Green Synthesis of Silver Oxide Nanoparticles from Mauritia flexuosa Fruit Extract: Characterization and Bioactivity Assessment


Abstract:

The increasing prevalence of multidrug-resistant (MDR) pathogens, persistent biofilms, oxidative stress, and cancerous cell proliferation poses significant challenges in healthcare and environmental settings, highlighting the urgent need for innovative and sustainable therapeutic solutions. The exploration of nanotechnology, particularly the use of green-synthesized nanoparticles, offers a promising avenue to address these complex biological challenges due to their multifunctional properties and biocompatibility. Utilizing a green synthesis approach, Mauritia flexuosa Mf-Ag<inf>2</inf>ONPs were synthesized and characterized using dynamic light scattering (DLS), transmission electron microscopy (TEM), X-ray diffraction (XRD), energy-dispersive X-ray spectroscopy coupled with scanning electron microscopy (EDS-SEM), UV-Vis spectroscopy, and Fourier transform infrared spectroscopy (FTIR). The Mf-Ag<inf>2</inf>ONPs exhibited potent antibacterial effects against both non-resistant and MDR bacterial strains, with minimum inhibitory concentrations (MICs) ranging from 11.25 to 45 µg/mL. Mf-Ag<inf>2</inf>ONPs also demonstrated significant antifungal efficacy, particularly against Candida glabrata, with an MIC of 5.63 µg/mL. Moreover, the nanoparticles showed strong biofilm inhibition capabilities and substantial antioxidant properties, underscoring their potential to combat oxidative stress. Additionally, Mf-Ag<inf>2</inf>ONPs exhibited pronounced anticancer properties against various cancer cell lines, displaying low IC<inf>50</inf> values across various cancer cell lines while maintaining minimal hemolytic activity at therapeutic concentrations. These findings suggest that Mf-Ag<inf>2</inf>ONPs synthesized via an eco-friendly approach offer a promising alternative for biomedical applications, including antimicrobial, antifungal, antioxidant, and anticancer therapies, warranting further in vivo studies to fully exploit their therapeutic potential.

Año de publicación:

2024

Keywords:

  • antibacterial agent
  • Anticancer
  • biological activity
  • Green Synthesis
  • Mauritia flexuosa
  • silver nanoparticles
  • sustainable approach
  • multidrug resistant bacteria

Fuente:

scopusscopus
orcidorcid

Tipo de documento:

Article

Estado:

Acceso restringido

Áreas de conocimiento:

  • Nanopartícula
  • Nanopartícula
  • Biotecnología

Áreas temáticas de Dewey:

  • Química inorgánica
  • Ingeniería y operaciones afines
  • Farmacología y terapéutica
  • Química y ciencias afines
  • Medicina y salud
  • Ciencias Naturales y Matemáticas
Procesado con IAProcesado con IA

Objetivos de Desarrollo Sostenible:

  • ODS 12: Producción y consumo responsables
  • ODS 2: Hambre cero
  • ODS 13: Acción por el clima
  • ODS 15: Vida de ecosistemas terrestres
  • ODS 9: Industria, innovación e infraestructura
Procesado con IAProcesado con IA