NY, Makarov AY, Pritchina EA, Bagryanskaya IY и др. Carbocyclic functionalization of quinoxalines, their chalcogen congeners 2,1,3-benzothia/selenadiazoles, and related 1,2-diaminobenzenes based on nucleophilic substitution of fluorine. Journal of Fluorine Chemistry. 2016 март 1;183:44-58. doi: 10.1016/j.jfluchem.2016.01.009

Author

Mikhailovskaya, Tatiana F. ; Makarov, Arkady G. ; Selikhova, Natalia Yu и др. / Carbocyclic functionalization of quinoxalines, their chalcogen congeners 2,1,3-benzothia/selenadiazoles, and related 1,2-diaminobenzenes based on nucleophilic substitution of fluorine. в: Journal of Fluorine Chemistry. 2016 ; Том 183. стр. 44-58.

BibTeX

@article{f8a4e4faf6a349aea6f6bf892233dcb0,
title = "Carbocyclic functionalization of quinoxalines, their chalcogen congeners 2,1,3-benzothia/selenadiazoles, and related 1,2-diaminobenzenes based on nucleophilic substitution of fluorine",
abstract = "Previously unknown mono-, di- and in some cases tri- and tetra- carbocycle-substituted quinoxalines (2–8), 2,1,3-benzothiadiazoles (11, 12, 14–17) and 2,1,3-benzoselenadiazoles (20-25) were synthesized by nucleophilic substitution of fluorine in 5,6,7,8-tetrafluoroquinoxaline (1) and 4,5,6,7-tetrafluoro-2,1,3-benzothia/selenadiazoles (10 and 19, respectively) with methoxide and dimethylamine. In the 1:1 reactions, the nucleophiles attacked selectively the position 6 of 1 or the position 5 of 10 and 19. The regioselective nature of the 1:1 reactions was confirmed by the DFT calculations at the M06-2X/6-31+G(d,p) level of theory. Disubstituted quinoxaline (28), thia- (29) and selena- (30) diazoles bearing two different substituents, i.e. MeO- and Me2N-, were synthesized in a similar way. New substituted 1,2-diaminobenzenes (31–33) were prepared by reduction of corresponding thiadiazoles (12, 14, 15) and isolated in the form of hydrochlorides. Compound 33 was converted into a new quinoxaline (34) by reaction with (PhCO)2. Compounds 5, 7 and 14 were studied for cytotoxicity toward the human cancer cells and effects on the cytochrome P450 mRNA expression. They did not cause any significant modulations in the expression of several cytochrome P450 genes, and 7 was weakly toxic for the Hep2 (carcinoma) and U937 (leukemia) cells, particularly, apoptosis was observed.",
keywords = "1,2-Diaminobenzenes, 2,1,3-Benzothia/selenadiazoles, Nucleophilic substitution, Organofluorine, Quinoxalines",
author = "Mikhailovskaya, {Tatiana F.} and Makarov, {Arkady G.} and Selikhova, {Natalia Yu} and Makarov, {Alexander Yu} and Pritchina, {Elena A.} and Bagryanskaya, {Irina Yu} and Vorontsova, {Elena V.} and Ivanov, {Igor D.} and Tikhova, {Vera D.} and Gritsan, {Nina P.} and Slizhov, {Yuri G.} and Zibarev, {Andrey V.}",
year = "2016",
month = mar,
day = "1",
doi = "10.1016/j.jfluchem.2016.01.009",
language = "English",
volume = "183",
pages = "44--58",
journal = "Journal of Fluorine Chemistry",
issn = "0022-1139",
publisher = "Elsevier",

}

RIS

TY - JOUR

T1 - Carbocyclic functionalization of quinoxalines, their chalcogen congeners 2,1,3-benzothia/selenadiazoles, and related 1,2-diaminobenzenes based on nucleophilic substitution of fluorine

AU - Mikhailovskaya, Tatiana F.

AU - Makarov, Arkady G.

AU - Selikhova, Natalia Yu

AU - Makarov, Alexander Yu

AU - Pritchina, Elena A.

AU - Bagryanskaya, Irina Yu

AU - Vorontsova, Elena V.

AU - Ivanov, Igor D.

AU - Tikhova, Vera D.

AU - Gritsan, Nina P.

AU - Slizhov, Yuri G.

AU - Zibarev, Andrey V.

PY - 2016/3/1

Y1 - 2016/3/1

N2 - Previously unknown mono-, di- and in some cases tri- and tetra- carbocycle-substituted quinoxalines (2–8), 2,1,3-benzothiadiazoles (11, 12, 14–17) and 2,1,3-benzoselenadiazoles (20-25) were synthesized by nucleophilic substitution of fluorine in 5,6,7,8-tetrafluoroquinoxaline (1) and 4,5,6,7-tetrafluoro-2,1,3-benzothia/selenadiazoles (10 and 19, respectively) with methoxide and dimethylamine. In the 1:1 reactions, the nucleophiles attacked selectively the position 6 of 1 or the position 5 of 10 and 19. The regioselective nature of the 1:1 reactions was confirmed by the DFT calculations at the M06-2X/6-31+G(d,p) level of theory. Disubstituted quinoxaline (28), thia- (29) and selena- (30) diazoles bearing two different substituents, i.e. MeO- and Me2N-, were synthesized in a similar way. New substituted 1,2-diaminobenzenes (31–33) were prepared by reduction of corresponding thiadiazoles (12, 14, 15) and isolated in the form of hydrochlorides. Compound 33 was converted into a new quinoxaline (34) by reaction with (PhCO)2. Compounds 5, 7 and 14 were studied for cytotoxicity toward the human cancer cells and effects on the cytochrome P450 mRNA expression. They did not cause any significant modulations in the expression of several cytochrome P450 genes, and 7 was weakly toxic for the Hep2 (carcinoma) and U937 (leukemia) cells, particularly, apoptosis was observed.

AB - Previously unknown mono-, di- and in some cases tri- and tetra- carbocycle-substituted quinoxalines (2–8), 2,1,3-benzothiadiazoles (11, 12, 14–17) and 2,1,3-benzoselenadiazoles (20-25) were synthesized by nucleophilic substitution of fluorine in 5,6,7,8-tetrafluoroquinoxaline (1) and 4,5,6,7-tetrafluoro-2,1,3-benzothia/selenadiazoles (10 and 19, respectively) with methoxide and dimethylamine. In the 1:1 reactions, the nucleophiles attacked selectively the position 6 of 1 or the position 5 of 10 and 19. The regioselective nature of the 1:1 reactions was confirmed by the DFT calculations at the M06-2X/6-31+G(d,p) level of theory. Disubstituted quinoxaline (28), thia- (29) and selena- (30) diazoles bearing two different substituents, i.e. MeO- and Me2N-, were synthesized in a similar way. New substituted 1,2-diaminobenzenes (31–33) were prepared by reduction of corresponding thiadiazoles (12, 14, 15) and isolated in the form of hydrochlorides. Compound 33 was converted into a new quinoxaline (34) by reaction with (PhCO)2. Compounds 5, 7 and 14 were studied for cytotoxicity toward the human cancer cells and effects on the cytochrome P450 mRNA expression. They did not cause any significant modulations in the expression of several cytochrome P450 genes, and 7 was weakly toxic for the Hep2 (carcinoma) and U937 (leukemia) cells, particularly, apoptosis was observed.

KW - 1,2-Diaminobenzenes

KW - 2,1,3-Benzothia/selenadiazoles

KW - Nucleophilic substitution

KW - Organofluorine

KW - Quinoxalines

UR - http://www.scopus.com/inward/record.url?scp=85017153971&partnerID=8YFLogxK

U2 - 10.1016/j.jfluchem.2016.01.009

DO - 10.1016/j.jfluchem.2016.01.009

M3 - Article

AN - SCOPUS:85017153971

VL - 183

SP - 44

EP - 58

JO - Journal of Fluorine Chemistry

JF - Journal of Fluorine Chemistry

SN - 0022-1139

ER -

ID: 25832384