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Using 22C3 Anti-PD-L1 Antibody Concentrate on Biopsy and Cytology Samples from Non-small Cell Lung Cancer Patients
Published on: September 25, 2018
Oncogene-specific differences in tumor mutational burden, PD-L1 expression, and outcomes from immunotherapy in
Marcelo V Negrao1, Ferdinandos Skoulidis1, Meagan Montesion2
1Department of Thoracic/Head and Neck Medical Oncology, The University of Texas MD Anderson Cancer Center, Houston, Texas, USA.
Background:
Non-small cell lung cancer (NSCLC) patients bearing targetable oncogene alterations typically derive limited benefit from immune checkpoint blockade (ICB), which has been attributed to low tumor mutation burden (TMB) and/or PD-L1 levels. We investigated oncogene-specific differences in these markers and clinical outcome.
Methods:
Three cohorts of NSCLC patients with oncogene alterations (n=4189 total) were analyzed. Two clinical cohorts of advanced NSCLC patients treated with ICB monotherapy [MD Anderson (MDACC; n=172) and Flatiron Health-Foundation Medicine Clinico-Genomic Database (CGDB; n=894 patients)] were analyzed for clinical outcome. The FMI biomarker cohort (n=4017) was used to assess the association of oncogene alterations with TMB and PD-L1 expression.
Results:
High PD-L1 expression (PD-L1 ≥50%) rate was 19%-20% in classic EGFR, EGFR exon 20 and HER2-mutant tumors, and 34%-55% in tumors with ALK, BRAF V600E, ROS1, RET, or MET alterations. Compared with KRAS-mutant tumors, BRAF non-V600E group had higher TMB (9.6 vs KRAS 7.8 mutations/Mb, p=0.003), while all other oncogene groups had lower TMB (p<0.001). In the two clinical cohorts treated with ICB, molecular groups with EGFR, HER2, ALK, ROS1, RET, or MET alterations had short progression-free survival (PFS; 1.8-3.7 months), while BRAF V600E group was associated with greater clinical benefit from ICB (CGDB cohort: PFS 9.8 months vs KRAS 3.7 months, HR 0.66, p=0.099; MDACC cohort: response rate 62% vs KRAS 24%; PFS 7.4 vs KRAS 2.8 months, HR 0.36, p=0.026). KRAS G12C and non-G12C subgroups had similar clinical benefit from ICB in both cohorts. In a multivariable analysis, BRAF V600E mutation (HR 0.58, p=0.041), PD-L1 expression (HR 0.57, p=0.022), and high TMB (HR 0.66, p<0.001) were associated with longer PFS.
Conclusions:
High TMB and PD-L1 expression are predictive for benefit from ICB treatment in oncogene-driven NSCLCs. NSCLC harboring BRAF mutations demonstrated superior benefit from ICB that may be attributed to higher TMB and higher PD-L1 expression in these tumors. Meanwhile EGFR and HER2 mutations and ALK, ROS1, RET, and MET fusions define NSCLC subsets with minimal benefit from ICB despite high PD-L1 expression in NSCLC harboring oncogene fusions. These findings indicate a TMB/PD-L1-independent impact on sensitivity to ICB for certain oncogene alterations.
Insights
Non-small cell lung cancer (NSCLC) patients with BRAF mutations benefit more from immune checkpoint blockade (ICB). Other oncogene alterations like EGFR and HER2 show limited response to ICB, regardless of PD-L1 levels.
Area of Science:
- Oncology
- Immunotherapy
- Genomics
Background:
- Non-small cell lung cancer (NSCLC) patients with targetable oncogene alterations often respond poorly to immune checkpoint blockade (ICB).
- This limited efficacy is frequently linked to low tumor mutation burden (TMB) and/or PD-L1 expression.
- Investigating oncogene-specific differences in these biomarkers and clinical outcomes is crucial.
Purpose of the Study:
- To analyze oncogene-specific differences in TMB and PD-L1 expression in NSCLC.
- To correlate these biomarkers with clinical outcomes in NSCLC patients treated with ICB.
- To identify NSCLC subsets that benefit from ICB based on their oncogenic alterations.
Main Methods:
- Analysis of three NSCLC patient cohorts (n=4189) with oncogene alterations.
- Assessment of TMB and PD-L1 expression in a biomarker cohort (n=4017).
- Evaluation of clinical outcomes (PFS, response rate) in two ICB-treated cohorts (MDACC n=172, CGDB n=894).
Main Results:
- NSCLC with BRAF V600E mutations showed higher TMB and PD-L1 expression compared to KRAS-mutant tumors.
- Patients with EGFR, HER2, ALK, ROS1, RET, or MET alterations had poor PFS with ICB (1.8-3.7 months).
- BRAF V600E-mutant NSCLC demonstrated superior ICB benefit (PFS 9.8 months in CGDB, 7.4 months in MDACC).
- High TMB, PD-L1 expression, and BRAF V600E mutation predicted longer PFS.
Conclusions:
- High TMB and PD-L1 expression predict ICB benefit in oncogene-driven NSCLC.
- BRAF-mutant NSCLC shows superior ICB benefit, potentially due to higher TMB and PD-L1.
- EGFR, HER2, ALK, ROS1, RET, and MET alterations define NSCLC subsets with minimal ICB benefit, irrespective of PD-L1 levels.
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