Silver Nanoparticles Show Promise in Combating Multidrug-Resistant Microorganisms
Research conducted at the University of Sonora has revealed that silver nanoparticles (AgNPs) synthesized using plant-derived bioactive compounds demonstrate significant antimicrobial properties and potential biomedical applications. The study employed a bio-green approach to synthesize AgNPs using ethanolic extracts from Antigonon leptopus leaves, which were then characterized and tested for antibacterial and cytotoxic activities.
Key Takeaways:
- The synthesis of AgNPs using plant-derived bioactive compounds offers an eco-friendly alternative to conventional methods, which often require harsh conditions and toxic reagents.
- The bio-green approach employed in this study resulted in the formation of spherical AgNPs with a surface plasmon resonance peak at 410 nm, and a hydrodynamic diameter of 93.48 ± 1.88 nm.
- The AgNPs demonstrated significant bactericidal activity against Escherichia coli and Staphylococcus aureus at a concentration of 3.9 mg/mL (Ag equivalent), with no toxicity observed in HeLa, T731-GFP, CaCo-2, or HaCaT cells at concentrations up to 7.8 mg/mL.
- The study highlights the potential of *Antigonon leptopus* extract as a sustainable and cost-effective resource for AgNPs synthesis, with strong antimicrobial properties and potential biomedical applications.
Statistics:
- The hydrodynamic diameter of the AgNPs was 93.48 ± 1.88 nm.
- The zeta potential of the AgNPs was -37.80 ± 1.28 mV.
- The bactericidal activity of the AgNPs against Escherichia coli and Staphylococcus aureus was observed at a concentration of 3.9 mg/mL (Ag equivalent).
- No toxicity was observed in HeLa, T731-GFP, CaCo-2, or HaCaT cells at concentrations up to 7.8 mg/mL.
Sources:
- Phytosynthesis and Characterization of Silver Nanoparticles from *Antigonon leptopus*: Assessment of Antibacterial and Cytotoxic Properties. Pharmaceutics, 2025,17(5):672.
- MDPI AG, publisher of Pharmaceutics.
- University of Sonora, Unidad Regional Centro, Hermosillo 83000, Sonora, Mexico.