{"data":{"id":"10.6084/m9.figshare.c.3148573","type":"dois","attributes":{"doi":"10.6084/m9.figshare.c.3148573","prefix":"10.6084","suffix":"m9.figshare.c.3148573","identifiers":[],"alternateIdentifiers":[],"creators":[{"name":"Manikandan Dhayalan","affiliation":[],"nameIdentifiers":[]},{"name":"Denison, Michael Immanuel Jesse","nameType":"Personal","givenName":"Michael Immanuel Jesse","familyName":"Denison","affiliation":[],"nameIdentifiers":[]},{"name":"L, Anitha Jegadeeshwari","nameType":"Personal","givenName":"Anitha Jegadeeshwari","familyName":"L","affiliation":[],"nameIdentifiers":[]},{"name":"Kathiravan Krishnan","affiliation":[],"nameIdentifiers":[]},{"name":"Nagendra Gandhi N","affiliation":[],"nameIdentifiers":[]}],"titles":[{"title":"\u003ci\u003eIn vitro\u003c/i\u003e antioxidant, antimicrobial, cytotoxic potential of gold and silver nanoparticles prepared using \u003ci\u003eEmbelia ribes\u003c/i\u003e"}],"publisher":"Figshare","container":{},"publicationYear":2016,"subjects":[{"subject":"Biochemistry"},{"subject":"Space Science"},{"subject":"29999 Physical Sciences not elsewhere classified","subjectScheme":"FOR"},{"subject":"FOS: Physical sciences","schemeUri":"http://www.oecd.org/science/inno/38235147.pdf","subjectScheme":"Fields of Science and Technology (FOS)"},{"subject":"FOS: Physical sciences","subjectScheme":"Fields of Science and Technology (FOS)"},{"subject":"Medicine"},{"subject":"Pharmacology"},{"subject":"39999 Chemical Sciences not elsewhere classified","subjectScheme":"FOR"},{"subject":"FOS: Chemical sciences","schemeUri":"http://www.oecd.org/science/inno/38235147.pdf","subjectScheme":"Fields of Science and Technology (FOS)"},{"subject":"FOS: Chemical sciences","subjectScheme":"Fields of Science and Technology (FOS)"},{"subject":"69999 Biological Sciences not elsewhere classified","subjectScheme":"FOR"},{"subject":"FOS: Biological sciences","schemeUri":"http://www.oecd.org/science/inno/38235147.pdf","subjectScheme":"Fields of Science and Technology (FOS)"},{"subject":"FOS: Biological sciences","subjectScheme":"Fields of Science and Technology (FOS)"}],"contributors":[],"dates":[{"date":"2016-04-22","dateType":"Created"},{"date":"2016-04-22","dateType":"Updated"},{"date":"2016","dateType":"Issued"}],"language":null,"types":{"ris":"GEN","bibtex":"misc","citeproc":"article","schemaOrg":"Collection","resourceType":"Collection","resourceTypeGeneral":"Collection"},"relatedIdentifiers":[],"relatedItems":[],"sizes":[],"formats":[],"version":null,"rightsList":[{"rights":"CC-BY","rightsUri":"http://creativecommons.org/licenses/by/3.0/us"}],"descriptions":[{"description":"In recent years, the green synthesis of gold (GNPs) and silver (SNPs) nanoparticles has gained great interest among chemists and researchers. The present study reports an eco-friendly, cost-effective, rapid and easy method for the synthesis of gold and silver nanoparticles using the seed extract of \u003ci\u003eEmbelia ribes\u003c/i\u003e (SEEr) as capping and reducing agent. The synthesised GNPs and SNPs were characterised using the following techniques: UV–vis spectroscopy, DLS, HR-TEM, FT-IR and XRD. The free radical scavenging potential of GNPs and SNPs was measured by DPPH assay and Phosphomolybdenum assay. Further, the antimicrobial activity against two micro-organisms were tested using disc diffusion method and cytotoxicity of GNPs and SNPs was determined against MCF-7 cell lines at different concentrations by MTT assay. Both the GNPs and SNPs prepared from \u003ci\u003eE. ribes\u003c/i\u003e comparatively showed promising results thereby proving their clinical importance.","descriptionType":"Abstract"}],"geoLocations":[],"fundingReferences":[],"xml":"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