AI Article Synopsis

  • Silver nanoparticles (AgNPs) exhibit unique properties and a broad range of applications, synthesized through the extracellular filtrate with an average diameter of 20 nm and negatively charged.
  • The optimal synthesis conditions included a 1:6 filtrate dilution, 1 mM AgNO, pH 7, 30 °C, and 48-hour contact time, resulting in AgNPs with significant antibacterial, antifungal, and antiviral activities.
  • Testing on mice showed no major health impacts, while AgNPs demonstrated mild protection against liver damage and were effective in providing antimicrobial properties and UV protection for treated textiles.

Article Abstract

Silver nanoparticles (AgNPs) have unique properties and a large range of applications. Biosynthesis of stable AgNPs using the extracellular filtrate of was proved by the characteristic surface plasmon resonance at about 420-430 nm. They were polycrystalline with spherical, hexagonal, and irregular shapes and they were negatively charged (-40 mV) with an average diameter of 20 nm. FTIR spectrum confirmed the presence of protein molecules coating AgNPs. The optimum conditions for the synthesis of tested AgNPs were 1:6 filtrate dilution, 1 mM AgNO, pH 7, 30 °C , 48 h contact time under static and illuminating conditions. The synthesized AgNPs showed antibacterial activities against , , , , and , antifungal activity against and antiviral activity against rotavirus. Also, they showed potent cytotoxic effects on lung and hepatic carcinoma human cell lines. Meanwhile, the acute toxicity study against mice showed no significant changes in hematological, biochemical, and histological parameters of AgNPs treated mice. They also showed mild hepatoprotective effect in thioacetamide (TAA) - induced hepatic fibrosis in rats. AgNPs treated textiles fabrics showed high antimicrobial activities against different pathogenic microorganisms as well as UV protection adequacy.

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Source
http://dx.doi.org/10.1080/10826068.2020.1789992DOI Listing

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