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Klebsiella pneumoniae Volatile Organic Compounds (VOCs) Protect Artemia salina from Fish Pathogen Aeromonas sp.: A Combined In Vitro, In Vivo, and In Silico Approach

Antibiotic resistance is an alarming threat all over the world, and the biofilm formation efficacy of bacteria is making the situation worse. The antagonistic efficacy of Klebsiella pneumoniae against one of the known fish pathogens, Aeromonas sp., is examined in this study. Moreover, Aeromonas sp.’...

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Autores principales: Mahmud, Md. Liton, Islam, Shirmin, Biswas, Suvro, Mortuza, Md. Golam, Paul, Gobindo Kumar, Uddin, Md. Salah, Akhtar-E-Ekram, Md., Saleh, Md. Abu, Zaman, Shahriar, Syed, Asad, Elgorban, Abdallah M., Zaghloul, Nouf S. S.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9862385/
https://www.ncbi.nlm.nih.gov/pubmed/36677466
http://dx.doi.org/10.3390/microorganisms11010172
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author Mahmud, Md. Liton
Islam, Shirmin
Biswas, Suvro
Mortuza, Md. Golam
Paul, Gobindo Kumar
Uddin, Md. Salah
Akhtar-E-Ekram, Md.
Saleh, Md. Abu
Zaman, Shahriar
Syed, Asad
Elgorban, Abdallah M.
Zaghloul, Nouf S. S.
author_facet Mahmud, Md. Liton
Islam, Shirmin
Biswas, Suvro
Mortuza, Md. Golam
Paul, Gobindo Kumar
Uddin, Md. Salah
Akhtar-E-Ekram, Md.
Saleh, Md. Abu
Zaman, Shahriar
Syed, Asad
Elgorban, Abdallah M.
Zaghloul, Nouf S. S.
author_sort Mahmud, Md. Liton
collection PubMed
description Antibiotic resistance is an alarming threat all over the world, and the biofilm formation efficacy of bacteria is making the situation worse. The antagonistic efficacy of Klebsiella pneumoniae against one of the known fish pathogens, Aeromonas sp., is examined in this study. Moreover, Aeromonas sp.’s biofilm formation ability and in vivo pathogenicity on Artemia salina are also justified here. Firstly, six selected bacterial strains were used to obtain antimicrobial compounds against this pathogenic strain. Among those, Klebsiella pneumoniae, another pathogenic bacterium, surprisingly demonstrated remarkable antagonistic activity against Aeromonas sp. in both in vitro and in vivo assays. The biofilm distrusting potentiality of Klebsiella pneumoniae’s cell-free supernatants (CFSs) was likewise found to be around 56%. Furthermore, the volatile compounds of Klebsiella pneumoniae were identified by GC-MS in order to explore compounds with antibacterial efficacy against Aeromonas sp. through an in silico study, where 5′-methylthioadenosine/S-adenosylhomocysteine nucleosidase (MTAN) (PDB: 5B7P) was chosen as a target protein for its unique characteristics and pathogenicity. Several volatile compounds, such as oxime- methoxy-phenyl-, fluoren-9-ol, 3,6-dimethoxy-9-(2-phenylethynyl)-, and 2H-indol-2-one, 1,3-dihydro- showed a strong binding affinity, with free energy of −6.7, −7.1, and −6.4 Kcal/mol, respectively, in complexes with the protein MTAN. Moreover, the root-mean-square deviation, solvent-accessible surface area, radius of gyration, root-mean-square fluctuations, and hydrogen bonds were used to ensure the binding stability of the docked complexes in the atomistic simulation. Thus, Klebsiella pneumoniae and its potential compounds can be employed as an alternative to antibiotics for aquaculture, demonstrating their effectiveness in suppressing Aeromonas sp.
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spelling pubmed-98623852023-01-22 Klebsiella pneumoniae Volatile Organic Compounds (VOCs) Protect Artemia salina from Fish Pathogen Aeromonas sp.: A Combined In Vitro, In Vivo, and In Silico Approach Mahmud, Md. Liton Islam, Shirmin Biswas, Suvro Mortuza, Md. Golam Paul, Gobindo Kumar Uddin, Md. Salah Akhtar-E-Ekram, Md. Saleh, Md. Abu Zaman, Shahriar Syed, Asad Elgorban, Abdallah M. Zaghloul, Nouf S. S. Microorganisms Article Antibiotic resistance is an alarming threat all over the world, and the biofilm formation efficacy of bacteria is making the situation worse. The antagonistic efficacy of Klebsiella pneumoniae against one of the known fish pathogens, Aeromonas sp., is examined in this study. Moreover, Aeromonas sp.’s biofilm formation ability and in vivo pathogenicity on Artemia salina are also justified here. Firstly, six selected bacterial strains were used to obtain antimicrobial compounds against this pathogenic strain. Among those, Klebsiella pneumoniae, another pathogenic bacterium, surprisingly demonstrated remarkable antagonistic activity against Aeromonas sp. in both in vitro and in vivo assays. The biofilm distrusting potentiality of Klebsiella pneumoniae’s cell-free supernatants (CFSs) was likewise found to be around 56%. Furthermore, the volatile compounds of Klebsiella pneumoniae were identified by GC-MS in order to explore compounds with antibacterial efficacy against Aeromonas sp. through an in silico study, where 5′-methylthioadenosine/S-adenosylhomocysteine nucleosidase (MTAN) (PDB: 5B7P) was chosen as a target protein for its unique characteristics and pathogenicity. Several volatile compounds, such as oxime- methoxy-phenyl-, fluoren-9-ol, 3,6-dimethoxy-9-(2-phenylethynyl)-, and 2H-indol-2-one, 1,3-dihydro- showed a strong binding affinity, with free energy of −6.7, −7.1, and −6.4 Kcal/mol, respectively, in complexes with the protein MTAN. Moreover, the root-mean-square deviation, solvent-accessible surface area, radius of gyration, root-mean-square fluctuations, and hydrogen bonds were used to ensure the binding stability of the docked complexes in the atomistic simulation. Thus, Klebsiella pneumoniae and its potential compounds can be employed as an alternative to antibiotics for aquaculture, demonstrating their effectiveness in suppressing Aeromonas sp. MDPI 2023-01-10 /pmc/articles/PMC9862385/ /pubmed/36677466 http://dx.doi.org/10.3390/microorganisms11010172 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Mahmud, Md. Liton
Islam, Shirmin
Biswas, Suvro
Mortuza, Md. Golam
Paul, Gobindo Kumar
Uddin, Md. Salah
Akhtar-E-Ekram, Md.
Saleh, Md. Abu
Zaman, Shahriar
Syed, Asad
Elgorban, Abdallah M.
Zaghloul, Nouf S. S.
Klebsiella pneumoniae Volatile Organic Compounds (VOCs) Protect Artemia salina from Fish Pathogen Aeromonas sp.: A Combined In Vitro, In Vivo, and In Silico Approach
title Klebsiella pneumoniae Volatile Organic Compounds (VOCs) Protect Artemia salina from Fish Pathogen Aeromonas sp.: A Combined In Vitro, In Vivo, and In Silico Approach
title_full Klebsiella pneumoniae Volatile Organic Compounds (VOCs) Protect Artemia salina from Fish Pathogen Aeromonas sp.: A Combined In Vitro, In Vivo, and In Silico Approach
title_fullStr Klebsiella pneumoniae Volatile Organic Compounds (VOCs) Protect Artemia salina from Fish Pathogen Aeromonas sp.: A Combined In Vitro, In Vivo, and In Silico Approach
title_full_unstemmed Klebsiella pneumoniae Volatile Organic Compounds (VOCs) Protect Artemia salina from Fish Pathogen Aeromonas sp.: A Combined In Vitro, In Vivo, and In Silico Approach
title_short Klebsiella pneumoniae Volatile Organic Compounds (VOCs) Protect Artemia salina from Fish Pathogen Aeromonas sp.: A Combined In Vitro, In Vivo, and In Silico Approach
title_sort klebsiella pneumoniae volatile organic compounds (vocs) protect artemia salina from fish pathogen aeromonas sp.: a combined in vitro, in vivo, and in silico approach
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9862385/
https://www.ncbi.nlm.nih.gov/pubmed/36677466
http://dx.doi.org/10.3390/microorganisms11010172
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