Antimicrobial activity of silver nanoparticles synthesized from Ficus benghalensis against human pathogens

Nanoparticles put forward an essentially useful platform, demonstrating unique properties with potentially wide-ranging application. such as chemicals, textile industry, medical diagnostic(future nanobots), drug and gene delivery, electronics diagnosis, artificial implants, tissue engineering[1], co...

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Veröffentlicht in:Research journal of pharmacy and technology 2017, Vol.10 (6), p.1635
Hauptverfasser: Sudhakar, Thukkaram, P, Balashanmugam, Premkumar, Jayapal, A, Anisha, D, Karthika, Sapkota, Roshan, Rijal, Sakar
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Sprache:eng
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Zusammenfassung:Nanoparticles put forward an essentially useful platform, demonstrating unique properties with potentially wide-ranging application. such as chemicals, textile industry, medical diagnostic(future nanobots), drug and gene delivery, electronics diagnosis, artificial implants, tissue engineering[1], computing, biochemicals sensors[2], medical imaging and so on. [...]it is well known that Ag ions and Ag-based compounds are highly toxic to microbes, showing strong biocidal effects. Field Emission Scanning Electron Microscopy (FESEM): The FE-SEM image of AgNPs synthesized by green synthesis process by using Ficus benghalensis extract and 1mm AgNO3 concentration was shown, silver nanoparticles were subjected to FE-SEM in the room temperature synthesized samples, of diameter of nanoparticles lies between 50-60nm. [...]interaction between gram positive and silver nanoparticle was stronger than gram negative [7,8].
ISSN:0974-3618
0974-360X
0974-306X
DOI:10.5958/0974-360X.2017.00287.6