Cellular Pre-Adaptation to the High O2 Concentration Used in Standard Cell Culture Confers Resistance to Subsequent H2O2-Induced Cell Death

Author:

Jordan Jack B.1ORCID,Smallwood Miranda J.1ORCID,Smerdon Gary R.12ORCID,Winyard Paul G.1ORCID

Affiliation:

1. University of Exeter Medical School, Faculty of Life and Health Sciences, University of Exeter, St Luke’s Campus, Exeter EX1 2LU, Devon, UK

2. DDRC Healthcare, Plymouth Science Park, Research Way, Plymouth PL6 8BU, Devon, UK

Abstract

The addition of hydrogen peroxide (H2O2) to cultured cells is widely used as a method to modulate redox-regulated cellular pathways, including the induction of programmed cell death in cell culture experiments and the testing of pro- and antioxidant compounds. Here, we assessed the effect on the cellular response to H2O2 of pre-adapting squamous cell carcinoma cells (A431) to the standard cell culture oxygenation of 18.6% O2, compared to cells pre-adapted to a physiological skin O2 concentration (3.0% O2). We showed that cells pre-adapted to 18.6% O2 resisted H2O2-induced cell death compared to cells pre-adapted to 3.0% O2 for 96 h prior to treatment with H2O2. Moreover, the enzymatic activities of catalase and glutathione reductase, as well as the protein expression levels of catalase, were higher in cells pre-adapted to 18.6% O2 compared to cells pre-adapted to 3.0% O2. H2O2-resistant cells, pre-adapted to 18.6% O2, exhibited increased nuclear Nrf-2 levels. It is concluded that A431 cells pre-adapted to standard cell culture oxygenation conditions resist H2O2-induced cell death. This effect may be related to their heightened activation of Nrf-2.

Funder

The University of Exeter’s Medical School

Publisher

MDPI AG

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