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Proliferative potential and resistance to immune checkpoint blockade in lung cancer patients
Sarabjot Pabla1, Jeffrey M Conroy1,2, Mary K Nesline1
1OmniSeq, Inc., 700 Ellicott Street, Buffalo, NY, 14203, USA.
Background:
Resistance to immune checkpoint inhibitors (ICIs) has been linked to local immunosuppression independent of major ICI targets (e.g., PD-1). Clinical experience with response prediction based on PD-L1 expression suggests that other factors influence sensitivity to ICIs in non-small cell lung cancer (NSCLC) patients.
Methods:
Tumor specimens from 120 NSCLC patients from 10 institutions were evaluated for PD-L1 expression by immunohistochemistry, and global proliferative profile by targeted RNA-seq.
Results:
Cell proliferation, derived from the mean expression of 10 proliferation-associated genes (namely BUB1, CCNB2, CDK1, CDKN3, FOXM1, KIAA0101, MAD2L1, MELK, MKI67, and TOP2A), was identified as a marker of response to ICIs in NSCLC. Poorly, moderately, and highly proliferative tumors were somewhat equally represented in NSCLC, with tumors with the highest PD-L1 expression being more frequently moderately proliferative as compared to lesser levels of PD-L1 expression. Proliferation status had an impact on survival in patients with both PD-L1 positive and negative tumors. There was a significant survival advantage for moderately proliferative tumors compared to their combined highly/poorly counterparts (p = 0.021). Moderately proliferative PD-L1 positive tumors had a median survival of 14.6 months that was almost twice that of PD-L1 negative highly/poorly proliferative at 7.6 months (p = 0.028). Median survival in moderately proliferative PD-L1 negative tumors at 12.6 months was comparable to that of highly/poorly proliferative PD-L1 positive tumors at 11.5 months, but in both instances less than that of moderately proliferative PD-L1 positive tumors. Similar to survival, proliferation status has impact on disease control (DC) in patients with both PD-L1 positive and negative tumors. Patients with moderately versus those with poorly or highly proliferative tumors have a superior DC rate when combined with any classification schema used to score PD-L1 as a positive result (i.e., TPS ≥ 50% or ≥ 1%), and best displayed by a DC rate for moderately proliferative tumors of no less than 40% for any classification of PD-L1 as a negative result. While there is an over representation of moderately proliferative tumors as PD-L1 expression increases this does not account for the improved survival or higher disease control rates seen in PD-L1 negative tumors.
Conclusions:
Cell proliferation is potentially a new biomarker of response to ICIs in NSCLC and is applicable to PD-L1 negative tumors.
Insights
Tumor cell proliferation is a novel biomarker for predicting response to immune checkpoint inhibitors (ICIs) in non-small cell lung cancer (NSCLC). This marker shows promise even in patients with PD-L1 negative tumors, offering new insights into treatment sensitivity.
Area of Science:
- Oncology
- Immunotherapy
- Molecular Biology
Background:
- Resistance to immune checkpoint inhibitors (ICIs) in non-small cell lung cancer (NSCLC) is linked to local immunosuppression.
- Predicting ICI response based solely on PD-L1 expression is insufficient, indicating other factors influence sensitivity.
Purpose of the Study:
- To identify novel biomarkers for predicting ICI response in NSCLC.
- To investigate the role of tumor cell proliferation as a potential predictor of ICI sensitivity.
Main Methods:
- Tumor specimens from 120 NSCLC patients were analyzed for PD-L1 expression via immunohistochemistry.
- Global proliferative profiles were assessed using targeted RNA sequencing of 10 proliferation-associated genes.
Main Results:
- Tumor cell proliferation emerged as a significant marker for ICI response in NSCLC.
- Moderately proliferative tumors demonstrated a survival advantage over poorly or highly proliferative tumors, irrespective of PD-L1 status.
- Proliferation status impacted disease control rates, with moderately proliferative tumors showing superior outcomes.
Conclusions:
- Cell proliferation is a potential new biomarker for predicting ICI response in NSCLC.
- This proliferation marker is applicable and beneficial even in PD-L1 negative NSCLC tumors.
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