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Updated: Mar 21, 2026

Anticancer Metal Complexes: Synthesis and Cytotoxicity Evaluation by the MTT Assay
Published on: November 10, 2013
The Comparison of MTT and CVS Assays for the Assessment of Anticancer Agent Interactions
Lidia Śliwka1,2, Katarzyna Wiktorska1, Piotr Suchocki2,3
1Department of Cell Biology, National Medicines Institute, Warszawa, Poland.
Abstract:
Multiple in vitro tests are widely applied to assess the anticancer activity of new compounds, including their combinations and interactions with other drugs. The MTT (3-(4,5-dimethylthiazol-2-yl)-2,5-diphenyl tetrazolium bromide) assay is one of the most commonly used assays to assess the efficacy and interactions of anticancer agents. However, it can be significantly influenced by compounds that modify cell metabolism and reaction conditions. Therefore, several assays are sometimes used to screen for potential anticancer drugs. However, the majority of drug interactions are evaluated only with this single method. The aim of our studies was to verify whether the choice of an assay has an impact on determining the type of interaction and to identify the source of discrepancies. We compared the accuracy of MTT and CVS (crystal violet staining) assays in the interaction of two compounds characterized by similar anticancer activity: isothiocyanates (ITCs) and Selol. Confocal microscopy studies were carried out to assess the influence of these compounds on the reactive oxygen species (ROS) level, mitochondrial membrane potential, dead-to-live cell ratio and MTT-tetrazolium salt reduction rate. The MTT assay was less reliable than CVS. The MTT test of Selol and 2-oxoheptyl ITC, which affected the ROS level and MTT reduction rate, gave false negative (2-oxoheptyl ITC) or false positive (Selol) results. As a consequence, the MTT assay identified an antagonistic interaction between Selol and ITC, while the metabolism-independent CVS test identified an additive or synergistic interaction. In this paper, we show for the first time that the test assay may change the interpretation of the compound interaction. Therefore, the test method should be chosen with caution, considering the mechanism of action of the compound.
Insights
The MTT assay can inaccurately assess anticancer drug interactions by being influenced by compounds affecting cell metabolism. The crystal violet staining (CVS) assay provides a more reliable evaluation of drug interactions, especially for compounds impacting reactive oxygen species (ROS).
Area of Science:
- Pharmacology
- Biochemistry
- Cancer Research
Background:
- In vitro assays are crucial for evaluating anticancer compound efficacy and drug interactions.
- The MTT assay is commonly used but susceptible to interference from compounds altering cell metabolism and reaction conditions.
- Discrepancies in drug interaction assessments often arise from the choice of assay method.
Purpose of the Study:
- To investigate the impact of assay selection on determining the type of interaction between anticancer compounds.
- To identify the sources of discrepancies in drug interaction evaluations.
- To compare the reliability of MTT and crystal violet staining (CVS) assays for assessing drug interactions.
Main Methods:
- Comparison of MTT and CVS assays for evaluating the interaction between isothiocyanates (ITCs) and Selol.
- Confocal microscopy to assess reactive oxygen species (ROS) levels, mitochondrial membrane potential, and cell viability.
- Analysis of MTT-tetrazolium salt reduction rate influenced by compound treatment.
Main Results:
- The MTT assay demonstrated lower reliability compared to the CVS assay.
- Selol and 2-oxoheptyl ITC affected ROS levels and MTT reduction rates, leading to false results in the MTT assay.
- MTT assay indicated an antagonistic interaction between Selol and ITC, whereas the metabolism-independent CVS assay revealed additive or synergistic interactions.
Conclusions:
- The choice of assay significantly impacts the interpretation of drug interactions.
- The MTT assay can yield inaccurate results for compounds that modify cellular metabolism or ROS levels.
- Metabolism-independent assays like CVS are more reliable for evaluating anticancer drug interactions, especially when compound mechanisms are unknown.
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