Clinical Trials Logo

Clinical Trial Summary

Successful treatment of lung cancer with radiation therapy requires that the physicians determine exactly where the tumor is in the patient's body and seek to limit any unnecessary radiation to normal parts of the body. This study is designed to apply functional imaging, Fluorodeoxyglucose-Positron Emission Tomography (FDG-PET) ("a PET scan") and Ventilation/Perfusion Single Photon Emission Computerized Tomography (V/Q SPECT) ("a perfusion scan"), before treatment and then again during treatment to see if this scanning helps predict how well the treatment works and how well the lung functions during treatment. FDG-PET is a modern technology that uses small amounts of a radioactive glucose (FDG) to make images of the whole body and areas of active cancer. V/Q SPECT is an image mapping tool that helps assess how well the lungs are working. A Computerized Tomography (CT) will also be performed along with both of these procedures to help the researchers see clearly where the cancer or the healthy lung is located. The researchers are also doing blood and urine tests in this study to look for markers to see if this helps them determine the patient's risk of developing side effects from radiation to the lungs. The researchers hope by using these types of tests that they can have more information to help decrease the amount of toxicity patients have from this type of treatment. The researchers hope that this study will help them in the future to design radiation treatment plans that provide the best treatment for each individual patient.


Clinical Trial Description

This is a pilot study to improve local tumor control while maintaining the same rate of treatment toxicity by adapting therapy to the uninvolved lung and esophagus while continuing to adapt therapy to the tumor for patients with Stage II/III NSCLC. Lung cancer is the leading cause of cancer death in the United States and worldwide. In 2012, there were 226,160 new cases and 160,340 deaths related to lung cancer in the United States. Approximately, 80-85% of lung cancers are NSCLC (Non-small Cell Lung Cancer), and 40% of these are locally advanced (stage II/III) at diagnosis. The current standard of care for these patients is "one size fits all" RT (Radiation Therapy) with concurrent chemotherapy in uniform regimens. Even after concurrent chemoradiation, however, the five year overall survival was still about 15%; almost one half of the patients failed locally. At the same time, intensification of both radiotherapy and concurrent chemotherapy may result in excessive toxicity or incomplete treatment. Therefore, it is critical to tailor the treatment to each individual's sensitivity in combination with functional imaging guided response-driven treatment and biomarker guided individualized dose prescription, thus taking into consideration both the tumor and toxicity profile. Evidence suggests that high-dose radiation has the potential to improve local-regional control and overall survival in patients treated with fractionated therapy with concurrent chemotherapy. However, it is challenging to deliver high dose RT in the majority of patients with locally advanced NSCLC without exceeding doses to organs at risk and causing significant side effects. Investigators hypothesized that they could develop safer and more effective therapy by adapting treatment to the individual patient's response. With respect to the tumor, investigators hypothesized, that they could improve outcome by redistributing dose to the more aggressive regions of the tumor, assessed using mid-treatment FDG-PET (Positron Emission Tomography) scanning. With respect to uninvolved organs, investigators need methods of estimating tolerable radiation doses for the individual patient rather than the population average. Such a strategy requires assessing both global and regional normal lung function and the technology to deliver dose in a manner that minimizes damage to functional lung and esophagus. During-RT FDG-PET/CT potentially can provide important benefits to individual patients by intensifying dose to more resistent tumor, allowing early changes to alternative, more efficacious treatment or by avoiding the unnecessary toxicity related to ineffective therapy. Patients will also undergo a during treatment V/Q SPECT (Single-photon Emission Computed Tomography) scan, as an adaptive plan based on during-treatment SPECT may further optimize PART (Personalized Adaptive Radiotherapy) to avoid high dose radiation to the well-functioning regions, and would thus decrease RILT (Radiation Induced Lung Toxicity). The combination of pre- and during V/Q SPECT can classify the lung into different functional regions, and a strategy to give differential priority to the regions has been developed to minimize lung damage. Investigators plan to continue to collect data on serum biomarkers to further refine their biophysical model with the ultimate goal of individualizing radiation dose prescription. By identifying high risk patients and adjusting OAR (Organs at Risk) dose limits to the threshold of tolerance, investigators anticipate a significant reduction in the incidence of toxicity from UMCC 2007.123 (NCT01190527) without compromised tumor control by applying the model to optimize radiation planning. ;


Study Design


Related Conditions & MeSH terms


NCT number NCT02492867
Study type Interventional
Source University of Michigan Rogel Cancer Center
Contact
Status Completed
Phase N/A
Start date January 14, 2016
Completion date April 21, 2022

See also
  Status Clinical Trial Phase
Completed NCT04879849 - A Study of TAK-676 With Pembrolizumab After Radiation Therapy to Treat a Number of Cancers Phase 1
Completed NCT04426825 - A Study of Atezolizumab in Combination With Bevacizumab in Patients With EGFR Mutation Positive Stage IIIB-IV Non-Squamous Non-Small Cell Lung Cancer Phase 2
Terminated NCT03166631 - A Trial to Find the Safe Dose for BI 891065 Alone and in Combination With BI 754091 in Patients With Incurable Tumours or Tumours That Have Spread Phase 1
Completed NCT02864394 - Study of Pembrolizumab Versus Docetaxel in Participants Previously Treated for Non-Small Cell Lung Cancer (MK-3475-033/KEYNOTE-033) Phase 3
Completed NCT02810457 - Evaluation of FKB238 and Avastin in Patients With Advanced/Recurrent Non-squamous Non-small Cell Lung Cancer Phase 3
Recruiting NCT04592523 - A Study of Usage of Brigatinib in the Treatment of Adult Participants for Approved Indications In South Korea
Recruiting NCT04838548 - A Study to Evaluate the Efficacy and Safety of MRG003 in Patients With EGFR-Positive Advanced Non-Small Cell Lung Cancer Phase 2
Recruiting NCT04077463 - A Study of Lazertinib as Monotherapy or in Combination With Amivantamab in Participants With Advanced Non-small Cell Lung Cancer Phase 1
Recruiting NCT05167604 - Clinical Value of MRD Monitoring for Adjuvant Therapy in Postoperative NSCLC
Recruiting NCT04603807 - A Study to Compare the Efficacy and Safety of Entrectinib and Crizotinib in Participants With Advanced or Metastatic ROS1 Non-small Cell Lung Cancer (NSCLC) With and Without Central Nervous System (CNS) Metastases Phase 3
Completed NCT04948411 - Durvalumab as Maintenance in Patients Who Received Chemoradiotherapy for Unresectable Stage III NSCLC: Real World Data From an Expanded Access Program in Brazil
Active, not recruiting NCT04487080 - A Study of Amivantamab and Lazertinib Combination Therapy Versus Osimertinib in Locally Advanced or Metastatic Non-Small Cell Lung Cancer Phase 3
Not yet recruiting NCT04255836 - Durvalumab Combined With Chemotherapy and Stereotactic Body Radiotherapy (SBRT) in Patients With Oligometastatic Non-small Cell Lung Cancer (NSCLC) Phase 2
Completed NCT01953913 - Afatinib (BIBW 2992) in Advanced Non-Small Cell Lung Cancer Patients With EGFR Mutation Phase 3
Recruiting NCT05715229 - Immune Profile Selection By Fraction of ctDNA in Patients With Advanced NSCLC Treated With Immunotherapy Phase 2
Recruiting NCT04931654 - A Study to Assess the Safety and Efficacy of AZD7789 in Participants With Advanced or Metastatic Solid Cancer Phase 1/Phase 2
Suspended NCT05421936 - Osimertinib for NSCLC With Uncommon EGFR Mutations
Completed NCT02847377 - A Positron Emission Tomography (PET) Imaging Agent [18F]-ODS2004436 as a Marker of EGFR Mutation in Subjects With NSCLC N/A
Completed NCT04427072 - Study of Capmatinib Efficacy in Comparison With Docetaxel in Previously Treated Participants With Non-small Cell Lung Cancer Harboring MET Exon 14 Skipping Mutation Phase 3
Recruiting NCT04823377 - Impact of a Process Optimizing the Decision to Continue or Stop Cancer Treatments in Patients With Advanced Non-small Cell Lung Cancer. N/A