Related Experiment Video
Updated: Jul 6, 2026

Mitochondrial Respiration Quantification in Yeast Whole Cells
Published on: November 8, 2024
Resveratrol inhibits uveal melanoma tumor growth via early mitochondrial dysfunction
Paul R van Ginkel1, Soesiawati R Darjatmoko, Dhruv Sareen
1Department of Ophthalmology and Visual Sciences, University of Wisconsin School of Medicine and Public Health, Madison, Wisconsin 53792, USA.
Purpose:
To test the efficacy of resveratrol, a nontoxic plant product, in the treatment of uveal melanoma.
Methods:
The effect of oral administration and peritumor injection of resveratrol was tested on tumor growth in two animal models of uveal melanoma. The mechanism of resveratrol action on uveal melanoma cells was studied in vitro in a cell-viability assay: with JC-1 dye, to measure mitochondrial membrane potential; by Western blot analysis, to analyze the cellular redistribution of cytochrome c and Smac/diablo; and in a fluorescence assay with specific substrates, to measure activation of different caspases.
Results:
Resveratrol treatment inhibited tumor growth in animal models of uveal melanoma. Since oral administration resulted in relatively low bioavailability of resveratrol, the effect of increased local levels was tested by peritumor injection of the drug. This method resulted in tumor cell death and tumor regression. In vitro experiments with multiple uveal melanoma cell lines demonstrate that resveratrol causes a decrease in cell viability, resulting at least in part from an increase in apoptosis through a mitochondrial pathway. An early event in drug action is the direct targeting of mitochondria by resveratrol, which leads to a decrease in mitochondrial membrane potential and the eventual activation of caspase-3.
Conclusion:
These data suggest that resveratrol can inhibit tumor growth and can induce apoptosis via the intrinsic mitochondrial pathway and that by further increasing bioavailability of resveratrol the potency of the drug can be increased, leading to tumor regression. The nontoxic nature of the drug at levels needed for therapy make resveratrol an attractive candidate for the treatment of uveal melanoma.
Insights
Resveratrol effectively inhibited uveal melanoma growth in animal models. This non-toxic compound induces cancer cell death via the mitochondrial apoptosis pathway, suggesting its potential as a novel cancer therapy.
Area of Science:
- Oncology
- Pharmacology
- Cell Biology
Background:
- Uveal melanoma is a rare but aggressive form of eye cancer.
- Current treatment options for uveal melanoma have limitations.
- Resveratrol, a natural polyphenol, exhibits potential anti-cancer properties.
Purpose of the Study:
- To evaluate the efficacy of resveratrol in treating uveal melanoma.
- To investigate the underlying mechanisms of resveratrol's action on uveal melanoma cells.
Main Methods:
- Animal models of uveal melanoma were used to test oral and peritumor injection of resveratrol.
- In vitro studies utilized cell viability assays, JC-1 dye for mitochondrial potential, Western blot for protein analysis, and caspase activation assays.
- Mechanisms investigated included apoptosis induction and mitochondrial pathway involvement.
Main Results:
- Resveratrol administration inhibited tumor growth in vivo.
- Peritumor injection of resveratrol led to tumor cell death and regression, overcoming low oral bioavailability.
- In vitro, resveratrol decreased cell viability by inducing apoptosis through the intrinsic mitochondrial pathway, targeting mitochondria and activating caspase-3.
Conclusions:
- Resveratrol demonstrates significant potential for treating uveal melanoma by inhibiting tumor growth and inducing apoptosis.
- Targeting mitochondria and enhancing resveratrol bioavailability are key to increasing its therapeutic potency.
- The non-toxic nature of resveratrol makes it an attractive candidate for further clinical investigation in uveal melanoma treatment.
Related Concept Videos
Electron Transport Chain: Complex I and II
ROS generation is regulated and maintained at moderate levels necessary...
Mitochondrial Membranes
Mitochondria
mTOR Signaling and Cancer Progression
The mTOR pathway or the...
mTOR Signaling and Cancer Progression
The mTOR pathway or the...
