Synergistic antimicrobial action of phyco-synthesized silver nanoparticles and nano-fungal chitosan composites against drug resistant bacterial pathogens

Here we report the phycosynthesis of silver nanoparticles (Ag-NPs), using Codium capitatum extract, and the synthesis of fungal chitosan nanoparticles (FC-NPs), using extracted chitosan from Aspergillus niger mycelia. Then nanoconjugates from FC/Ag-NPs were produced and evaluated. The synthesized NP...

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Main Authors: Mohammed S. Alsaggaf, Ahmed A. Tayel, Mousa A. Alghuthaymi, Shaaban H. Moussa
Format: Article
Language:English
Published: Taylor & Francis Group 2020-01-01
Series:Biotechnology & Biotechnological Equipment
Subjects:
Online Access:http://dx.doi.org/10.1080/13102818.2020.1796787
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spelling doaj-5620776f052e4618bc6b77aec4532cfe2020-12-07T14:56:58ZengTaylor & Francis GroupBiotechnology & Biotechnological Equipment1310-28181314-35302020-01-0134163163910.1080/13102818.2020.17967871796787Synergistic antimicrobial action of phyco-synthesized silver nanoparticles and nano-fungal chitosan composites against drug resistant bacterial pathogensMohammed S. Alsaggaf0Ahmed A. Tayel1Mousa A. Alghuthaymi2Shaaban H. Moussa3Department of Biology, College of Science and Humanitarian Studies, Shaqra UniversityFaculty of Aquatic and Fisheries Sciences, Department of Fish Processing and Biotechnology, Kafrelsheikh UniversityDepartment of Biology, College of Science and Humanitarian Studies, Shaqra UniversityDepartment of Biology, College of Science and Humanitarian Studies, Shaqra UniversityHere we report the phycosynthesis of silver nanoparticles (Ag-NPs), using Codium capitatum extract, and the synthesis of fungal chitosan nanoparticles (FC-NPs), using extracted chitosan from Aspergillus niger mycelia. Then nanoconjugates from FC/Ag-NPs were produced and evaluated. The synthesized NPs had mean particles’ size diameters of 37.2, 68.4 and 79.6 nm for Ag-NPs, FC-NPs and FC/Ag-NPs, respectively. The FTIR (Fourier-transform infrared spectroscopy) analysis of synthesized NPs indicated their cross-linkage and interaction. The antibacterial activity of each type of NPs was assayed against drug resistant pathogens of Salmonella Typhimurium and Staphylococcus aureus. All NPs had powerful inhibitory effect and FC/Ag nanoconjugates had stronger activity than the other types. Scanning micrographs of FC/Ag-NPs treated S. Typhimurium elucidated vigorous alterations in cell surfaces and lethal damage to bacterial structure after 8 h of treatment. The nanoconjugates form FC-NPs and Ag-NPs had minute particle size with increasing bioactivity as antimicrobial agents to control drug resistant bacterial pathogens, which recommends their further exploration for topical applications in biomedical sectors.http://dx.doi.org/10.1080/13102818.2020.1796787antibacterial actioncharacterizationgreen synthesismicrobial chitosannanoconjugates
collection DOAJ
language English
format Article
sources DOAJ
author Mohammed S. Alsaggaf
Ahmed A. Tayel
Mousa A. Alghuthaymi
Shaaban H. Moussa
spellingShingle Mohammed S. Alsaggaf
Ahmed A. Tayel
Mousa A. Alghuthaymi
Shaaban H. Moussa
Synergistic antimicrobial action of phyco-synthesized silver nanoparticles and nano-fungal chitosan composites against drug resistant bacterial pathogens
Biotechnology & Biotechnological Equipment
antibacterial action
characterization
green synthesis
microbial chitosan
nanoconjugates
author_facet Mohammed S. Alsaggaf
Ahmed A. Tayel
Mousa A. Alghuthaymi
Shaaban H. Moussa
author_sort Mohammed S. Alsaggaf
title Synergistic antimicrobial action of phyco-synthesized silver nanoparticles and nano-fungal chitosan composites against drug resistant bacterial pathogens
title_short Synergistic antimicrobial action of phyco-synthesized silver nanoparticles and nano-fungal chitosan composites against drug resistant bacterial pathogens
title_full Synergistic antimicrobial action of phyco-synthesized silver nanoparticles and nano-fungal chitosan composites against drug resistant bacterial pathogens
title_fullStr Synergistic antimicrobial action of phyco-synthesized silver nanoparticles and nano-fungal chitosan composites against drug resistant bacterial pathogens
title_full_unstemmed Synergistic antimicrobial action of phyco-synthesized silver nanoparticles and nano-fungal chitosan composites against drug resistant bacterial pathogens
title_sort synergistic antimicrobial action of phyco-synthesized silver nanoparticles and nano-fungal chitosan composites against drug resistant bacterial pathogens
publisher Taylor & Francis Group
series Biotechnology & Biotechnological Equipment
issn 1310-2818
1314-3530
publishDate 2020-01-01
description Here we report the phycosynthesis of silver nanoparticles (Ag-NPs), using Codium capitatum extract, and the synthesis of fungal chitosan nanoparticles (FC-NPs), using extracted chitosan from Aspergillus niger mycelia. Then nanoconjugates from FC/Ag-NPs were produced and evaluated. The synthesized NPs had mean particles’ size diameters of 37.2, 68.4 and 79.6 nm for Ag-NPs, FC-NPs and FC/Ag-NPs, respectively. The FTIR (Fourier-transform infrared spectroscopy) analysis of synthesized NPs indicated their cross-linkage and interaction. The antibacterial activity of each type of NPs was assayed against drug resistant pathogens of Salmonella Typhimurium and Staphylococcus aureus. All NPs had powerful inhibitory effect and FC/Ag nanoconjugates had stronger activity than the other types. Scanning micrographs of FC/Ag-NPs treated S. Typhimurium elucidated vigorous alterations in cell surfaces and lethal damage to bacterial structure after 8 h of treatment. The nanoconjugates form FC-NPs and Ag-NPs had minute particle size with increasing bioactivity as antimicrobial agents to control drug resistant bacterial pathogens, which recommends their further exploration for topical applications in biomedical sectors.
topic antibacterial action
characterization
green synthesis
microbial chitosan
nanoconjugates
url http://dx.doi.org/10.1080/13102818.2020.1796787
work_keys_str_mv AT mohammedsalsaggaf synergisticantimicrobialactionofphycosynthesizedsilvernanoparticlesandnanofungalchitosancompositesagainstdrugresistantbacterialpathogens
AT ahmedatayel synergisticantimicrobialactionofphycosynthesizedsilvernanoparticlesandnanofungalchitosancompositesagainstdrugresistantbacterialpathogens
AT mousaaalghuthaymi synergisticantimicrobialactionofphycosynthesizedsilvernanoparticlesandnanofungalchitosancompositesagainstdrugresistantbacterialpathogens
AT shaabanhmoussa synergisticantimicrobialactionofphycosynthesizedsilvernanoparticlesandnanofungalchitosancompositesagainstdrugresistantbacterialpathogens
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