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Biologically Synthesized Silver Nanoparticles for Enhancing Tetracycline Activity Against Staphylococcus aureus and Klebsiella pneumoniae

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Phytochemical content of plant extracts can be used effectively to reduce the metal ions to nanoparticles in one-step green synthesis process. In this study, six plant extracts were used for… Click to show full abstract

Phytochemical content of plant extracts can be used effectively to reduce the metal ions to nanoparticles in one-step green synthesis process. In this study, six plant extracts were used for the synthesis of silver nanoparticles (AgNPs). Biologically synthesized AgNPs was characterized using UV-Vis Spectrophotometer, Field Emission Scanning Electron Microscope (FE-SEM), X-ray diffraction (XRD), Energy Dispersive X-ray spectroscopy (EDX) and Fourier Transform Infrared (FTIR) spectroscopy. The individual and combined effects of AgNPs and tetracycline against S. aureus and K. pneumoniae were HIGHLIGHTS • Interest in nanoparticles has attracted our attention toward applications in managing bacterial diseases. • Significant differences between the tested plant extracts in supporting AgNPs synthesis. • AgNPs synthesized by ginger showed the highest antibacterial activity. • AgNPs significantly enhanced tetracycline activity against tested bacteria. 2 Masoud, E A.; et al. Brazilian Archives of Biology and Technology. Vol.62: e19180266, 2019 www.scielo.br/babt assessed. Ginger, onion and sidr extracts supported AgNPs formation while arak, garlic and mint extracts failed to convert the silver ions to AgNPs. The present findings revealed significant differences between the tested plant extracts in supporting AgNPs synthesis. AgNPs synthesized by ginger showed the highest individual and combined activity against tested strains followed by AgNPs prepared by sidr then that synthesized by onion. AgNPs significantly enhanced tetracycline activity (p≤0.05) against S. aureus and K. pneumoniae. The results of this study demonstrated that the combination of tetracycline and biologically synthesized AgNPs presented a useful therapeutically method for the treatment of bacterial infection and counterattacking bacterial resistance.

Keywords: aureus; spectroscopy; tetracycline activity; silver; activity; biologically synthesized

Journal Title: Brazilian Archives of Biology and Technology
Year Published: 2019

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