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February 19, 2026Green Processing and Synthesis0 citationsOpen Access

Biosynthesis of TiO 2 nanoparticles via Pleurotus florida as a green nanotechnology-based strategy for multifunctional therapeutic applications

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TGTamilselvan Amutha GokulKKKamatchi Ramesh KumarVVVeeramani Veeramanikandan

Key Points

  • This work aims to develop a green method for synthesizing titanium dioxide nanoparticles using Pleurotus florida and evaluate their therapeutic properties.
  • Utilized mushroom extract from Pleurotus florida for nanoparticles' biosynthesis.
  • Characterized synthesized nanoparticles using UV-visible spectroscopy and X-ray diffraction (XRD).
  • Assessed cytotoxicity on SK-N-SH human neuroblastoma cell line.
  • Evaluated antibacterial efficacy against various bacteria strains.
  • Tested antioxidant and anti-inflammatory activities in vitro.
  • Synthesized TiO2 nanoparticles showed an absorbance peak at 214 nm and confirmed anatase phase via XRD.
  • Demonstrated cytotoxicity with an IC50 of 96.79 μg/mL against SK-N-SH cells.
  • Exhibited significant antibacterial activity with a 16 mm inhibition zone for Salmonella enterica.
  • Achieved 68.18% α-amylase inhibitory activity and 86.02% anti-inflammatory efficacy at 1,000 μg/mL.

Abstract

Abstract This study presents an environmentally friendly and green approach for the biosynthesis of titanium dioxide nanoparticles (TiO 2 NPs) utilizing the Pleurotus florida mushroom extract. The synthesized TiO 2 NPs underwent thorough characterization using sophisticated analytical methods. In the ultraviolet-visible spectrum investigation, the absorbance peak was seen at 214 nm, and the XRD findings confirmed that the anatase phase of TiO 2 was present. Based on the assessments of cytotoxicity, it was shown that the SK-N-SH cell line, which is the neuroblastoma from humans, exhibited substantial invitro cytotoxicity effects, with an IC 50 value of 96.79 μg/mL. The synthesized nanoparticles displayed significant antibacterial efficacy with the highest significant zone of inhibition reported for Salmonella enterica (16 mm), Proteus vulgaris (15 mm), and Staphylococcus aureus sub sp. (15 mm); the efficacy was against both Gram-positive and Gram-negative bacteria. Furthermore, in vitro antioxidant evaluation confirmed their ability of nanoparticles to scavenge the free radical. At a concentration of 1,000 μg/mL, the nanoparticles displayed 68.18 % α-amylase inhibitory activity, exceeding the standard reference, and demonstrated 86.02 % anti-inflammatory efficacy. This pioneering study underscores the potential of P. florida -mediated TiO 2 NPs as multifunctional bioactive agents, paving the way for their application as eco-friendly nanodrugs in biomedical and pharmaceutical domains.

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Cite This Study

Gokul et al. (2026) studied this question.

synapsesocial.com/papers/6996a788ecb39a600b3ed4dehttps://doi.org/10.1515/gps-2025-0093
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