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volume 17 issue 2 pages 187

Hybrid Molecules of Azithromycin with Chloramphenicol and Metronidazole: Synthesis and Study of Antibacterial Properties

Inna A Volynkina 1
Elena N Bychkova 2
Anastasiia O. Karakchieva 1
George V Zatonsky 2
Svetlana E. Solovieva 2
Maksim M. Martynov 2
Natalia E Grammatikova 2
Alena Paleskava 4, 5
Andrey L. Konevega 4, 5, 6
Petr V. Sergiev 1, 3, 7
Olga A. Dontsova 1, 3, 8
Ilya A. Osterman 1
Publication typeJournal Article
Publication date2024-01-31
scimago Q1
wos Q1
SJR1.019
CiteScore7.7
Impact factor4.8
ISSN14248247
PubMed ID:  38399402
Drug Discovery
Pharmaceutical Science
Molecular Medicine
Abstract

The sustained rise of antimicrobial resistance (AMR) causes a strong need to develop new antibacterial agents. One of the methods for addressing the problem of antibiotic resistance is through the design of hybrid antibiotics. In this work, we proposed a synthetic route for the conjugation of an azithromycin derivative with chloramphenicol and metronidazole hemisuccinates and synthesized two series of new hybrid molecules 4a–g and 5a–g. While a conjugation did not result in tangible synergy for wild-type bacterial strains, new compounds were able to overcome AMR associated with the inducible expression of the ermC gene on a model E. coli strain resistant to macrolide antibiotics. The newly developed hybrids demonstrated a tendency to induce premature ribosome stalling, which might be crucial since they will not induce a macrolide-resistant phenotype in a number of pathogenic bacterial strains. In summary, the designed structures are considered as a promising direction for the further development of hybrid molecules that can effectively circumvent AMR mechanisms to macrolide antibiotics.

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GOST Copy
Volynkina I. A. et al. Hybrid Molecules of Azithromycin with Chloramphenicol and Metronidazole: Synthesis and Study of Antibacterial Properties // Pharmaceuticals. 2024. Vol. 17. No. 2. p. 187.
GOST all authors (up to 50) Copy
Volynkina I. A., Bychkova E. N., Karakchieva A. O., Tikhomirov A. S., Zatonsky G. V., Solovieva S. E., Martynov M. M., Grammatikova N. E., Tereshchenkov A. G., Paleskava A., Konevega A. L., Sergiev P. V., Dontsova O. A., Osterman I. A., Shchekotikhin A., Tevyashova A. Hybrid Molecules of Azithromycin with Chloramphenicol and Metronidazole: Synthesis and Study of Antibacterial Properties // Pharmaceuticals. 2024. Vol. 17. No. 2. p. 187.
RIS |
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RIS Copy
TY - JOUR
DO - 10.3390/ph17020187
UR - https://www.mdpi.com/1424-8247/17/2/187
TI - Hybrid Molecules of Azithromycin with Chloramphenicol and Metronidazole: Synthesis and Study of Antibacterial Properties
T2 - Pharmaceuticals
AU - Volynkina, Inna A
AU - Bychkova, Elena N
AU - Karakchieva, Anastasiia O.
AU - Tikhomirov, Alexander S
AU - Zatonsky, George V
AU - Solovieva, Svetlana E.
AU - Martynov, Maksim M.
AU - Grammatikova, Natalia E
AU - Tereshchenkov, Andrey G
AU - Paleskava, Alena
AU - Konevega, Andrey L.
AU - Sergiev, Petr V.
AU - Dontsova, Olga A.
AU - Osterman, Ilya A.
AU - Shchekotikhin, Andrey
AU - Tevyashova, Anna
PY - 2024
DA - 2024/01/31
PB - MDPI
SP - 187
IS - 2
VL - 17
PMID - 38399402
SN - 1424-8247
ER -
BibTex |
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BibTex (up to 50 authors) Copy
@article{2024_Volynkina,
author = {Inna A Volynkina and Elena N Bychkova and Anastasiia O. Karakchieva and Alexander S Tikhomirov and George V Zatonsky and Svetlana E. Solovieva and Maksim M. Martynov and Natalia E Grammatikova and Andrey G Tereshchenkov and Alena Paleskava and Andrey L. Konevega and Petr V. Sergiev and Olga A. Dontsova and Ilya A. Osterman and Andrey Shchekotikhin and Anna Tevyashova},
title = {Hybrid Molecules of Azithromycin with Chloramphenicol and Metronidazole: Synthesis and Study of Antibacterial Properties},
journal = {Pharmaceuticals},
year = {2024},
volume = {17},
publisher = {MDPI},
month = {jan},
url = {https://www.mdpi.com/1424-8247/17/2/187},
number = {2},
pages = {187},
doi = {10.3390/ph17020187}
}
MLA
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MLA Copy
Volynkina, Inna A., et al. “Hybrid Molecules of Azithromycin with Chloramphenicol and Metronidazole: Synthesis and Study of Antibacterial Properties.” Pharmaceuticals, vol. 17, no. 2, Jan. 2024, p. 187. https://www.mdpi.com/1424-8247/17/2/187.