Key result
Intravenous calcium and magnesium did not significantly reduce cumulative oxaliplatin-induced sensory neurotoxicity compared to placebo in patients with colon cancer undergoing FOLFOX therapy.
Why the study?
Does intravenous calcium and magnesium prevent oxaliplatin-induced sensory neurotoxicity in patients with colon cancer undergoing adjuvant FOLFOX therapy?
RCT (n=353)
Double-Blind
randomly assigned
Does intravenous calcium and magnesium prevent oxaliplatin-induced sensory neurotoxicity in patients with colon cancer undergoing adjuvant FOLFOX therapy?
Intravenous calcium and magnesium do not protect against oxaliplatin-induced neurotoxicity in patients with colon cancer receiving FOLFOX therapy.
Calcium/magnesium does not reduce oxaliplatin neurotoxicity in adjuvant colon cancer; challenges prior nonrandomized data and should not be used.
PURPOSE: Cumulative neurotoxicity is a prominent toxicity of oxaliplatin-based therapy. Intravenous calcium and magnesium have been extensively used to reduce oxaliplatin-induced neurotoxicity. This trial was designed to definitively test whether calcium/magnesium decreases oxaliplatin-related neurotoxicity. PATIENTS AND METHODS: In all, 353 patients with colon cancer undergoing adjuvant therapy with FOLFOX (fluorouracil, leucovorin, and oxaliplatin) were randomly assigned to intravenous calcium/magnesium before and after oxaliplatin, a placebo before and after, or calcium/magnesium before and placebo after. The primary end point was cumulative neurotoxicity measured by the sensory scale of the European Organisation for Research and Treatment of Cancer Quality of Life Questionnaire-Chemotherapy-Induced Peripheral Neuropathy 20 tool. RESULTS: There were no statistically significant neuropathy differences among the study arms as measured by the primary end point or additional measures of neuropathy, including clinician-determined measurement of the time to grade 2 neuropathy by using the National Cancer Institute Common Terminology Criteria for Adverse Events scale or an oxaliplatin-specific neuropathy scale. In addition, calcium/magnesium did not substantially decrease oxaliplatin-induced acute neuropathy. CONCLUSION: This study does not support using calcium/magnesium to protect against oxaliplatin-induced neurotoxicity.
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Loprinzi et al. (2013) conducted an RCT in Colon cancer (n=353). Intravenous calcium and magnesium vs. Placebo was evaluated on Cumulative neurotoxicity measured by the sensory scale of the European Organisation for Research and Treatment of Cancer Quality of Life Questionnaire-Chemotherapy-Induced Peripheral Neuropathy 20 tool. Intravenous calcium and magnesium did not significantly reduce cumulative oxaliplatin-induced sensory neurotoxicity compared to placebo in patients with colon cancer undergoing FOLFOX therapy.
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