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Article detail · 2022

A carboxylated nanodiamond reduces oxidative stress and shows no sign of toxicity in yeast

Journal

Fullerenes, Nanotubes and Carbon Nanostructures

ISSN 1536-383X

The ISSN points to another catalog journal; the name is from the YÖKSİS record.

YÖKSİS OpenAlex SJR Q2 JCR Q3 Citations 8 Percentile 58.7% FWCI 0.58
Year
2022
Type
article

Data source split

  • YÖKSİS YÖKSİS article record
  • YÖKSİS venue Fullerenes, Nanotubes and Carbon Nanostructures
  • Catalog match (ISSN) Fullerenes Nanotubes and Carbon Nanostructures
  • OpenAlex OpenAlex enrichment (abstract, citations, topics)

Abstract

English (OpenAlex)

Nanodiamonds (NDs) offer numerous advantages in nanotechnology owing to their unique physicochemical properties. Their chemical stability, natural fluorescence and high absorption capacity make NDs advantageous to be used in many fields including nanomedicine, nano-cosmetics and biomedicine. Recent investigations suggest that NDs can scavenge reactive oxygen species (ROS) therefore act as antioxidants. However, studies regarding the antioxidant properties of NDs are limited and their effects on hydrogen peroxide (H2O2)-induced oxidative stress is not clear. Besides, due to the increased incorporation of cNDs in nanomedical, nano-cosmetics and biomedical products toxicity assessments are needed. Here, we investigated the effects of a carboxylated ND (cND) on H2O2-induced oxidative stress and its 24-hour toxicity in a unicellular eukaryotic model, Saccharomyces cerevisiae. We showed that cND significantly reduces cell death and ROS accumulation in response to H2O2-induced oxidative stress by decreasing H2O2 levels in the media (p < 0.05). Although growth inhibition was observed at higher concentrations (1000 µg/mL and above, p < 0.05), even 10.000 µg/mL cND treatment for 24 hours did not completely inhibit colony formation. cND also significantly reduced ROS generated during normal metabolism (p < 0.05) and did not lead to cell death. Our data suggest that cND shows ROS-scavenging activity and has no sign of toxicity in S. cerevisiae.

Topics

  • Diamond and Carbon-based Materials Research
  • Nanoparticles: synthesis and applications
  • Analytical chemistry methods development

Primary topic Diamond and Carbon-based Materials Research

Authors

  1. NUR KALUÇ
  2. PINAR BUKET THOMAS MALTEPE ÜNİVERSİTESİ