Silver Nanoparticle Synthesis by Rumex vesicarius Extract and Its Applicability against Foodborne Pathogens

The consumption of foods polluted with different foodborne pathogens such as fungus, viruses, and bacteria is considered a serious cause of foodborne disease in both humans and animals. Multidrug-resistant foodborne pathogens (MRFP) cause morbidity, death, and substantial economic loss, as well as p...

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Veröffentlicht in:Foods 2023-04, Vol.12 (9), p.1746
Hauptverfasser: Elsebaie, Essam Mohamed, El-Wakeil, Nora Hamdy Mouhamed, Khalil, Azhar Mostafa Mohamed, Bahnasy, Rasha M, Asker, Galila Ali, El-Hassnin, Marwa Fawzy, Ibraheim, Suzan S, El-Farsy, Marwa Fawzi Ahmed, Faramawy, Asmaa Antar, Essa, Rowida Younis, Badr, Mohamed Reda
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Sprache:eng
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Zusammenfassung:The consumption of foods polluted with different foodborne pathogens such as fungus, viruses, and bacteria is considered a serious cause of foodborne disease in both humans and animals. Multidrug-resistant foodborne pathogens (MRFP) cause morbidity, death, and substantial economic loss, as well as prolonged hospitalization. This study reports on the use of aqueous leaf extract (ARLE) in the synthesis of silver nanoparticles (ARLE-AgNPs) with versatile biological activities. The synthesized ARLE-AgNPs had spherical shapes with smooth surfaces and an average hydrodynamic size of 27 nm. ARLE-AgNPs inhibited the growth of ATCC25721, ATCC27843, ATCC49716, ATCC700813, and ATCC4342. The ARLE-AgNPs were more active against ATCC25721 than other harmful bacterial strains (26 ± 3 mm). The zone of inhibition for antibacterial activity ranged between 18 ± 3 mm and 26 ± 3 mm in diameter. The nanoparticles' MIC values varied from 5.19 µg/mL to 61 µg/mL, while their MBC values ranged from 46 µg/mL to 119 µg/mL. The nanoparticles that were created had antioxidant potential. The cytotoxic activity was tested using normal fibroblast cell lines (L-929), and the enhanced IC50 value (764.3 ± 3.9 g/mL) demonstrated good biological compatibility. These nanoparticles could be evolved into new antibacterial compounds for MRFP prevention.
ISSN:2304-8158
2304-8158
DOI:10.3390/foods12091746