Evaluation of Antibacterial Properties of Carbon Sorbents

Background. Currently, the scientific search for alternative materials and methods for combating pathogens of infectious diseases is an important area of research. Carbon materials are one of the promising types of materials exhibiting antimicrobial and antifungal properties. The aim of the study is...

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Main Authors: L G. Pyanova, V. T. Dolgikh, A. V. Sedanova, M. S. Delyagina, N. V. Kornienko, E. V. Naumkina, A. V. Lavrenov, A. V. Dubrovskaya
Format: Article
Language:Russian
Published: LLC "Publishing House OKI" 2024-10-01
Series:Антибиотики и Химиотерапия
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Online Access:https://www.antibiotics-chemotherapy.ru/jour/article/view/1140
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author L G. Pyanova
V. T. Dolgikh
A. V. Sedanova
M. S. Delyagina
N. V. Kornienko
E. V. Naumkina
A. V. Lavrenov
A. V. Dubrovskaya
author_facet L G. Pyanova
V. T. Dolgikh
A. V. Sedanova
M. S. Delyagina
N. V. Kornienko
E. V. Naumkina
A. V. Lavrenov
A. V. Dubrovskaya
author_sort L G. Pyanova
collection DOAJ
description Background. Currently, the scientific search for alternative materials and methods for combating pathogens of infectious diseases is an important area of research. Carbon materials are one of the promising types of materials exhibiting antimicrobial and antifungal properties. The aim of the study is to investigate the antibacterial properties of modified carbon sorbents and initial modifiers in relation to some types of pathogenic microorganisms. The objects of the study were carbon sorbent samples before and after modification with biologically active substances with antibacterial properties: salicylic acid, sulfosalicylic acid, tributyrin. The samples of carbon sorbents under study were obtained at the Center of New Chem- ical Technologies BIC. The following strains of gram-positive and gram-negative bacteria were used as experimental models: Staphylococcus aureus АТСС 25923; Pseudomonas aeruginosa АТСС 27853; Klebsiella pneumoniae 418; Esherichia coli АТСС 25922. Results. The highest sensitivity of gram-positive and gram-negative bacteria was established for a carbon sor- bent modified with tributyrin. The absence of growth of the studied test strains of microorganisms was observed after 2 hours of incubation of the «sample-microorganism» mixture.
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issn 0235-2990
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publishDate 2024-10-01
publisher LLC "Publishing House OKI"
record_format Article
series Антибиотики и Химиотерапия
spelling doaj-art-3cda716336614b3686c5f77ac1f81b5f2025-08-20T03:59:08ZrusLLC "Publishing House OKI"Антибиотики и Химиотерапия0235-29902024-10-01695-641010.37489/0235-2990-2024-69-5-6-4-101035Evaluation of Antibacterial Properties of Carbon SorbentsL G. Pyanova0V. T. Dolgikh1A. V. Sedanova2M. S. Delyagina3N. V. Kornienko4E. V. Naumkina5A. V. Lavrenov6A. V. Dubrovskaya7Center of New Chemical Technologies BIC, Boreskov Institute of Catalysis, Siberian Branch of the Russian Academy of Sciences (Omsk Branch)Federal Research and Clinical Center of Intensive Care Medicine and RehabilitologyCenter of New Chemical Technologies BIC, Boreskov Institute of Catalysis, Siberian Branch of the Russian Academy of Sciences (Omsk Branch)Center of New Chemical Technologies BIC, Boreskov Institute of Catalysis, Siberian Branch of the Russian Academy of Sciences (Omsk Branch)Center of New Chemical Technologies BIC, Boreskov Institute of Catalysis, Siberian Branch of the Russian Academy of Sciences (Omsk Branch)Omsk State Medical University of the Ministry of Health of the Russian Federation; City Clinical Perinatal CenterCenter of New Chemical Technologies BIC, Boreskov Institute of Catalysis, Siberian Branch of the Russian Academy of Sciences (Omsk Branch)Omsk State Medical University of the Ministry of Health of the Russian Federation; City Clinical Perinatal CenterBackground. Currently, the scientific search for alternative materials and methods for combating pathogens of infectious diseases is an important area of research. Carbon materials are one of the promising types of materials exhibiting antimicrobial and antifungal properties. The aim of the study is to investigate the antibacterial properties of modified carbon sorbents and initial modifiers in relation to some types of pathogenic microorganisms. The objects of the study were carbon sorbent samples before and after modification with biologically active substances with antibacterial properties: salicylic acid, sulfosalicylic acid, tributyrin. The samples of carbon sorbents under study were obtained at the Center of New Chem- ical Technologies BIC. The following strains of gram-positive and gram-negative bacteria were used as experimental models: Staphylococcus aureus АТСС 25923; Pseudomonas aeruginosa АТСС 27853; Klebsiella pneumoniae 418; Esherichia coli АТСС 25922. Results. The highest sensitivity of gram-positive and gram-negative bacteria was established for a carbon sor- bent modified with tributyrin. The absence of growth of the studied test strains of microorganisms was observed after 2 hours of incubation of the «sample-microorganism» mixture.https://www.antibiotics-chemotherapy.ru/jour/article/view/1140carbon sorbentsalicylic acidsulfosalicylic acidtributyrinantibacterial properties
spellingShingle L G. Pyanova
V. T. Dolgikh
A. V. Sedanova
M. S. Delyagina
N. V. Kornienko
E. V. Naumkina
A. V. Lavrenov
A. V. Dubrovskaya
Evaluation of Antibacterial Properties of Carbon Sorbents
Антибиотики и Химиотерапия
carbon sorbent
salicylic acid
sulfosalicylic acid
tributyrin
antibacterial properties
title Evaluation of Antibacterial Properties of Carbon Sorbents
title_full Evaluation of Antibacterial Properties of Carbon Sorbents
title_fullStr Evaluation of Antibacterial Properties of Carbon Sorbents
title_full_unstemmed Evaluation of Antibacterial Properties of Carbon Sorbents
title_short Evaluation of Antibacterial Properties of Carbon Sorbents
title_sort evaluation of antibacterial properties of carbon sorbents
topic carbon sorbent
salicylic acid
sulfosalicylic acid
tributyrin
antibacterial properties
url https://www.antibiotics-chemotherapy.ru/jour/article/view/1140
work_keys_str_mv AT lgpyanova evaluationofantibacterialpropertiesofcarbonsorbents
AT vtdolgikh evaluationofantibacterialpropertiesofcarbonsorbents
AT avsedanova evaluationofantibacterialpropertiesofcarbonsorbents
AT msdelyagina evaluationofantibacterialpropertiesofcarbonsorbents
AT nvkornienko evaluationofantibacterialpropertiesofcarbonsorbents
AT evnaumkina evaluationofantibacterialpropertiesofcarbonsorbents
AT avlavrenov evaluationofantibacterialpropertiesofcarbonsorbents
AT avdubrovskaya evaluationofantibacterialpropertiesofcarbonsorbents