DOSAGE Study: Upfront Dose-Reduced Chemotherapy in Older Patients with Metastatic Colorectal Cancer
Summary
The goal of this phase III, open-label, non-inferiority randomized controlled clinical trial is compare upfront dose-reduced chemotherapy with the standard dose chemotherapy in older patients ( ≥70 years) with metastasized colorectal cancer, with regard to progression-free survival (PFS). The choice between monotherapy (a fluoropyrimidine) and doublet chemotherapy (a fluoropyrimidine with oxaliplatin) will be made for each individual patient based on expected risk of chemotherapy toxicity (according to the G8 screening). Patients classified as low risk of toxicity will be randomized between doublet chemotherapy in either full-dose, or with an upfront dose-reduction of 25%. Patients classified as high risk will be randomized between monotherapy in either full-dose or upfront dose-reduction. Primary outcome is PFS. Secondary endpoints include grade ≥3 toxicity, QoL, physical functioning, overall survival, number of treatment cycles, dose reductions, hospital admissions, cumulative received dosage and cost-effectiveness.
Timeline
- Start
- 2024-07-01
- Primary completion
- 2028-06
- Completion
- 2028-12
Drugs
| Evaluation | Drug | Modality | Dose | Route |
|---|---|---|---|---|
| Subject | Capecitabine | Small molecule | 750 mg/m2 | Oral |
| Subject | Capecitabine | Small molecule | 1000 mg/m2 | Oral |
| Subject | Oxaliplatin | Small molecule | 63.75 mg/m2 | — |
| Subject | Oxaliplatin | Small molecule | 85 mg/m2 | — |
| Subject | Oxaliplatin | Small molecule | 97.5 mg/m2 | — |
| Subject | Oxaliplatin | Small molecule | 130 mg/m2 | — |
| Subject | fluorouracil | Small molecule | 300 mg/m2 | Intravenous |
| Subject | fluorouracil | Small molecule | 400 mg/m2 | Intravenous |
| Subject | fluorouracil | Small molecule | 1800 mg/m2 | Intravenous |
| Subject | fluorouracil | Small molecule | 2400 mg/m2 | Intravenous |
| Background | Leucovorin | Small molecule | 300 mg/m2 | — |
| Background | Leucovorin | Small molecule | 400 mg/m2 | — |