Biological Synthesis of Spilanthes Acmella Nanoparticles

Authors

  • Shradha Jalan, Devika Pillai, Sivakamavalli Jeyachandran Author

DOI:

https://doi.org/10.48047/x99cpg81

Keywords:

Spilanthes acmella, nanoparticles, Biological synthesis

Abstract

Premna integrifolia L. is extensively distributed in tropical and subtropical regions. In this study, green silver nanoparticles were efficiently synthesized by mixing 1 mmol/L AgNO3 and 4% aqueous leaf extract at a neutral pH (7.0) after 25 minutes of sunlight exposure. The aqueous leaf extract was rich in polyphenols, with a higher flavonoid content (67.23 ± 1.23 mg/mg gallic acid 
equivalent) than phenolic content (58.10 ± 2.29 mg/mg rutin equivalent).

Downloads

Download data is not yet available.

References

Zaki SA, Ouf SA, Albarakaty FM. Trichoderma harzianum-Mediated ZnO Nanoparticles: A Green Tool for Controlling Soil-Borne Pathogens in Cotton. J Fungi. 2021,10;7:952. 10.3390/jof7110952.

Shobha B, Lakshmeesha TR, Ansari MA, et al. Mycosynthesis of ZnO Nanoparticles Using Trichoderma spp. isolated from Rhizosphere soils and its synergistic antibacterial effect against Xanthomonas oryzae. J. Fungi. 2020;6:181. 10.3390/jof6030181.

Downloads

Published

2025-02-03

How to Cite

Biological Synthesis of Spilanthes Acmella Nanoparticles (Shradha Jalan, Devika Pillai, Sivakamavalli Jeyachandran , Trans.). (2025). Cuestiones De Fisioterapia, 54(3), 1788-1792. https://doi.org/10.48047/x99cpg81