Asian Pacific Journal of Tropical Disease · 2016 · 44 citations · 32 references
NanoparticlesEngineeringMetal NanoparticlesBio-based NanomaterialsNanotoxicologyChemistryGreen Silver NanoparticleNanomaterials SynthesisChemical EngineeringGreen NanotechnologyBioimagingX-ray Diffraction AnalysisNanoparticle CharacterizationBiological ApplicationNanomaterialsSilver NanoparticlesX-ray DiffractionBiotechnologyGreen SynthesisRauvolfia Serpentina Benth
To synthesize silver nanoparticles (AgNPs) from the leaf extract of Rauvolfia serpentina Benth and examination of their various biological activities. An ecofriendly, easy, one step, non-toxic and inexpensive approach is used, where aqueous plant extract acts as a reducing as well as stabilizing agent of AgNPs. The nanoparticles were characterized by UV-vis spectroscopy, Fourier transform infrared spectroscopy, transmission electron microscopy, X-ray diffraction, and energy-dispersive X-ray spectroscopy analysis. Surface plasmon resonance of the nanoparticles was observed at 427 nm in UV-vis spectroscopy. Fourier transform infrared spectroscopy result confirms that the plant extract acts as the reducing as well as the capping agent of the AgNPs. Transmission electron microscopy indicated that the synthesized nanoparticles are spherical in shape and approximately 7–10 nm in size, whereas the crystalline nature with face-centered cubic structure of the AgNPs was detected by X-ray diffraction analysis. Presence of silver in the AgNPs is 31.43% by weight, as confirmed by energy-dispersive X-ray spectroscopy. The synthesized AgNPs have antimicrobial activities against human pathogenic microorganisms. It also shows larvicidal activity and cytotoxicity against HeLa, MCF-7 cell lines. Synthesized spherical shaped AgNPs from the leaf extract of Rauvolfia serpentina Benth have antimicrobial and larvicidal activities as well as cytotoxicity against HeLa and MCF-7 cell lines.
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Ravichandran Veerasamy, Tiah Zi Xin, Subashini Gunasagaran et al. · Journal of Saudi Chemical Society · 2010 · 794 citations · Full text