Related Experiment Video
Updated: Jul 20, 2026

Isolation and Functional Analysis of Mitochondria from Cultured Cells and Mouse Tissue
Published on: March 23, 2015
The mitochondrial uncoupler dicumarol disrupts the MTT assay
Abby C Collier1, Chris A Pritsos
1Department of Nutrition, University of Nevada, Reno, NV 89557, USA.
Abstract:
Dicumarol is routinely added to the 3-[4,4-dimethylthiazol-2-yl]-2,5-diphenyltetrazolium bromide (MTT) assay to study the role of NAD(P)H:quinone oxido-reductase in drug activation and detoxification. We assessed the direct impact of dicumarol (a mitochondrial uncoupler) on the MTT assay. Mouse mammary tumor (EMT6) and Chinese hamster ovary (CHO) cells were treated with media containing either 10 or 1% fetal bovine serum and dicumarol (0-1000 microM) mimicking standard assay conditions. MTT, clonogenic, total reactive oxygen species (ROS), and oxygen consumption assays were performed. Significant increases in the apparent viability of EMT6 and CHO cells were observed with MTT assays after short time periods with maximum effects at 2 hr. Reduced serum concentrations intensified this effect. Conversely, significant decreases in viability for both cell lines occurred after longer incubations and serum withdrawal enhanced this effect in both cell lines. Clonogenic assays provided contrasting results where viability increased significantly only in EMT6 cells (not CHO) and was smaller than that reported by MTT. Furthermore, greater dicumarol toxicity was observed in clonogenic assays. Significant toxicity compared to control occurred after 4-hr treatment (vs. 12 hr MTT) and serum withdrawal also increased the toxicity of dicumarol with extended culture. ROS production in EMT6 and CHO cells increased in a concentration-dependent manner with 20-min dicumarol administration and thereafter declined. The EC(50) for dicumarol-induced oxygen consumption was 0.84 microM in CHO compared to 1.18 microM in EMT6 cells. Cell lines are differentially sensitive to the toxicity of dicumarol and cell survival data may be skewed by its inclusion, probably due to ROS production and mitochondrial uncoupling. Dicumarol is not recommended for inclusion in the MTT assay.
Insights
Dicumarol inclusion in the MTT assay can skew cell viability results by affecting mitochondrial function and increasing reactive oxygen species (ROS). Dicumarol is not recommended for MTT assays due to these confounding effects.
Area of Science:
- Biochemistry
- Cell Biology
- Toxicology
Background:
- Dicumarol is commonly used in 3-[4,4-dimethylthiazol-2-yl]-2,5-diphenyltetrazolium bromide (MTT) assays to investigate NAD(P)H:quinone oxido-reductase activity.
- Dicumarol is a known mitochondrial uncoupler, raising concerns about its direct impact on cellular assays.
Purpose of the Study:
- To evaluate the direct effects of dicumarol on cell viability using the MTT assay.
- To compare dicumarol's impact on MTT assays with other cell survival assays, including clonogenic assays, reactive oxygen species (ROS) production, and oxygen consumption.
Main Methods:
- Mouse mammary tumor (EMT6) and Chinese hamster ovary (CHO) cells were treated with varying concentrations of dicumarol and fetal bovine serum levels.
- MTT, clonogenic, ROS production, and oxygen consumption assays were conducted to assess cell viability and cellular responses.
Main Results:
- MTT assays showed increased apparent cell viability with short dicumarol exposure, particularly in low serum conditions, while longer exposures revealed decreased viability.
- Clonogenic assays indicated increased viability in EMT6 cells but not CHO cells, with greater observed toxicity and faster onset compared to MTT assays.
- Dicumarol induced concentration-dependent ROS production and oxygen consumption in both cell lines, with differential sensitivity observed between EMT6 and CHO cells.
Conclusions:
- Dicumarol significantly impacts MTT assay results, potentially skewing cell survival data due to mitochondrial uncoupling and ROS generation.
- The findings suggest that dicumarol's inclusion in MTT assays can lead to inaccurate interpretations of drug effects on cell viability.
- Dicumarol is not recommended for use in MTT assays due to its confounding effects on cellular metabolism and viability measurements.

