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Comparative study on the antileishmanial activities of chemically and biologically synthesized silver nanoparticles (AgNPs)

dc.contributor.authorUllah, Ikram
dc.contributor.authorCosar, Gizem
dc.contributor.authorAbamor, Emrah Sefik
dc.contributor.authorBagirova, Melahat
dc.contributor.authorShinwari, Zabta Khan
dc.contributor.authorAllahverdiyev, Adil M.
dc.date.accessioned2026-06-27T14:14:41Z
dc.date.issued2018
dc.description.abstractThe present study was conducted to investigate the antileishmanial activity of biogenic silver nanoparticles (AgNPs) compared to chemically synthesized AgNPs. A nano dimension size (10-15 nm) biogenic AgNPs was produced and characterized by UV-Vis spectroscopy and X-rays diffraction. The chemically synthesized AgNPs was recovering from our previous study with a nanoparticle (NP) size in the range of 10-40 nm. The antileishmanial activities were investigated through 3-(4,5-dimethylthiazol-2-yl)-2,5-diphenyltetrazolium bromide cell viability assay. The infectivity was determined by Giemsa staining of the infected macrophages cells. Nitric oxide (NO) accumulation was measured by Griess reagent using NaNO2 as a positive control. After 24 h of exposure with nanoparticles (NPs), a concentration-dependent growth inhibition was observed. The IC50 values were determined against promastigotes of L. infantum as 19.42 +/- 2.76 mu g/ml for leaves aqueous extract mediated AgNPs, 30.71 +/- 1.91 mu g/ml for stem mediated AgNPs and 51.23 +/- 2.20 mu g/ml for chemically synthesized AgNPs. It was also detected that all types of NPs produced NO at a significant level. However, the production of a high-level of NO in the biologically synthesized NPs activated macrophage cells, infected with L. infantum promastigotes indicates that NO radicals are mainly responsible for induced cell death and a decrease in the pathogenicity of the parasites. Since, biogenic nanoparticles are cost-effective, eco-friendly, simple to synthesize, and more effective than chemically synthesized silver nanoparticles, therefore, it could be used as a potential alternative for the development of antileishmanial drugs.en
dc.description.sponsorshipScientific Researches and Project Coordinatorship of Yildiz Technical University Istanbul Turkey [2013-07-04-KAP02]
dc.description.sponsorshipTUBITAK (the scientific and technological research council of Turkey) [2216]
dc.description.urihttps://doi.org/10.1007/s13205-018-1121-6
dc.identifier.doi10.1007/s13205-018-1121-6
dc.identifier.eissn2190-5738
dc.identifier.issn2190-572X
dc.identifier.pubmed29430360
dc.identifier.urihttps://hdl.handle.net/20.500.14981/58381
dc.identifier.volume8
dc.identifier.wos000424106000003
dc.language.isoeng
dc.publisherSPRINGER HEIDELBERG
dc.relation.ispartof3 BIOTECH
dc.rightsopenAccess
dc.subjectBiological synthesis
dc.subjectSilver nanoparticles
dc.subjectXRD
dc.subjectTeucrium stocksianum Boiss.
dc.subjectAntileishmanial activities
dc.subjectInfectivity
dc.subjectNITRIC-OXIDE
dc.subjectTEUCRIUM-STOCKSIANUM
dc.subjectLEISHMANIA PARASITES
dc.subjectEXTRACT
dc.subjectMACROPHAGES
dc.subjectVACCINES
dc.subjectBiotechnology & Applied Microbiology
dc.titleComparative study on the antileishmanial activities of chemically and biologically synthesized silver nanoparticles (AgNPs)
dc.typeArticle
dspace.entity.typePublication
local.import.sourceWOS

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