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Myrtenyl-bispidine containing azole: synthesis and antifungal activity

Nikolai Sergeevich Li-Zhulanov 1
Nikolai Sergeevich Li-Zhulanov
Konstantin Yur'evich Ponomarev 1
Konstantin Yur'evich Ponomarev
Suat Sari 2
Suat Sari
Dolunay Gulmez 3
Dolunay Gulmez
Sevtap Arikan-Akdagli 3
Sevtap Arikan-Akdagli
Vyacheslav Ivanovich Krasnov 1
Vyacheslav Ivanovich Krasnov
Evgenii Vladimirovich Suslov 1
Evgenii Vladimirovich Suslov
Konstantin Petrovich Volcho 1
Konstantin Petrovich Volcho
Nariman Faridovich Salakhutdinov 1
Nariman Faridovich Salakhutdinov
2 Faculty of Pharmacy, Hacettepe University, Sihhiye, Ankara, Turkey
3 Faculty of Medicine, Hacettepe University, Sihhiye, Ankara, Turkey
Published 2023-12-25
CommunicationVolume 34, Issue 1, 119-121
3
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Li-Zhulanov N. S. et al. Myrtenyl-bispidine containing azole: synthesis and antifungal activity // Mendeleev Communications. 2023. Vol. 34. No. 1. pp. 119-121.
GOST all authors (up to 50) Copy
Li-Zhulanov N. S., Ponomarev K. Y., Sari S., Gulmez D., Arikan-Akdagli S., Krasnov V. I., Suslov E. V., Volcho K. P., Salakhutdinov N. F. Myrtenyl-bispidine containing azole: synthesis and antifungal activity // Mendeleev Communications. 2023. Vol. 34. No. 1. pp. 119-121.
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TY - JOUR
DO - 10.1016/j.mencom.2024.01.036
UR - https://mendcomm.colab.ws/publications/10.1016/j.mencom.2024.01.036
TI - Myrtenyl-bispidine containing azole: synthesis and antifungal activity
T2 - Mendeleev Communications
AU - Li-Zhulanov, Nikolai Sergeevich
AU - Ponomarev, Konstantin Yur'evich
AU - Sari, Suat
AU - Gulmez, Dolunay
AU - Arikan-Akdagli, Sevtap
AU - Krasnov, Vyacheslav Ivanovich
AU - Suslov, Evgenii Vladimirovich
AU - Volcho, Konstantin Petrovich
AU - Salakhutdinov, Nariman Faridovich
PY - 2023
DA - 2023/12/25
PB - Mendeleev Communications
SP - 119-121
IS - 1
VL - 34
ER -
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@article{2023_Li-Zhulanov,
author = {Nikolai Sergeevich Li-Zhulanov and Konstantin Yur'evich Ponomarev and Suat Sari and Dolunay Gulmez and Sevtap Arikan-Akdagli and Vyacheslav Ivanovich Krasnov and Evgenii Vladimirovich Suslov and Konstantin Petrovich Volcho and Nariman Faridovich Salakhutdinov},
title = {Myrtenyl-bispidine containing azole: synthesis and antifungal activity},
journal = {Mendeleev Communications},
year = {2023},
volume = {34},
publisher = {Mendeleev Communications},
month = {Dec},
url = {https://mendcomm.colab.ws/publications/10.1016/j.mencom.2024.01.036},
number = {1},
pages = {119--121},
doi = {10.1016/j.mencom.2024.01.036}
}
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Li-Zhulanov, Nikolai Sergeevich, et al. “Myrtenyl-bispidine containing azole: synthesis and antifungal activity.” Mendeleev Communications, vol. 34, no. 1, Dec. 2023, pp. 119-121. https://mendcomm.colab.ws/publications/10.1016/j.mencom.2024.01.036.
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Keywords

azoles
bispidine
Candida spp.
hybrids
monoterpenes
myrtenol.

Abstract

A new monoterpene-azole hybrid containing myrtenyl- bispidine moiety, 2-(2,4-difluorophenyl)-1-(7-{[(1R,5S)-6,6- dimethylbicyclo[3.1.1]hept-2-en-2-yl]methyl}-1,5-dimethyl- 3,7-diazabicyclo[3.3.1]non-3-yl)-3-(1H-1,2,4-triazol-1-yl)- propan-2-ol was prepared in six steps with 55% overall yield. The compound was tested against a number of Candida spp. fungi and found to be active against Candida albicans. Molecular docking suggested possible inhibition of lanosterol 14α-demethylase (CYP51), a membrane enzyme targeted by azole antifungals.

References

.
Lavrov M.I., Veremeeva P.N., Golubeva E.A., Radchenko E.V., Zamoyski V.L., Grigoriev V.V., Palyulin V.A.
Mendeleev Communications, 2022
.
Bispidine as a Privileged Scaffold
Tomassoli I., Gündisch D.
Current Topics in Medicinal Chemistry, 2016
.
Anti-influenza activity of monoterpene-containing substituted coumarins.
Khomenko T.M., Zarubaev V.V., Orshanskaya I.R., Kadyrova R.A., Sannikova V.A., Korchagina D.V., Volcho K.P., Salakhutdinov N.F.
Bioorganic and Medicinal Chemistry Letters, 2017
.
Novel Bispidine-Monoterpene Conjugates—Synthesis and Application as Ligands for the Catalytic Ethylation of Chalcones
Suslov E.V., Ponomarev K.Y., Patrusheva O.S., Kuranov S.O., Okhina A.A., Rogachev A.D., Munkuev A.A., Ottenbacher R.V., Dalinger A.I., Kalinin M.A., Vatsadze S.Z., Volcho K.P., Salakhutdinov N.F.
Molecules, 2021
.
Resistance of Candida to azoles and echinocandins worldwide.
Pristov K.E., Ghannoum M.A.
Clinical Microbiology and Infection, 2019
.
Chiral phosphorus dithio acids derived from (1S,2S,3S,5R)-(+)-isopinocampheol. Synthesis and fungicidal activity
Nizamov I.S., Al’metkina L.A., Gabdullina G.T., Shamilov R.R., Sofronov A.V., Nikitina L.E., Lisovskaya S.A., Glushko N.I., Cherkasov R.A.
Russian Chemical Bulletin, 2012
.
Monoterpenoids dithiophosphates. Synthesis and biological activity
Sofronov A.V., Nizamov I.S., Almetkina L.A., Nikitina L.E., Fatyhova D.G., Zelenikhin P.V., Il’inskaya O.N., Cherkasov R.A.
Russian Journal of General Chemistry, 2010
.
Biological Activity of Bicyclic Monoterpene Alcohols
Nikitina L.E., Lisovskaya S.A., Startseva V.A., Frolova L.L., Kutchin A.V., Shevchenko O.G., Ostolopovskaya O.V., Pavelyev R.S., Khelkhal M.A., Gilfanov I.R., Fedyunina I.V., Khaliullin R.R., Akhverdiev R.F., Gerasimov A.V., Abzaldinova E.V., et. al.
BioNanoScience, 2021
.
Azole derivatives with naphthalene showing potent antifungal effects against planktonic and biofilm forms of Candida spp.: an in vitro and in silico study
Sari S., Koçak E., Kart D., Özdemir Z., Acar M.F., Sayoğlu B., Karakurt A., Dalkara S.
International Microbiology, 2020
.
Synthesis and Antimicrobial Activity of Sulfenimines Based on Pinane Hydroxythiols
Ilchenko N.O., Sudarikov D.V., Rumyantcev R.V., Baidamshina D.R., Zakarova N.D., Yahia M.N., Kayumov A.R., Kutchin A.V., Rubtsova S.A.
Antibiotics, 2022
.
Structural analyses of Candida albicans sterol 14α-demethylase complexed with azole drugs address the molecular basis of azole-mediated inhibition of fungal sterol biosynthesis
Hargrove T.Y., Friggeri L., Wawrzak Z., Qi A., Hoekstra W.J., Schotzinger R.J., York J.D., Guengerich F.P., Lepesheva G.I.
Journal of Biological Chemistry, 2017
.
Rational Design of New Monoterpene-Containing Azoles and Their Antifungal Activity
Li-Zhulanov N.S., Zaikova N.P., Sari S., Gülmez D., Sabuncuoğlu S., Ozadali-Sari K., Arikan-Akdagli S., Nefedov A.A., Rybalova T.V., Volcho K.P., Salakhutdinov N.F.
Antibiotics, 2023
.
Towards potential antifungal agents: synthesis, supramolecular self-assembly and in vitro activity of azole mono-, sesqui- and diterpenoids
Akhmedov A., Gamirov R., Panina Y., Sokolova E., Leonteva Y., Tarasova E., Potekhina R., Fitsev I.M., Shurpik D., Stoikov I.
Organic and Biomolecular Chemistry, 2023