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Fine Chemical Technologies, volume 17, issue 4, pages 323-334

Amination of epoxides as a convenient approach for lipophilic polyamines synthesis

Publication typeJournal Article
Publication date2022-09-30
Quartile SCImago
Q4
Quartile WOS
Impact factor
ISSN24106593, 26867575
Organic Chemistry
Inorganic Chemistry
Process Chemistry and Technology
Fluid Flow and Transfer Processes
Abstract

Objectives. Alkylated derivatives of polyamines are able to block the growth of cancer cells due to their embedding into the polyamine biosynthesis mechanisms. The study aimed to synthesize lipophilic derivatives of norspermine or triethylenetetramine based on the formation of a C–N bond during the opening of the oxirane ring by primary amines to expand a number of synthetic polyamine derivatives with antitumor activity.Methods. The starting compounds—glycidol alcoholate or epichlorohydrin—were reacted with hexadecyl bromide or sodium hexadecanolate to give glycidyl hexadecyl ether. The key reaction for the preparation of lipophilic polyamines was the amination of lipophilic epoxides with polyamines in the presence of calcium triflate. Acylation of the hydroxyl group formed during the opening of oxirane was carried out by the action of 4-dimethylaminopyridine and acetic anhydride. The introduction of an alkyl substituent in the presence of sodium hydride led to intramolecular cyclization with the formation of an oxoazolidine cycle. The regioselectivity of the oxirane ring opening reaction at the C(1) position of glycerol was confirmed by two-dimensional heteronuclear {1H,13C} nuclear magnetic resonance spectroscopy.Results. An approach to the synthesis of novel lipophilic polyamines based on the catalytic amination of epoxides was developed and tested. Compounds based on norspermine and triethylentetramine containing a hydroxyl group at the C(2) atom of the glycerin backbone were obtained. For norspermine derivatives, the hydroxyl group was modified: an acetyl substituent was introduced and a derivative containing an oxoazolidine cycle was obtained.Conclusions. The obtained lipophilic polyamines can be considered as potential antitumor agents, for which cytotoxicity against various cancer cells will be evaluated in the future.

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Current Organic Chemistry
Current Organic Chemistry, 1, 100%
Current Organic Chemistry
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Bentham Science
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Bentham Science
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Eshtukova Shcheglova E. A. et al. Amination of epoxides as a convenient approach for lipophilic polyamines synthesis // Fine Chemical Technologies. 2022. Vol. 17. No. 4. pp. 323-334.
GOST all authors (up to 50) Copy
Eshtukova Shcheglova E. A., Perevoshchikova K. A., Eshtukov Shcheglov A. V., Cheshkov D. A., Maslov M. Amination of epoxides as a convenient approach for lipophilic polyamines synthesis // Fine Chemical Technologies. 2022. Vol. 17. No. 4. pp. 323-334.
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TY - JOUR
DO - 10.32362/2410-6593-2022-17-4-323-334
UR - https://doi.org/10.32362%2F2410-6593-2022-17-4-323-334
TI - Amination of epoxides as a convenient approach for lipophilic polyamines synthesis
T2 - Fine Chemical Technologies
AU - Eshtukova Shcheglova, E A
AU - Perevoshchikova, K A
AU - Eshtukov Shcheglov, A V
AU - Cheshkov, Dmitry A.
AU - Maslov, Michael
PY - 2022
DA - 2022/09/30 00:00:00
PB - RTU MIREA
SP - 323-334
IS - 4
VL - 17
SN - 2410-6593
SN - 2686-7575
ER -
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@article{2022_Eshtukova Shcheglova,
author = {E A Eshtukova Shcheglova and K A Perevoshchikova and A V Eshtukov Shcheglov and Dmitry A. Cheshkov and Michael Maslov},
title = {Amination of epoxides as a convenient approach for lipophilic polyamines synthesis},
journal = {Fine Chemical Technologies},
year = {2022},
volume = {17},
publisher = {RTU MIREA},
month = {sep},
url = {https://doi.org/10.32362%2F2410-6593-2022-17-4-323-334},
number = {4},
pages = {323--334},
doi = {10.32362/2410-6593-2022-17-4-323-334}
}
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Eshtukova Shcheglova, E. A., et al. “Amination of epoxides as a convenient approach for lipophilic polyamines synthesis.” Fine Chemical Technologies, vol. 17, no. 4, Sep. 2022, pp. 323-334. https://doi.org/10.32362%2F2410-6593-2022-17-4-323-334.
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