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Identification and Testing of Antidermatophytic Oxaborole-6-Benzene Sulphonamide Derivative (OXBS) from Streptomyces atrovirens KM192347 Isolated from Soil

There is a need to continue research to find out other anti-dermatophytic agents to inhibit causal pathogenic skin diseases including many types of tinea. We undertook the production, purification, and identification of an anti-dermatophytic substance by Streptomyces atrovirens. Out of 103 streptomy...

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Autores principales: Abdel-Shafi, Seham, Al-Mohammadi, Abdul-Raouf, Almanaa, Taghreed N., Moustafa, Ahmed H., Saad, Tamer M. M., Ghonemey, Abdel-Rahman, Anacarso, Immacolata, Enan, Gamal, El-Gazzar, Nashwa
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7235740/
https://www.ncbi.nlm.nih.gov/pubmed/32294942
http://dx.doi.org/10.3390/antibiotics9040176
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author Abdel-Shafi, Seham
Al-Mohammadi, Abdul-Raouf
Almanaa, Taghreed N.
Moustafa, Ahmed H.
Saad, Tamer M. M.
Ghonemey, Abdel-Rahman
Anacarso, Immacolata
Enan, Gamal
El-Gazzar, Nashwa
author_facet Abdel-Shafi, Seham
Al-Mohammadi, Abdul-Raouf
Almanaa, Taghreed N.
Moustafa, Ahmed H.
Saad, Tamer M. M.
Ghonemey, Abdel-Rahman
Anacarso, Immacolata
Enan, Gamal
El-Gazzar, Nashwa
author_sort Abdel-Shafi, Seham
collection PubMed
description There is a need to continue research to find out other anti-dermatophytic agents to inhibit causal pathogenic skin diseases including many types of tinea. We undertook the production, purification, and identification of an anti-dermatophytic substance by Streptomyces atrovirens. Out of 103 streptomycete isolates tested, only 20 of them showed antidermatophytic activity with variable degrees against Trichophyton tonsurans CCASU 56400 (T. tonsurans), Microsporum canis CCASU 56402 (M. canis), and Trichophyton mentagrophytes CCASU 56404 (T. mentagrophytes). The most potent isolate, S(10)Q(6), was identified based on the tests conducted that identified morphological and physiological characteristics and using 16S rRNA gene sequencing. The isolate was found to be closely correlated to previously described species Streptomyces atrovirens; it was designated Streptomyces atrovirens KM192347 (S. atrovirens). Maximum antifungal activity of the strain KM192347 was obtained in modified starch nitrate medium (MSNM) adjusted initially at pH 7.0 and incubated at 30 °C in shaken cultures (150 rpm) for seven days. The antifungal compound was purified by using two steps protocol including solvent extraction and column chromatography. The MIC of it was 20 µg/mL against the dermatophyte cultures tested. According to the data obtained from instrumental analysis and surveying the novel antibiotics database, the antidermatophytic substance produced by the strain KM192347 was characterized as an oxaborole-6-benzene sulphonamide derivative and designated oxaborole-6-benzene sulphonamide (OXBS) with the chemical formula C(13)H(12) BNO(4)S. The crude OXBS didn’t show any toxicity on living cells. Finally, the results obtained herein described another anti-dermatophytic substance named an OXBS derivative.
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spelling pubmed-72357402020-05-22 Identification and Testing of Antidermatophytic Oxaborole-6-Benzene Sulphonamide Derivative (OXBS) from Streptomyces atrovirens KM192347 Isolated from Soil Abdel-Shafi, Seham Al-Mohammadi, Abdul-Raouf Almanaa, Taghreed N. Moustafa, Ahmed H. Saad, Tamer M. M. Ghonemey, Abdel-Rahman Anacarso, Immacolata Enan, Gamal El-Gazzar, Nashwa Antibiotics (Basel) Article There is a need to continue research to find out other anti-dermatophytic agents to inhibit causal pathogenic skin diseases including many types of tinea. We undertook the production, purification, and identification of an anti-dermatophytic substance by Streptomyces atrovirens. Out of 103 streptomycete isolates tested, only 20 of them showed antidermatophytic activity with variable degrees against Trichophyton tonsurans CCASU 56400 (T. tonsurans), Microsporum canis CCASU 56402 (M. canis), and Trichophyton mentagrophytes CCASU 56404 (T. mentagrophytes). The most potent isolate, S(10)Q(6), was identified based on the tests conducted that identified morphological and physiological characteristics and using 16S rRNA gene sequencing. The isolate was found to be closely correlated to previously described species Streptomyces atrovirens; it was designated Streptomyces atrovirens KM192347 (S. atrovirens). Maximum antifungal activity of the strain KM192347 was obtained in modified starch nitrate medium (MSNM) adjusted initially at pH 7.0 and incubated at 30 °C in shaken cultures (150 rpm) for seven days. The antifungal compound was purified by using two steps protocol including solvent extraction and column chromatography. The MIC of it was 20 µg/mL against the dermatophyte cultures tested. According to the data obtained from instrumental analysis and surveying the novel antibiotics database, the antidermatophytic substance produced by the strain KM192347 was characterized as an oxaborole-6-benzene sulphonamide derivative and designated oxaborole-6-benzene sulphonamide (OXBS) with the chemical formula C(13)H(12) BNO(4)S. The crude OXBS didn’t show any toxicity on living cells. Finally, the results obtained herein described another anti-dermatophytic substance named an OXBS derivative. MDPI 2020-04-13 /pmc/articles/PMC7235740/ /pubmed/32294942 http://dx.doi.org/10.3390/antibiotics9040176 Text en © 2020 by the authors. 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 (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Abdel-Shafi, Seham
Al-Mohammadi, Abdul-Raouf
Almanaa, Taghreed N.
Moustafa, Ahmed H.
Saad, Tamer M. M.
Ghonemey, Abdel-Rahman
Anacarso, Immacolata
Enan, Gamal
El-Gazzar, Nashwa
Identification and Testing of Antidermatophytic Oxaborole-6-Benzene Sulphonamide Derivative (OXBS) from Streptomyces atrovirens KM192347 Isolated from Soil
title Identification and Testing of Antidermatophytic Oxaborole-6-Benzene Sulphonamide Derivative (OXBS) from Streptomyces atrovirens KM192347 Isolated from Soil
title_full Identification and Testing of Antidermatophytic Oxaborole-6-Benzene Sulphonamide Derivative (OXBS) from Streptomyces atrovirens KM192347 Isolated from Soil
title_fullStr Identification and Testing of Antidermatophytic Oxaborole-6-Benzene Sulphonamide Derivative (OXBS) from Streptomyces atrovirens KM192347 Isolated from Soil
title_full_unstemmed Identification and Testing of Antidermatophytic Oxaborole-6-Benzene Sulphonamide Derivative (OXBS) from Streptomyces atrovirens KM192347 Isolated from Soil
title_short Identification and Testing of Antidermatophytic Oxaborole-6-Benzene Sulphonamide Derivative (OXBS) from Streptomyces atrovirens KM192347 Isolated from Soil
title_sort identification and testing of antidermatophytic oxaborole-6-benzene sulphonamide derivative (oxbs) from streptomyces atrovirens km192347 isolated from soil
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7235740/
https://www.ncbi.nlm.nih.gov/pubmed/32294942
http://dx.doi.org/10.3390/antibiotics9040176
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