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Endophytic Streptomyces laurentii Mediated Green Synthesis of Ag-NPs with Antibacterial and Anticancer Properties for Developing Functional Textile Fabric Properties
by
Abdo, Abdullah M.
, F. Hetta, Helal
, Niedbała, Gniewko
, Eid, Ahmed M.
, Fouda, Amr
, Hassan, Saad El-Din
, Salem, Salem S.
, Shaheen, Tharwat I.
in
Actinomycetes
/ antibacterial
/ Antibacterial activity
/ Anticancer properties
/ Bacteria
/ Bacterial infections
/ Biocatalysts
/ Biomass
/ Biosynthesis
/ Biotechnology
/ Catalysts
/ Cotton
/ cotton fabrics
/ Cytotoxicity
/ Endophytes
/ endophytic actinomycetes
/ Fabrics
/ Fourier transforms
/ Fungi
/ green synthesis
/ Herbal medicine
/ Infections
/ Infrared spectroscopy
/ Medicinal plants
/ Metabolites
/ Metal oxides
/ Microorganisms
/ Nanomaterials
/ Nanoparticles
/ Nanotechnology
/ Nitrates
/ Plant bacterial diseases
/ Proteins
/ Scanning electron microscopy
/ Silver
/ silver nanoparticles
/ Streptomyces
/ Streptomyces laurentii
/ Technology application
/ Textile industry
/ Textile processing
/ Textiles
/ Transmission electron microscopy
/ X-ray diffraction
/ X-ray spectroscopy
2020
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Endophytic Streptomyces laurentii Mediated Green Synthesis of Ag-NPs with Antibacterial and Anticancer Properties for Developing Functional Textile Fabric Properties
by
Abdo, Abdullah M.
, F. Hetta, Helal
, Niedbała, Gniewko
, Eid, Ahmed M.
, Fouda, Amr
, Hassan, Saad El-Din
, Salem, Salem S.
, Shaheen, Tharwat I.
in
Actinomycetes
/ antibacterial
/ Antibacterial activity
/ Anticancer properties
/ Bacteria
/ Bacterial infections
/ Biocatalysts
/ Biomass
/ Biosynthesis
/ Biotechnology
/ Catalysts
/ Cotton
/ cotton fabrics
/ Cytotoxicity
/ Endophytes
/ endophytic actinomycetes
/ Fabrics
/ Fourier transforms
/ Fungi
/ green synthesis
/ Herbal medicine
/ Infections
/ Infrared spectroscopy
/ Medicinal plants
/ Metabolites
/ Metal oxides
/ Microorganisms
/ Nanomaterials
/ Nanoparticles
/ Nanotechnology
/ Nitrates
/ Plant bacterial diseases
/ Proteins
/ Scanning electron microscopy
/ Silver
/ silver nanoparticles
/ Streptomyces
/ Streptomyces laurentii
/ Technology application
/ Textile industry
/ Textile processing
/ Textiles
/ Transmission electron microscopy
/ X-ray diffraction
/ X-ray spectroscopy
2020
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Endophytic Streptomyces laurentii Mediated Green Synthesis of Ag-NPs with Antibacterial and Anticancer Properties for Developing Functional Textile Fabric Properties
by
Abdo, Abdullah M.
, F. Hetta, Helal
, Niedbała, Gniewko
, Eid, Ahmed M.
, Fouda, Amr
, Hassan, Saad El-Din
, Salem, Salem S.
, Shaheen, Tharwat I.
in
Actinomycetes
/ antibacterial
/ Antibacterial activity
/ Anticancer properties
/ Bacteria
/ Bacterial infections
/ Biocatalysts
/ Biomass
/ Biosynthesis
/ Biotechnology
/ Catalysts
/ Cotton
/ cotton fabrics
/ Cytotoxicity
/ Endophytes
/ endophytic actinomycetes
/ Fabrics
/ Fourier transforms
/ Fungi
/ green synthesis
/ Herbal medicine
/ Infections
/ Infrared spectroscopy
/ Medicinal plants
/ Metabolites
/ Metal oxides
/ Microorganisms
/ Nanomaterials
/ Nanoparticles
/ Nanotechnology
/ Nitrates
/ Plant bacterial diseases
/ Proteins
/ Scanning electron microscopy
/ Silver
/ silver nanoparticles
/ Streptomyces
/ Streptomyces laurentii
/ Technology application
/ Textile industry
/ Textile processing
/ Textiles
/ Transmission electron microscopy
/ X-ray diffraction
/ X-ray spectroscopy
2020
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Endophytic Streptomyces laurentii Mediated Green Synthesis of Ag-NPs with Antibacterial and Anticancer Properties for Developing Functional Textile Fabric Properties
Journal Article
Endophytic Streptomyces laurentii Mediated Green Synthesis of Ag-NPs with Antibacterial and Anticancer Properties for Developing Functional Textile Fabric Properties
2020
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Overview
Improvement of the medical textile industry has received more attention recently, especially with widespread of microbial and viral infections. Medical textiles with new properties, such as bacterial pathogens self-cleaning, have been explored with nanotechnology. In this study, an endophytic actinomycetes strain of Streptomyces laurentii R-1 was isolated from the roots of the medicinal plant Achillea fragrantissima. This is used as a catalyst for the mediated biosynthesis of silver nanoparticles (Ag-NPs) for applications in the textile industry. The biosynthesized Ag-NPs were characterized using UV-vis spectroscopy, Fourier transform infrared (FT-IR), transmission electron microscopy (TEM), and X-ray Diffraction (XRD), which confirmed the successful formation of crystalline, spherical metal nanoparticles. The biosynthesized Ag-NPs exhibited broad-spectrum antibacterial activity. Our data elucidated that the biosynthesized Ag-NPs had a highly cytotoxic effect against the cancerous caco-2 cell line. The selected safe dose of Ag-NPs for loading on cotton fabrics was 100 ppm, regarding their antibacterial activity and safe cytotoxic efficacy. Interestingly, scanning electron microscope connected with energy dispersive X-ray spectroscopy (SEM-EDX) of loaded cotton fabrics demonstrated the smooth distribution of Ag-NPs on treated fabrics. The obtained results highlighted the broad-spectrum activity of nano-finished fabrics against pathogenic bacteria, even after 5 and 10 washing cycles. This study contributes a suitable guide for the performance of green synthesized NPs for utilization in different biotechnological sectors.
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