Long-Term Exposure to Nanosized TiO2 Triggers Stress Responses and Cell Death Pathways in Pulmonary Epithelial Cells

Int J Mol Sci. 2021 May 19;22(10):5349. doi: 10.3390/ijms22105349.

Abstract

There is little in vitro data available on long-term effects of TiO2 exposure. Such data are important for improving the understanding of underlying mechanisms of adverse health effects of TiO2. Here, we exposed pulmonary epithelial cells to two doses (0.96 and 1.92 µg/cm2) of TiO2 for 13 weeks and effects on cell cycle and cell death mechanisms, i.e., apoptosis and autophagy were determined after 4, 8 and 13 weeks of exposure. Changes in telomere length, cellular protein levels and lipid classes were also analyzed at 13 weeks of exposure. We observed that the TiO2 exposure increased the fraction of cells in G1-phase and reduced the fraction of cells in G2-phase, which was accompanied by an increase in the fraction of late apoptotic/necrotic cells. This corresponded with an induced expression of key apoptotic proteins i.e., BAD and BAX, and an accumulation of several lipid classes involved in cellular stress and apoptosis. These findings were further supported by quantitative proteome profiling data showing an increase in proteins involved in cell stress and genomic maintenance pathways following TiO2 exposure. Altogether, we suggest that cell stress response and cell death pathways may be important molecular events in long-term health effects of TiO2.

Keywords: carcinogenesis; fibrosis; lipidomics; proteomics; titanium dioxide.

MeSH terms

  • Alveolar Epithelial Cells / drug effects
  • Alveolar Epithelial Cells / metabolism*
  • Apoptosis / drug effects
  • Autophagy / drug effects
  • Cell Cycle / drug effects
  • Cell Division
  • Cell Line
  • Epithelial Cells / metabolism
  • Gene Expression / genetics
  • Gene Expression Profiling / methods
  • Humans
  • Lung / metabolism
  • Metal Nanoparticles / adverse effects
  • Nanoparticles / adverse effects
  • Oxidative Stress / drug effects
  • Proteomics / methods
  • Pulmonary Alveoli / drug effects
  • Pulmonary Alveoli / metabolism
  • Reactive Oxygen Species / metabolism
  • Titanium / adverse effects*
  • Titanium / metabolism
  • Transcriptome / genetics

Substances

  • Reactive Oxygen Species
  • titanium dioxide
  • Titanium