The standard or usual treatment for this disease is pembrolizumab given by needle into the veins (IV). Some cancers shed DNA (circulating tumour DNA or ctDNA) or genes (biomarkers) into the blood, and levels of these biomarkers may be able to tell researchers how people respond to treatment with pembrolizumab before they feel worse, or the cancer is worse on imaging tests. Researchers are studying how levels of these biomarkers can show how cancers are responding to treatment and whether adding chemotherapy to pembrolizumab based on detection of ctDNA can offer better results.
This study is being done in two stages. Participants are being invited to participate in stage 2. The purpose of stage 1 of the study was to find out how soon ctDNA disappears from blood in patients with lung cancer treated with pembrolizumab and whether ctDNA disappearance or continued detection related to how well people did. In stage 2 the study will use the blood tests to figure out if patients on treatment with pembrolizumab with ctDNA that is still detected in the blood after 6 weeks of pembrolizumab could do better by adding standard chemotherapy treatment before the cancer is worse compared to continuing on standard pembrolizumab without added chemotherapy.
Study Type
INTERVENTIONAL
Allocation
RANDOMIZED
Purpose
TREATMENT
Masking
NONE
Enrollment
53
Per current Product Monograph/U.S. Drug Label and/or local guidelines.
The University of Chicago Medical Center
Chicago, Illinois, United States
The Sidney Kimmel Comprehensive Cancer Centre
Baltimore, Maryland, United States
Cross Cancer Institute
Edmonton, Alberta, Canada
Stage 1: Concordance rate between molecular response and radiologic response
Molecular response will be assessed by measuring changes in ctDNA levels in plasma
Time frame: 18 months
Stage 2: Phase II Progression-Free Survival (PFS)
Time frame: 3 years
Stage 2: Phase III Overall Survival
Time frame: 3 years
Stage 1: Time to molecular response
Time frame: 18 months
Stage 1: Correlate molecular response to RECIST response based on changes in ctDNA levels
Time frame: 18 months
Stage 1: Correlate molecular response to progression-free survival based on changes in ctDNA levels
Time frame: 18 months
Stage 1: Correlate molecular response to overall survival based on changes in ctDNA levels
Time frame: 18 months
Stage 1: Explore the degree of ctDNA reduction with clinical outcomes assessed by measuring changes in ctDNA levels in plasma
Time frame: 18 months
Stage 2: Phase II - Feasibility defined as screening success greater than 30% of patients screened have persistent ctDNA post 6 weeks of pembrolizumab
Time frame: 3 years
Stage 2: Phase II - Feasibility defined as accrual reaching 50% of project accrual by month 18 post randomization
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BCCA - Vancouver
Vancouver, British Columbia, Canada
Health Sciences North
Greater Sudbury, Ontario, Canada
Juravinski Cancer Centre at Hamilton Health Sciences
Hamilton, Ontario, Canada
Kingston Health Sciences Centre
Kingston, Ontario, Canada
Ottawa Hospital Research Institute
Ottawa, Ontario, Canada
Algoma District Cancer Program
Sault Ste. Marie, Ontario, Canada
University Health Network
Toronto, Ontario, Canada
...and 1 more locations
Time frame: 3 years
Stage 2: Phase II - Feasibility defined as acceptance of randomization defined as >/= 80% of consenting patients accept randomization
Time frame: 3 years
Stage 2: Phase II - clinical efficacy endpoints of best overall response rate post randomization
Time frame: 3 years
Stage 2: Phase II - Number and severity of adverse events assessed by CTCAE v5
Time frame: 3 years
Stage 2: Phase III - Clinical efficacy endpoints of best overall RECIST response rate post-randomization
Time frame: 3 years
Stage 2: Phase III - Clinical efficacy endpoints of response duration
Time frame: 3 years
Stage 2: Phase III - Clinical efficacy endpoints of progression-free survival
Time frame: 3 years
Stage 2: Phase III - Number and severity of adverse events assessed by CTCAE v5
Time frame: 3 years