The trial evaluates the value of radiation dose escalation based on Hypoxia detection by 18F\_misonidazole Positron Emission Tomography (18F-MISO-PET) for primary radiochemotherapy of head and neck squamous cell carcinoma. Patients negative for human papillomavirus (HPV) and with hypoxic tumours after 2 weeks of radiochemotherapy are randomized to completion of standard radiochemotherapy or radiochemotherapy with escalated radiation dose. An additional interventional arm includes a carbon ion boost. HPV positive tumours can be included in a control arm. Primary endpoint is local tumour control 2 years after radiochemotherapy.
Previous preclinical data and a prospective validated patient cohort have shown that patients with head and neck squamous cell carcinoma, whose tumours are hypoxic after 2 weeks of primary radiochmeotherapy, have a significantly lower chance of locoregional tumour control. The multi-center trial evaluates the value of radiation dose escalation based on hypoxia detection by 18F\_misonidazole Positron Emission Tomography (18F-MISO-PET) for primary radiochemotherapy of head and neck squamous cell carcinoma. Patients negative for human papillomavirus (HPV) and with hypoxic tumours after 2 weeks of radiochemotherapy are randomized to completion of standard radiochemotherapy (70 Gy) or radiochemotherapy with escalated radiation dose (77 Gy). An additional interventional arm includes a carbon ion boost to 77 Gy. HPV positive tumours can be included in a control arm. Primary endpoint is local tumour control 2 years after radiochemotherapy. Secondary endpoints include acute and late toxicity (CTCAE 5.0), regional tumor control, overall survival, disease free survival, distant metastases, kinetics analysis of dynamic FMISO-PET scans, Quality of life (QoL). The hypothesis is that local tumour control 2 years after radiochemotherapy is higher in the dose escalated compared to the control arm.
Study Type
INTERVENTIONAL
Allocation
RANDOMIZED
Purpose
TREATMENT
Masking
NONE
Enrollment
276
Patients will receive simultaneous radiochemotherapy, however the simultaneous chemotherapy is standard and not part of the evaluation in this trial. Present standard chemotherapy is cisplatinum 40 mg/m²/week (chemotherapy over the whole course of radiotherapy). Radiotherapy is applied to doses of 54 Gy(RBE)/ 1.8 Gy(RBE) per fraction to the adjuvant region, 70 Gy(RBE)/ 2 Gy(RBE) per fraction to the tumor and involved lymphonodes and, if "hypoxic" and randomized to the intervention arm, 77 Gy(RBE)/ 2.2 Gy(RBE) per fraction to the primary tumor and lymphonode metastases \> 2 cm. Radiotherapy is always applied with 5 fractions per week.
Patients will receive simultaneous radiochemotherapy, however the simultaneous chemotherapy is standard and not part of the evaluation in this trial. Radiotherapy is applied to doses of 54 Gy(RBE)/ 1.8 Gy(RBE) per fraction to the adjuvant region, 70 Gy(RBE)/ 2 Gy(RBE) per fraction to the tumor and involved lymphonodes and, if "hypoxic" and treated in the study site Heidelberg, 77 Gy(RBE)/ 2.2 Gy(RBE) per fraction to the primary tumor and lymphonode metastases \> 2 cm using a carbon ion boost. Radiotherapy is always applied with 5 fractions per week.
Patients will receive simultaneous radiochemotherapy, however the simultaneous chemotherapy is standard and not part of the evaluation in this trial. Present standard chemotherapy is cisplatinum 40 mg/m²/week (chemotherapy over the whole course of radiotherapy). Radiotherapy is applied to doses of 54 Gy(RBE)/ 1.8 Gy(RBE) per fraction to the adjuvant region and 70 Gy(RBE)/ 2 Gy(RBE) per fraction to the tumor and involved lymphonodes. Radiotherapy is always applied with 5 fractions per week.
Medical Faculty, Albert-Ludwigs-Universität Freiburg, Department of Radiation Oncology
Freiburg im Breisgau, Baden-Wurttemberg, Germany
Department of Radiation Oncology Heidelberg University Medical School
Heidelberg, Baden-Wurttemberg, Germany
Universitätsmedizin Mannheim, Klinik für Strahlentherapie und Radioonkologie
Mannheim, Baden-Wurttemberg, Germany
Uniklinikum Wuerzburg
Würzburg, Bavaria, Germany
Mechthild Krause
Dresden, Saxony, Germany
Universitätsklinikum Leipzig
Leipzig, Saxony, Germany
Charité University Hospital
Berlin, Germany
Ludwig-Maximilian-Universität, Klinikum Großhadern
München, Germany
local tumour control
Local tumour control (MRI, CT, PET or clinical evaluation) in the randomized dose-escalated arm compared to the randomized non dose escalated arm (arms 1 and 2).
Time frame: Local tumor control 2 years after end of treatment
late toxicity
late toxicity based on CTCAE 5.0
Time frame: 30 days to 2 years after radiochemotherapy
survival
Overall survival
Time frame: 2 years after radiochemotherapy
quality of life EORTC QLQ-C30/HN-35
EORTC-QLQ (C30 and HN-35) Sheets (General for tumour diseases and specific for head and neck cancer)
Time frame: regularly up to 2 years after radiochemotherapy
acute toxicity
acute toxicity based on CTCAE 5.0
Time frame: during treatment and up to 30 days after radiochemotherapy
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