Individualized Dose Prescription in Advanced Stage Lung Cancer Patients Using Modern (Chemo)Radiotherapy (IDEAL-VMAT)
Primary Purpose
Stage III Non-small Cell Lung Cancer, Individualized Radiation Dose Escalation
Status
Terminated
Phase
Phase 2
Locations
Netherlands
Study Type
Interventional
Intervention
Individualized dose escalation
Sponsored by

About this trial
This is an interventional treatment trial for Stage III Non-small Cell Lung Cancer focused on measuring stage III NSCLC, (chemo)radiotherapy, individualized dose-escalation
Eligibility Criteria
Inclusion Criteria:
- Histologically or cytologically confirmed stage IIIA/B NSCLC (excluding pleural effusion and mixed pathology)
- Irresectable disease (as assessed by multidisciplinary team) or patient refusing surgery
- Disease which can be encompassed within a radical radiotherapy treatment plan in keeping with standard practice at the participating center
- Proposed treatment consists of radiotherapy alone or concurrent chemoradiation
- WHO performance status 0 or 1
- Adequate respiratory function: FEV1 ≥ 1.5 L and DLCO > 40%, predicted on baseline pulmonary function tests
- Age ≥ 18 years, no upper age limit
- Estimated life expectancy of more than 6 months
- Patient is available for follow-up
- Written informed consent obtained
Exclusion Criteria:
- Clinically diagnosed NSCLC
- Previous or current malignant disease likely to interfere with the protocol treatment or comparisons
- Prior thoracic radiotherapy
- Proposed treatment consist of sequential chemoradiation
- Prior lobectomy / pneumonectomy
- Prior chemotherapy using gemcitabine or bleomycine
- Superior sulcus tumors if the brachial plexus is within the high-dose volume
- Medically unstable (e.g., ischaemic heart disease, esophageal disorders)
- Pregnancy
- Connective tissue disorders
- Abnormal kidney function interfering with administration of iv contrast agent (GFR<60)
- Uncontrolled diabetes mellitus hampering 18FDG-PET
- Inability to comply with protocol or trial procedures
Sites / Locations
- Radboud University Nijmegen Medical Centre
Arms of the Study
Arm 1
Arm Type
Experimental
Arm Label
Individualized dose escalation
Arm Description
Individualized dose escalation on the basis of the dose to the organs at risk.
Outcomes
Primary Outcome Measures
Pulmonary toxicity grade 2-4
Esophageal toxicity grade 2-4
Secondary Outcome Measures
Increase in tumor control probability (TCP)
Local-regional failure
Progression-free survival
Quality of life
Overall survival
Full Information
NCT ID
NCT01577212
First Posted
March 16, 2012
Last Updated
November 6, 2015
Sponsor
Radboud University Medical Center
1. Study Identification
Unique Protocol Identification Number
NCT01577212
Brief Title
Individualized Dose Prescription in Advanced Stage Lung Cancer Patients Using Modern (Chemo)Radiotherapy
Acronym
IDEAL-VMAT
Official Title
Individualized Dose Escalation for Non-small Cell Lung Cancer (NSCLC) Using Volumetric Modulated Arc Therapy (VMAT)
Study Type
Interventional
2. Study Status
Record Verification Date
November 2015
Overall Recruitment Status
Terminated
Why Stopped
Lack of accrual
Study Start Date
March 2012 (undefined)
Primary Completion Date
September 2014 (Actual)
Study Completion Date
September 2014 (Actual)
3. Sponsor/Collaborators
Responsible Party, by Official Title
Principal Investigator
Name of the Sponsor
Radboud University Medical Center
4. Oversight
Data Monitoring Committee
Yes
5. Study Description
Brief Summary
The aim of this present study is to test the feasibility and toxicity of individualized hypofractionated radiotherapy, and to report outcome data. In case this phase II trial has favorable results, a phase II/III trial on maximally tolerable, individualized, hypofractionated radiotherapy within a shorter overall-treatment time is aimed for.
Detailed Description
In the Netherlands, approximately 10.000 new patients are diagnosed with lung cancer every year. Of these, 80% present with non-small-cell lung cancer. Between 1995 and 2008, the national incidence has risen with 16% caused by an impressive increase of 53% in women suffering from this disease. The aggressive nature of this disease leads to a one-year survival rate of 45% and a 5-year survival rate of only 14%.
It is widely accepted that surgery provides the best chance of cure in patients with operable NSCLC (www.oncoline.nl). In practice, only 20% of patients are amenable for tumor resection with curative intent. Alternatively, stereotactic body radiation therapy (SBRT) results in excellent local control in localized early stage disease.
In locally advanced, inoperable disease, combined chemotherapy and external-beam radiotherapy (EBRT) are increasingly being used. Evidence suggests that concurrent schedules are more effective than sequential treatments despite increased toxicity, although the true magnitude of the additional benefit remains uncertain. However, a large number of patients with locally advanced NSCLC is not suitable for concurrent chemoradiotherapy due to their general condition, age, comorbidity or tumor-related factors. Therefore, there is a need to increase effectiveness of treatment for all patients with advanced stage NSCLC undergoing either radiotherapy alone, neoadjuvant chemotherapy followed by radiotherapy, or concurrent treatment.
Apart from the addition of chemotherapy, treatment modification by intensification of the radiotherapy schedule or by dose escalation has been proven beneficial. Several phase I/II trials explored altered EBRT fractionation schedules that increased the biological effective dose to the primary tumor and reduced local relapse rate. Thereby, two main principles were pursued: reduction of the dose per fraction (≤ 1.8 Gy), giving two or three fractions per day (so-called hyperfractionation), aimed at sparing normal tissues while increasing the dose to the primary tumor; increase of the fraction dose (≥ 2 Gy), combined with a reduction in the total number of fractions (so-called hypofractionation) aimed at increasing the effective tumor dose in less radiation-sensitive primary tumors. On the one hand, hyperfractionation limits the treatment-related side-effects, on the other hypofractionation is attractive for the patient and radiation department as the number of treatment fractions can be reduced.
Intensification of the irradiation schedule by continuous, hyperfractionated radiotherapy (CHART) delivered in 12 consecutive days showed an absolute improvement in two-year survival. With the advent of highly conformal dose planning and delivery techniques during the last decade (i.e., 3-dimensional conformal radiation therapy, 3D-CRT; intensity-modulated radiation therapy, IMRT; volumetric-modulated arc therapy, VMAT/RapidArc; Tomotherapy), organ-sparing technology became widely available. Recently, van Baardwijk and collaborators published an individualized dose prescription study in 166 stage-III NSCLC patients. Already in 2006, Belderbos et al. reported favorable toxicity data and an encouraging failure-free interval in 88 inoperable NSCLC patients treated with intensified, hypofractionated 3D-CRT based on the MTD to the lung.
Apart from these reported studies, there are three hypofractionation trials being conducted elsewhere. In the UK, two 3D-CRT based phase I/II trials have been approved investigating individualized dose escalation based on normal tissue dose constraints in patients with stage II or stage III NSCLC (ISRCTN12155469 and I-START; CRUK/10/005). In the US, the University of Wisconsin is conducting a helical tomotherapy-based hypofractionation study (NCT00214123) with pulmonary toxicity (pneumonitis grade 3 lasting for more than 2 weeks) as primary endpoint.
The reported hypo- and hyperfractionation studies have a 'trial-and-error' approach for dose-level estimation in common. In a recent in silico trial in 26 stage III NSCLC patients, we have investigated the use of a dedicated software tool for individual dose escalation by hypofractionation. Based on an existing, clinical IMRT/VMAT treatment plan (66 Gy in 33 fractions), radiation dose was escalated by scaling the radiation dose until the maximum tolerated dose constraints for the healthy lung, the esophagus, spinal cord, brachial plexus or heart was met. The aim of this present study is to test the feasibility and toxicity of individualized hypofractionated radiotherapy, and to report outcome data. In case this phase II trial has favorable results, a phase II/III trial on maximally tolerable, individualized, hypofractionated radiotherapy within a shorter overall-treatment time is aimed for.
6. Conditions and Keywords
Primary Disease or Condition Being Studied in the Trial, or the Focus of the Study
Stage III Non-small Cell Lung Cancer, Individualized Radiation Dose Escalation
Keywords
stage III NSCLC, (chemo)radiotherapy, individualized dose-escalation
7. Study Design
Primary Purpose
Treatment
Study Phase
Phase 2
Interventional Study Model
Single Group Assignment
Masking
None (Open Label)
Allocation
N/A
Enrollment
6 (Actual)
8. Arms, Groups, and Interventions
Arm Title
Individualized dose escalation
Arm Type
Experimental
Arm Description
Individualized dose escalation on the basis of the dose to the organs at risk.
Intervention Type
Radiation
Intervention Name(s)
Individualized dose escalation
Intervention Description
Individualized dose escalation on the basis of the maximally tolerable dose to organs at risk - lung, esophagus, spinal cord, heart, brachial plexus
Primary Outcome Measure Information:
Title
Pulmonary toxicity grade 2-4
Time Frame
2 years
Title
Esophageal toxicity grade 2-4
Time Frame
2 years
Secondary Outcome Measure Information:
Title
Increase in tumor control probability (TCP)
Time Frame
2 years
Title
Local-regional failure
Time Frame
2 years
Title
Progression-free survival
Time Frame
2 years
Title
Quality of life
Time Frame
2 years
Title
Overall survival
Time Frame
2 years
10. Eligibility
Sex
All
Minimum Age & Unit of Time
18 Years
Maximum Age & Unit of Time
85 Years
Accepts Healthy Volunteers
No
Eligibility Criteria
Inclusion Criteria:
Histologically or cytologically confirmed stage IIIA/B NSCLC (excluding pleural effusion and mixed pathology)
Irresectable disease (as assessed by multidisciplinary team) or patient refusing surgery
Disease which can be encompassed within a radical radiotherapy treatment plan in keeping with standard practice at the participating center
Proposed treatment consists of radiotherapy alone or concurrent chemoradiation
WHO performance status 0 or 1
Adequate respiratory function: FEV1 ≥ 1.5 L and DLCO > 40%, predicted on baseline pulmonary function tests
Age ≥ 18 years, no upper age limit
Estimated life expectancy of more than 6 months
Patient is available for follow-up
Written informed consent obtained
Exclusion Criteria:
Clinically diagnosed NSCLC
Previous or current malignant disease likely to interfere with the protocol treatment or comparisons
Prior thoracic radiotherapy
Proposed treatment consist of sequential chemoradiation
Prior lobectomy / pneumonectomy
Prior chemotherapy using gemcitabine or bleomycine
Superior sulcus tumors if the brachial plexus is within the high-dose volume
Medically unstable (e.g., ischaemic heart disease, esophageal disorders)
Pregnancy
Connective tissue disorders
Abnormal kidney function interfering with administration of iv contrast agent (GFR<60)
Uncontrolled diabetes mellitus hampering 18FDG-PET
Inability to comply with protocol or trial procedures
Overall Study Officials:
First Name & Middle Initial & Last Name & Degree
Jan Bussink, MD PhD
Organizational Affiliation
Radboud University Medical Center
Official's Role
Principal Investigator
First Name & Middle Initial & Last Name & Degree
Esther GC Troost, MD PhD
Organizational Affiliation
Radboud University Medical Center
Official's Role
Principal Investigator
First Name & Middle Initial & Last Name & Degree
Robin Wijsman, MD
Organizational Affiliation
Radboud University Medical Center
Official's Role
Principal Investigator
First Name & Middle Initial & Last Name & Degree
Aswin L Hoffmann, MSc
Organizational Affiliation
Maastro Clinic, The Netherlands
Official's Role
Principal Investigator
First Name & Middle Initial & Last Name & Degree
Lioe-Fee de Geus-Oei, MD PhD
Organizational Affiliation
Radboud University Medical Center
Official's Role
Principal Investigator
Facility Information:
Facility Name
Radboud University Nijmegen Medical Centre
City
Nijmegen
ZIP/Postal Code
6500 HB
Country
Netherlands
12. IPD Sharing Statement
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Individualized Dose Prescription in Advanced Stage Lung Cancer Patients Using Modern (Chemo)Radiotherapy
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