Expression of Checkpoint Molecules in the Tumor Microenvironment of Intrahepatic Cholangiocarcinoma: Implications for
Lara Heij1,2,3,4, Jan Bednarsch1, Xiuxiang Tan1,4
1Department of Surgery and Transplantation, University Hospital RWTH Aachen, 52074 Aachen, Germany.
Abstract:
Background: The tumor microenvironment (TME) in cholangiocarcinoma (CCA) influences the immune environment. Checkpoint blockade is promising, but reliable biomarkers to predict response to treatment are still lacking. Materials and Methods: The levels of checkpoint molecules (PD-1, PD-L1, PD-L2, LAG-3, ICOS, TIGIT, TIM-3, CTLA-4), macrophages (CD68), and T cells (CD4 and CD8 cells) were assessed by multiplexed immunofluorescence in 50 intrahepatic cases. Associations between marker expression, immune cells, and region of expression were studied in the annotated regions of tumor, interface, sclerotic tumor, and tumor-free tissue. Results: ICCA demonstrated CD4_TIM-3 high densities in the tumor region of interest (ROI) compared to the interface (p = 0.014). CD8_PD-L1 and CD8_ICOS densities were elevated in the sclerotic tumor compared to the interface (p = 0.011 and p = 0.031, respectively). In a multivariate model, high expression of CD8_PD-L2 (p = 0.048) and CD4_ICOS_TIGIT (p = 0.011) was associated with nodal metastases. Conclusions: High densities of PD-L1 were more abundant in the sclerotic tumor region; this is meaningful for the stratification of immunotherapy. Lymph node metastasis correlates with CD4_ICOS_TIGIT co-expression and CD8_PD-L2 expression, indicating the checkpoint expression profile of patients with a poor prognosis. Also, multiple co-expressions occur, and this potentially suggests a role for combination therapy with different immune checkpoint targets than just PD-1 blockade monotherapy.
Insights
Biomarkers for cholangiocarcinoma (CCA) immunotherapy response are needed. This study found specific immune checkpoint molecule expressions, like PD-L1 and CD4_ICOS_TIGIT, correlate with treatment response and prognosis in CCA patients.
Area of Science:
- Immunology
- Oncology
- Pathology
Background:
- The tumor microenvironment (TME) significantly impacts cholangiocarcinoma (CCA) immunity.
- Effective immunotherapy for CCA is hindered by a lack of reliable predictive biomarkers.
Purpose of the Study:
- To investigate the expression of immune checkpoint molecules and immune cells within the CCA TME.
- To identify potential biomarkers for predicting response to immune checkpoint blockade therapy in CCA.
Main Methods:
- Multiplexed immunofluorescence was used to assess checkpoint molecules (PD-1, PD-L1, PD-L2, LAG-3, ICOS, TIGIT, TIM-3, CTLA-4) and immune cells (CD68, CD4, CD8) in 50 intrahepatic CCA cases.
- Expression levels were analyzed in distinct regions: tumor, interface, sclerotic tumor, and tumor-free tissue.
Main Results:
- Higher densities of CD4_TIM-3 were observed in the tumor region compared to the interface.
- Elevated CD8_PD-L1 and CD8_ICOS densities were found in the sclerotic tumor region versus the interface.
- High CD8_PD-L2 and CD4_ICOS_TIGIT expression correlated with nodal metastases in a multivariate model.
Conclusions:
- Abundant PD-L1 in the sclerotic tumor region may aid in immunotherapy stratification.
- Co-expression of CD4_ICOS_TIGIT and CD8_PD-L2 indicates a poor prognosis and correlates with lymph node metastasis.
- The presence of multiple co-expressed checkpoints suggests potential benefits of combination immunotherapy beyond PD-1 blockade.
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