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Updated: Jan 3, 2026

Nerve Excitability Assessment in Chemotherapy-induced Neurotoxicity
Published on: April 26, 2012
Oxaliplatin-induced neuropathy: the preventive effect of a new super-oxide dismutase modulator
Marie-Anne Guillaumot1, Olivier Cerles1, Hélène C Bertrand2
1Département "Development, Reproduction and Cancer", Institut Cochin, Paris Descartes Université, Sorbonne Paris Cité, INSERM U1016, Paris, France.
Abstract:
By using the differential in level of oxidative status between normal and cancer cells, SuperOxide Dismutase (SOD) mimetics can have anti-tumor efficacy and prevent oxaliplatin-induced peripheral neuropathy. Our objective was to evaluate the neuroprotective efficacy of MAG, a new SOD mimic. In vitro, the effects of MAG alone or with oxaliplatin were studied on colon cancer cells (HT29 and CT26) and on normal fibroblast cells (NIH3T3). The cell viability (by crystal violet) as well as the production of reactive forms of oxygen and glutathione (by spectrofluorimetric assay) was measured. In vivo, efficacy on tumor growth was assessed in mice grafted with CT26 colon cancer cells. The effects on induced neurotoxicity were measured by specific behavioral Von Frey nociception, cold-plate tests, specific functional neuromuscular assay and electron microscopy. In vitro, MAG induced a production of hydrogen peroxide in all cells. At 24 h-incubation, MAG exhibits a cytotoxic activity in all cell lines. A cytotoxic additive effect of MAG and oxaliplatin was observed through oxidative burst. In vivo, oxaliplatin-treated mice associated with MAG did not counteract oxaliplatin's antitumoral efficacy. After 4 weeks of treatment with oxaliplatin combined with MAG, behavioral and functional tests showed a decrease in peripheral neuropathy induced by oxaliplatin in vivo. Electron microscopy analyses on sciatic nerves revealed an oxaliplatin-induced demyelination which is prevented by the association of MAG to this chemotherapy. In conclusion, MAG prevents the appearance of sensitive axonal neuropathy and neuromuscular disorders induced by oxaliplatin without affecting its antitumor activity.
Insights
SuperOxide Dismutase (SOD) mimetics show promise in cancer treatment. A new SOD mimic, MAG, effectively prevents oxaliplatin-induced peripheral neuropathy without compromising anti-tumor efficacy.
Area of Science:
- Biochemistry
- Oncology
- Neuroscience
Background:
- Oxidative stress differs between normal and cancer cells, offering therapeutic targets.
- SuperOxide Dismutase (SOD) mimetics leverage this differential for anti-tumor and neuroprotective effects.
- Oxaliplatin, a common chemotherapy, causes significant peripheral neuropathy.
Purpose of the Study:
- To evaluate the neuroprotective efficacy of a novel SOD mimic, MAG.
- To assess MAG's impact on oxaliplatin-induced neurotoxicity and its effect on anti-tumor activity.
Main Methods:
- In vitro studies on colon cancer cells and normal fibroblasts assessed cell viability and oxidative stress markers.
- In vivo studies in mice evaluated MAG's effect on tumor growth and oxaliplatin-induced neurotoxicity using behavioral and functional assays.
- Electron microscopy examined sciatic nerve damage.
Main Results:
- MAG demonstrated cytotoxic activity in vitro and induced hydrogen peroxide production.
- MAG combined with oxaliplatin did not reduce the chemotherapy's anti-tumor efficacy.
- MAG significantly decreased oxaliplatin-induced peripheral neuropathy, preventing demyelination in sciatic nerves.
Conclusions:
- MAG effectively prevents chemotherapy-induced peripheral neuropathy and neuromuscular disorders.
- MAG preserves the anti-tumor activity of oxaliplatin, suggesting a potential synergistic therapeutic approach.
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