| Literature DB >> 32298350 |
Eleonora Scarcello1, Alexia Lambremont2, Rita Vanbever3, Pascal J Jacques2, Dominique Lison1.
Abstract
The WST-1 assay is the most common test to assess the in vitro cytotoxicity of chemicals. Tetrazolium-based assays can, however, be affected by the interference of tested chemicals, including carbon nanotubes or Mg particles. Here, we report a new interference of Mn materials with the WST-1 assay. Endothelial cells exposed to Mn particles (Mn alone or Fe-Mn alloy from 50 to 1600 μg/ml) were severely damaged according to the WST-1 assay, but not the ATP content assay. Subsequent experiments revealed that Mn particles interfere with the reduction of the tetrazolium salt to formazan. Therefore, the WST-1 assay is not suitable to evaluate the in vitro cytotoxicity of Mn-containing materials, and luminescence-based assays such as CellTiter-Glo® appear more appropriate.Entities:
Year: 2020 PMID: 32298350 PMCID: PMC7161962 DOI: 10.1371/journal.pone.0231634
Source DB: PubMed Journal: PLoS One ISSN: 1932-6203 Impact factor: 3.240
Fig 3HUVECs WST-1 activity is dose-dependently reduced by direct exposure to TWIP steel particles.
HUVECs were grown in 96-well transparent or white plates and exposed the next day to different concentrations of TWIP steel or 316L steel particles or extracts for 24h. Extracts were obtained from culture medium incubated during 24h with the same concentrations of particles. The cells were then washed and further incubated in fresh medium with 10% WST-1 reagent for 2h. Absorbance was measured at 450 nm, with 690 nm as reference (A, C). After 24h exposure and wash, the white plate was replenished with fresh medium containing the CellTiter-Glo® reagent (ATP) and luminescence was read (B, D). Results are reported as relative WST-1 activity or luminescence, where 1.0 corresponds to the value measured in control cultures. Min-U-Sil® was used as a positive control. Values are means ± SEM (n = 8), *p < 0.05 relative to control (One-way ANOVA followed by a Dunnett’s multiple comparison). The trend test included controls.
Materials used, test type, and cell viability assays.
| Exposure | Assay | Time (h) | |
|---|---|---|---|
| Direct Extracts | WST-1, ATP WST-1, ATP | 0, 24 0, 24 | |
| Direct Extracts | WST-1, ATP WST-1, ATP | 0, 24 0, 24 | |
| Direct | WST-1 | 0 | |
| Direct | WST-1 | 0 | |
| Direct | WST-1 | 0 |
*Fe+Mn: mixture of 77 wt.% of Fe powder with 22 wt.% of Mn powder.