Skip to main content
Clinical Trials/NCT00576563
NCT00576563CompletedNot Applicable

Rectal Cancer: Determination of the Predictive Value by Use of FDG-PET-CT Scans and Blood Proteins for the Prognosis of Patients With Rectal Cancer

Maastricht Radiation Oncology1 site in 1 country103 target enrollmentStarted: March 2007Last updated:
Conditions
Interventions
Drugs

Trial Snapshot

Phase
Not Applicable
Status
Completed
Sponsor
Enrollment
103
Locations
1
Primary Endpoint
The metabolic tumour response by PET scan will be determined according to the EORTC criteria (appendix 1)61. The pathological tumour response will be determined according to Dworak and Wheeler.62,63

Study Overview

Brief Summary

To investigate the evolution of the 18F-deoxyglucose (FDG) uptake and the tumour characteristics determined in the plasma of patients with rectal cancer during and after radiotherapy or combined radiotherapy and chemotherapy.

The changes of the FDG uptake of the primary tumour and the evolution of key tumour characteristics during radiotherapy alone or in combination with chemotherapy will be predictive for the pathological tumour response.

Study hypothesis The changes of the FDG uptake of the primary tumour and the evolution of key tumour characteristics during radiotherapy alone or in combination with chemotherapy will be predictive for the pathological tumour response.

Detailed Description

This translational research part is aiming to give more insights in the way radiation injury and tumour response develops.

It involves three parts:

  1. Repetitive FDG-PET-CT scans in order to assess early tumour response monitoring.

  2. Blood sampling before, during and after radiotherapy in order to find predictors for normal tissue injury and for tumour response.

  3. Extra staining of tumour biopsies.

  4. FDG-PET-CT scans The FDG-PET-CT scan with i.v. contrast gives information of the tumour metabolism and its morphology. The pre-treatment max SUV is prognostic as a high value confers a worse prognosis. Our group showed both in vitro and in vivo that a high FDG uptake is due to tumour hypoxia. The evolution of the max SUV during radiotherapy may thus be predictive for the ultimate tumour response. Therefore, two extra FDG-PET-CT scans will be done during radiotherapy for the group of patients receiving long-term radiochemotherapy: one at day 7 and one at day 14. This will enable calculation of the max SUV kinetics during treatment. Tumour response will be determined by FDG-PET-CT scans 3-5 days after the short- course of radiotherapy or 6-8 weeks after the long- term radiochemotherapy.

2 Blood samples Blood collection and processing before, during and after radiotherapy will be done according to the serum protocol. For performing ELISA's blood samples should be collected and put in the freezer. The analysis of all blood material will be performed months to years after collection and re-analysis with regard to the described protein groups may be necessary depending on the outcome.

Study Design

Study Type
Interventional
Allocation
Na
Intervention Model
Single Group
Primary Purpose
Treatment
Masking
None

Eligibility Criteria

Ages
18 Years to — (Adult, Older Adult)
Sex
All
Accepts Healthy Volunteers
No

Inclusion Criteria

  • Histological proven rectal cancer
  • UICC stage I-IV
  • WHO performance status 0-2
  • Less than 10 % weight loss in the last 6 months
  • In case of previous chemotherapy, radiotherapy can start after a minimum of 21 days after the last chemotherapy course
  • No recent (< 3 months) severe cardiac disease (arrhythmia, congestive heart failure,infarction)
  • Life expectancy more than 6 months
  • Measurable cancer
  • Willing and able to comply with the study prescriptions
  • 18 years or older
  • Not pregnant and willing to take adequate contraceptive measures during the study
  • Have given written informed consent before patient registration
  • No previous radiotherapy to the pelvis

Exclusion Criteria

  • Not adenocarcinoma histology
  • History of prior pelvis radiotherapy
  • Recent (< 3 months) myocardial infarction
  • Uncontrolled infectious disease
  • Less than 18 years old
  • Pregnant or not willing to take adequate contraceptive measures during the study

Arms & Interventions

FDG PET CT

Other

To investigate the evolution of the 18F-deoxyglucose (FDG) uptake and the tumour characteristics determined in the plasma of patients with rectal cancer during and after radiotherapy or combined radiotherapy and chemotherapy.

Intervention: FDG (Drug)

Outcomes

Primary Outcomes

The metabolic tumour response by PET scan will be determined according to the EORTC criteria (appendix 1)61. The pathological tumour response will be determined according to Dworak and Wheeler.62,63

Time Frame: 5 years

Secondary Outcomes

  • Clinical examination(weight, performance status including the CTCv3.0 scale for acute and late reactions)(5 years)

Investigators

Sponsor
Maastricht Radiation Oncology
Sponsor Class
Other
Responsible Party
Sponsor

Study Sites (1)

Loading locations...

Similar Trials