Biomolecules (May 2024)

Advances in the Toxicity Assessment of Silver Nanoparticles Derived from a <i>Sphagnum fallax</i> Extract for Monolayers and Spheroids

  • Liliya Iskuzhina,
  • Svetlana Batasheva,
  • Marina Kryuchkova,
  • Artem Rozhin,
  • Mariya Zolotykh,
  • Rimma Mingaleeva,
  • Farida Akhatova,
  • Anna Stavitskaya,
  • Kirill Cherednichenko,
  • Elvira Rozhina

DOI
https://doi.org/10.3390/biom14060611
Journal volume & issue
Vol. 14, no. 6
p. 611

Abstract

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The production of nanomaterials through environmentally friendly methods is a top priority in the sustainable development of nanotechnology. This paper presents data on the synthesis of silver nanoparticles using an aqueous extract of Sphagnum fallax moss at room temperature. The morphology, stability, and size of the nanoparticles were analyzed using various techniques, including transmission electron microscopy, Doppler laser velocimetry, and UV-vis spectroscopy. In addition, Fourier transform infrared spectroscopy was used to analyze the presence of moss metabolites on the surface of nanomaterials. The effects of different concentrations of citrate-stabilized and moss extract-stabilized silver nanoparticles on cell viability, necrosis induction, and cell impedance were compared. The internalization of silver nanoparticles into both monolayers and three-dimensional cells spheroids was evaluated using dark-field microscopy and hyperspectral imaging. An eco-friendly method for the synthesis of silver nanoparticles at room temperature is proposed, which makes it possible to obtain spherical nanoparticles of 20–30 nm in size with high bioavailability and that have potential applications in various areas of human life.

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