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Outcome Prediction in Head&Neck Cancer Patients After Radiotherapy

Outcome Prediction in Head&Neck Cancer Patients After Radiotherapy Using Multi-parameter Modelling: Disease Control, Toxicity and Quality of Life

Status
Recruiting
Phases
Unknown
Study type
Observational
Source
ClinicalTrials.gov
Registry ID
NCT01985984
Acronym
OutcomeH&N
Enrollment
1000
Registered
2013-11-18
Start date
2012-07-31
Completion date
2030-01-31
Last updated
2025-08-14

For informational purposes only — not medical advice. Sourced from public registries and may not reflect the latest updates. Terms

Conditions

Head and Neck Cancer

Keywords

Head and neck cancer

Brief summary

The primary and general objective of the clinical introduction of the Standard Follow-up Program (SFP) as the current standard of care is to improve the quality of radiotherapy for head and neck cancer patients by reducing radiation-induced side effects without hampering treatment efficacy in terms of locoregional tumour control and overall survival and to systematically evaluate the beneficial effect of newly introduced radiation technology for this particular group of patients. The clinical introduction of the SFP will allow for a systematic and broad scale quality improvement cycle for head and neck cancer patients treated with radiotherapy. In fact, this methodology can be considered a kind of quality circle for the clinical introduction of new radiation techniques, aiming at continuous efforts for further improvement.

Detailed description

For head and neck squamous cell carcinoma (HNSCC), radiation therapy is one of the mainstays of therapy either as definitive therapy alone or in combination with systemic therapy or following surgical resection as postoperative treatment. Nowadays there's great attention for personalized medicine which aims at offering a patient the treatment that best suits the individual patient and its tumor characteristics. To apply personalized therapy, we need accurate outcome prediction models for disease control, treatment related toxicity and quality of life. The main factors used for predictive/prognostic nomograms are clinical factors, like patient-, tumor- and treatment related factors (1). Standard examples of these include age, gender, co-morbidity, smoking history, hemoglobin levels, tumor site, TNM stage, tumor volume, HPV-status, and others. For larynx cancer the nomogram was made publicly available on www.predictcancer.org. However, we anticipate that other factors will contribute to the (improvement of) prediction models. These factors may include genomic analysis of tumor specimens, quantitative image analysis (radiomics), blood biomarkers, and/or tumor-tissue markers (2). In addition, treatment-related parameters also need to be considered and these not only include factors like overall treatment time, use of systemic therapy, prescribed radiation dose and fraction dose. With new techniques using EPID dosimetry, it is now possible to measure the delivered radiation dose and compare this to the prescribed dose (3,4). This offers the potential to apply Dose Guide RadioTherapy (DGRT), which especially in HNSCC may have a large impact, because anatomical changes during fractionated therapy are known to occur and lead to dose changes to targets and organs at risk (5,6). The final objective of this study is to integrate all potential prognostic factors and develop reliable nomograms both for tumor control as well as complications.

Interventions

Radiation alone

RADIATIONRadiation in combination with systemic therapy

Radiation in combination with systemic therapy

Sponsors

Maastricht Radiation Oncology
Lead SponsorOTHER

Study design

Observational model
COHORT
Time perspective
PROSPECTIVE

Eligibility

Sex/Gender
ALL
Age
18 Years to No maximum
Healthy volunteers
No

Inclusion criteria

All patients planned for curatively intended primary or postoperative radiotherapy

Exclusion criteria

All patients planned for palliative radiotherapy

Design outcomes

Primary

MeasureTime frameDescription
overall survival5 yearsThe overall survival will be calculated from the first day of treatment, either the first day of induction chemotherapy or the first day of radiotherapy in case of concomitant chemoradiation or radiation alone. An event is defined as death of any cause.

Secondary

MeasureTime frameDescription
disease free survival5 years
loco-regional control5 yearsLoco-regional control will be calculated from the first day of treatment, either the first day of induction chemotherapy or the first day of radiotherapy in case of concomitant chemoradiation or radiation alone. An event is defined as local recurrence and/or regional recurrence. These two events will be separately scored.

Other

MeasureTime frameDescription
Acute and late toxicity scores, according to CTCv4.0 criteria5 years
Patient-rated symptoms and quality of life5 yearsquality of life (EORTC QLQ-C30, EORTC QLQ-H&N35, EuroQoL-EQ5D)

Countries

Netherlands

Contacts

Primary ContactF Hoebers, MD, PhD
frank.hoebers@maastro.nl+31884455666

Outcome results

None listed

Source: ClinicalTrials.gov · Data processed: Feb 4, 2026