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篇名
Exploration of Wedelia chinensis leaf-assisted silver nanoparticles for antioxidant, antibacterial and in vitro cytotoxic applications   全文下載 全文下載
並列篇名
Exploration of Wedelia chinensis leaf-assisted silver nanoparticles for antioxidant, antibacterial and in vitro cytotoxic applications
作者 Merina Paul Das (Merina Paul Das)Jeyanthi Rebecca Livingstone (Jeyanthi Rebecca Livingstone)Pandiyarasan Veluswamy (Pandiyarasan Veluswamy)Jayabrata Das (Jayabrata Das)
英文摘要
Green synthetic route of silver nanoparticles (AgNPs) has already been proved to be an advantageous over other physico-chemical approaches due to its simplicity, cost effectiveness, ecofriendly and nontoxicity. In this finding, aqueous Wedelia chinensis leaf extract (WLE) mediated synthesis of AgNPs was approached. Surface plasmon resonance (SPR) band at 408 nm preliminary indicated the formation of AgNPs, while TEM and XRD characterization confirmed the formation of spherically shaped and crystalline AgNPs with an average size of 31.68 nm, respectively. The plausible biomolecules in the aqueous leaf extract responsible for the reduction and stabilization of AgNPs were identified by FTIR analysis and found to be polyphenolic groups in flavonoid. Further, synthesized AgNPs was explored for different biological applications. Biosynthesized AgNPs showed significant free radical scavenging activity as compared to Wedelia leaf extract and antibacterial activity against clinically isolated test pathogens where Gram-negative bacteria were found more susceptible to AgNPs than Gram-positive one. In addition, in vitro cytotoxic response was also evaluated on hepatocellular carcinoma Hep G2 cell lines and showed a dosedependent cytotoxic response with an IC50 value of 25μg/mL.
起訖頁 917-925
關鍵詞 Wedelia chinensisAgNPsAntioxidantAntibacterialCytotoxicity
刊名 JOURNAL OF FOOD AND DRUG ANALYSIS  
期數 201804 (26:2期)
出版單位 衛生福利部食品藥物管理署
該期刊-上一篇 Oxidative stress evoked damages leading to attenuated memory and inhibition of NMDAR-CaMKII-ERK/CREB signalling on consumption of aspartame in rat model
 

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