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Effect and Mechanisms of Antibacterial Peptide Fraction from Mucus of C. aspersum against Escherichia coli NBIMCC 8785

Peptides isolated from the mucus of Cornu aspersum could be prototypes for antibiotics against pathogenic bacteria. Information regarding the mechanisms, effective concentration, and methods of application is an important tool for therapeutic, financial, and ecological regulation and a holistic appr...

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Autores principales: Topalova, Yana, Belouhova, Mihaela, Velkova, Lyudmila, Dolashki, Aleksandar, Zheleva, Nellie, Daskalova, Elmira, Kaynarov, Dimitar, Voelter, Wolfgang, Dolashka, Pavlina
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8945727/
https://www.ncbi.nlm.nih.gov/pubmed/35327474
http://dx.doi.org/10.3390/biomedicines10030672
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author Topalova, Yana
Belouhova, Mihaela
Velkova, Lyudmila
Dolashki, Aleksandar
Zheleva, Nellie
Daskalova, Elmira
Kaynarov, Dimitar
Voelter, Wolfgang
Dolashka, Pavlina
author_facet Topalova, Yana
Belouhova, Mihaela
Velkova, Lyudmila
Dolashki, Aleksandar
Zheleva, Nellie
Daskalova, Elmira
Kaynarov, Dimitar
Voelter, Wolfgang
Dolashka, Pavlina
author_sort Topalova, Yana
collection PubMed
description Peptides isolated from the mucus of Cornu aspersum could be prototypes for antibiotics against pathogenic bacteria. Information regarding the mechanisms, effective concentration, and methods of application is an important tool for therapeutic, financial, and ecological regulation and a holistic approach to medical treatment. A peptide fraction with MW < 10 kDa was analyzed by MALDI-TOF-TOF using Autoflex™ III. The strain Escherichia coli NBIMCC 8785 (18 h and 48 h culture) was used. The changes in bacterial structure and metabolic activity were investigated by SEM, fluorescent, and digital image analysis. This peptide fraction had high inhibitory effects in surface and deep inoculations of E. coli of 1990.00 and 136.13 mm(2)/mgPr/µMol, respectively, in the samples. Thus, it would be effective in the treatment of infections involving bacterial biofilms and homogenous cells. Various deformations of the bacteria and inhibition of its metabolism were discovered and illustrated. The data on the mechanisms of impact of the peptides permitted the formulation of an algorithm for the treatment of infections depending on the phase of their development. The decrease in the therapeutic concentrations will be more sparing to the environment and will lead to a decrease in the cost of the treatment.
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spelling pubmed-89457272022-03-25 Effect and Mechanisms of Antibacterial Peptide Fraction from Mucus of C. aspersum against Escherichia coli NBIMCC 8785 Topalova, Yana Belouhova, Mihaela Velkova, Lyudmila Dolashki, Aleksandar Zheleva, Nellie Daskalova, Elmira Kaynarov, Dimitar Voelter, Wolfgang Dolashka, Pavlina Biomedicines Article Peptides isolated from the mucus of Cornu aspersum could be prototypes for antibiotics against pathogenic bacteria. Information regarding the mechanisms, effective concentration, and methods of application is an important tool for therapeutic, financial, and ecological regulation and a holistic approach to medical treatment. A peptide fraction with MW < 10 kDa was analyzed by MALDI-TOF-TOF using Autoflex™ III. The strain Escherichia coli NBIMCC 8785 (18 h and 48 h culture) was used. The changes in bacterial structure and metabolic activity were investigated by SEM, fluorescent, and digital image analysis. This peptide fraction had high inhibitory effects in surface and deep inoculations of E. coli of 1990.00 and 136.13 mm(2)/mgPr/µMol, respectively, in the samples. Thus, it would be effective in the treatment of infections involving bacterial biofilms and homogenous cells. Various deformations of the bacteria and inhibition of its metabolism were discovered and illustrated. The data on the mechanisms of impact of the peptides permitted the formulation of an algorithm for the treatment of infections depending on the phase of their development. The decrease in the therapeutic concentrations will be more sparing to the environment and will lead to a decrease in the cost of the treatment. MDPI 2022-03-14 /pmc/articles/PMC8945727/ /pubmed/35327474 http://dx.doi.org/10.3390/biomedicines10030672 Text en © 2022 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
Topalova, Yana
Belouhova, Mihaela
Velkova, Lyudmila
Dolashki, Aleksandar
Zheleva, Nellie
Daskalova, Elmira
Kaynarov, Dimitar
Voelter, Wolfgang
Dolashka, Pavlina
Effect and Mechanisms of Antibacterial Peptide Fraction from Mucus of C. aspersum against Escherichia coli NBIMCC 8785
title Effect and Mechanisms of Antibacterial Peptide Fraction from Mucus of C. aspersum against Escherichia coli NBIMCC 8785
title_full Effect and Mechanisms of Antibacterial Peptide Fraction from Mucus of C. aspersum against Escherichia coli NBIMCC 8785
title_fullStr Effect and Mechanisms of Antibacterial Peptide Fraction from Mucus of C. aspersum against Escherichia coli NBIMCC 8785
title_full_unstemmed Effect and Mechanisms of Antibacterial Peptide Fraction from Mucus of C. aspersum against Escherichia coli NBIMCC 8785
title_short Effect and Mechanisms of Antibacterial Peptide Fraction from Mucus of C. aspersum against Escherichia coli NBIMCC 8785
title_sort effect and mechanisms of antibacterial peptide fraction from mucus of c. aspersum against escherichia coli nbimcc 8785
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8945727/
https://www.ncbi.nlm.nih.gov/pubmed/35327474
http://dx.doi.org/10.3390/biomedicines10030672
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