Green synthesis, characterization of gold nanomaterials and assessment of microbial potentials of nanoparticules using lavandula officinalis flower extract

Journal Title: Target International Medicine Journal - Year 2022, Vol 1, Issue 1

Abstract

Aim: In this study, environmentally friendly synthesis of gold nanoparticles was carried out by using the extract obtained from the flowers of the lavender (Lavandula officinalis) plant. Materials and Methods: In the metal solution used in the study, gold nanoparticles (AuNPs) were obtained. by precipitation with the help of high-speed centrifugation as a result of the reduction of the ionized Au+3 form by phytochemicals. Zeta potential, X-ray diffractometry, UVVis spectroscopy, transmission electron microscopy (TEM), Fourier transform scanning electron microscope (FE-SEM) and Electron for elucidation of the characterization and structure of (LO-AuNPs) synthesized with Lavandula officinalis extract dispersed. X-ray (EDX) device data was used. Results: Antimicrobial effect of LO-AuNPs synthesized of biological origin on pathogenic strains, minimum inhibitory concentration (MIK) on gram positive bacteria (S. aureus and B. subtilis), gram negative bacteria (E coli and P aeruginosa) and Candida albicans for fungal strain determined with. The effective concentrations on C. albicans were determined as 0.012, 0.625, 0.5, 0.125 and 0.50 μg/ mL, respectively. Conclusion: It was concluded that the synthesis obtained in the study can be used as an effective drug for these pathogens in the future.

Authors and Affiliations

Mehmet Firat Baran - Ayse Baran Cumali Keskin Necmettin Aktepe Mehmet Nuri Atalar Mehmet Tevfik Adican

Keywords

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  • EP ID EP701990
  • DOI 10.29228/targetmedj.57644
  • Views 54
  • Downloads 0

How To Cite

Mehmet Firat Baran - Ayse Baran Cumali Keskin Necmettin Aktepe Mehmet Nuri Atalar Mehmet Tevfik Adican (2022). Green synthesis, characterization of gold nanomaterials and assessment of microbial potentials of nanoparticules using lavandula officinalis flower extract. Target International Medicine Journal, 1(1), -. https://europub.co.uk/articles/-A-701990