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том 17 издание 4 страницы 311-322

Synthesis of 5-oxymethyl-1,2,4-triazole-3-carboxamides

Тип публикацииJournal Article
Дата публикации2022-09-30
Включен в RSCI
scimago Q4
БС1
SJR0.214
CiteScore1.5
Impact factor
ISSN24106593, 26867575
Organic Chemistry
Inorganic Chemistry
Process Chemistry and Technology
Fluid Flow and Transfer Processes
Краткое описание

Objectives. A key step in the synthesis of natural nucleoside analogs is the formation of a glycosidic bond between the carbohydrate fragment and the heterocyclic base. Glycosylation methods differ in terms of regio- and stereoselectivity. A promising method for the highly specific synthesis of new pharmacologically active compounds involves an enzymatic reaction catalyzed by genetically engineered nucleoside phosphorylases. This study is devoted to the synthesis of a library of analogs of nucleoside heterocyclic bases—5-oxymethyl-1,2,4-triazole- 3-carboxamides—in order to investigate the substrate specificity of genetically engineered nucleoside phosphorylases.Methods. A method of cyclization of acylamidrazones obtained from the single synthetic precursor β-N-tert-butyloxycarbonyl-oxalamidrazone was used to parallel-synthesize new 5-alkoxy/ aryloxymethyl-1,2,4-triazole-3-carboxamides. Silica gel column chromatography was used to isolate and purify the synthesized compounds. A complex of physicochemical analysis methods (nuclear magnetic resonance spectroscopy, chromatography, and mass spectrometry) confirmed the structure of the compounds obtained in the work.Results. 5-alkoxy/aryloxymethyl-1,2,4-triazole-3-carboxamides were obtained to study the substrate specificity of genetically engineered nucleoside phosphorylases. The possibility of obtaining new nucleoside analogs by the chemico-enzymatic method was demonstrated on the basis of preliminary assessment results.Conclusions. The physicochemical characteristics of a series of novel 5-alkoxy/aryloxymethyl- 1,2,4-triazole-3-carboxamides were studied along with their potential to act as substrates for the transglycosylation reaction catalyzed by nucleoside phosphorylases.

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Grebenkina L. E. et al. Synthesis of 5-oxymethyl-1,2,4-triazole-3-carboxamides // Fine Chemical Technologies. 2022. Vol. 17. No. 4. pp. 311-322.
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Grebenkina L. E., Prutkov A. N., Matveev A., Chudinov M. V. Synthesis of 5-oxymethyl-1,2,4-triazole-3-carboxamides // Fine Chemical Technologies. 2022. Vol. 17. No. 4. pp. 311-322.
RIS |
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TY - JOUR
DO - 10.32362/2410-6593-2022-17-4-311-322
UR - https://doi.org/10.32362/2410-6593-2022-17-4-311-322
TI - Synthesis of 5-oxymethyl-1,2,4-triazole-3-carboxamides
T2 - Fine Chemical Technologies
AU - Grebenkina, L. E.
AU - Prutkov, Alexander N
AU - Matveev, Andrey
AU - Chudinov, Mikhail V
PY - 2022
DA - 2022/09/30
PB - RTU MIREA
SP - 311-322
IS - 4
VL - 17
SN - 2410-6593
SN - 2686-7575
ER -
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@article{2022_Grebenkina,
author = {L. E. Grebenkina and Alexander N Prutkov and Andrey Matveev and Mikhail V Chudinov},
title = {Synthesis of 5-oxymethyl-1,2,4-triazole-3-carboxamides},
journal = {Fine Chemical Technologies},
year = {2022},
volume = {17},
publisher = {RTU MIREA},
month = {sep},
url = {https://doi.org/10.32362/2410-6593-2022-17-4-311-322},
number = {4},
pages = {311--322},
doi = {10.32362/2410-6593-2022-17-4-311-322}
}
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Grebenkina, L. E., et al. “Synthesis of 5-oxymethyl-1,2,4-triazole-3-carboxamides.” Fine Chemical Technologies, vol. 17, no. 4, Sep. 2022, pp. 311-322. https://doi.org/10.32362/2410-6593-2022-17-4-311-322.