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Immune Checkpoint Ligand PD-L1 Is Upregulated in Pulmonary Lymphangioleiomyomatosis
Katharina Maisel1, Mervyn J Merrilees2, Elena N Atochina-Vasserman3
11 Institute for Molecular Engineering, University of Chicago, Chicago, Illinois.
Abstract:
Pulmonary lymphangioleiomyomatosis (LAM) is a slow-progressing metastatic disease that is driven by mutations in the tumor suppressor tuberous sclerosis complex 1/2 (TSC1/2). Rapamycin inhibits LAM cell proliferation and is the only approved treatment, but it cannot cause the regression of existing lesions and can only stabilize the disease. However, in other cancers, immunotherapies such as checkpoint blockade against PD-1 and its ligand PD-L1 have shown promise in causing tumor regression and even curing some patients. Thus, we asked whether PD-L1 has a role in LAM progression. In vitro, PD-L1 expression in murine Tsc2-null cells is unaffected by mTOR inhibition with torin but can be upregulated by IFN-γ. Using immunohistochemistry and single-cell flow cytometry, we found increased PD-L1 expression both in human lung tissue from patients with LAM and in Tsc2-null lesions in a murine model of LAM. In this model, PD-L1 is highly expressed in the lung by antigen-presenting and stromal cells, and activated T cells expressing PD-1 infiltrate the affected lung. In vivo treatment with anti-PD-1 antibody significantly prolongs mouse survival in the model of LAM. Together, these data demonstrate that PD-1/PD-L1-mediated immunosuppression may occur in LAM, and suggest new opportunities for therapeutic targeting that may provide benefits beyond those of rapamycin.
Insights
Pulmonary lymphangioleiomyomatosis (LAM) involves PD-L1 expression, suggesting immune suppression. Targeting PD-1/PD-L1 may offer new therapies for LAM, potentially improving on rapamycin treatments.
Area of Science:
- Oncology
- Immunology
- Pulmonary Medicine
Background:
- Pulmonary lymphangioleiomyomatosis (LAM) is a rare, slow-progressing metastatic disease linked to TSC1/2 mutations.
- Rapamycin is the sole approved treatment, stabilizing but not regressing LAM lesions.
- Cancer immunotherapies targeting PD-1/PD-L1 show promise for tumor regression.
Purpose of the Study:
- To investigate the role of PD-L1 in LAM progression.
- To explore PD-1/PD-L1 pathway involvement in LAM pathogenesis.
Main Methods:
- In vitro studies using murine Tsc2-null cells.
- Immunohistochemistry and single-cell flow cytometry on human LAM lung tissue and a murine LAM model.
- In vivo treatment of the murine LAM model with anti-PD-1 antibody.
Main Results:
- PD-L1 expression is increased in human LAM lung tissue and murine Tsc2-null lesions.
- PD-L1 is expressed by lung antigen-presenting and stromal cells in the murine model.
- Activated T cells expressing PD-1 infiltrate LAM-affected lungs.
- Anti-PD-1 antibody treatment significantly improved survival in the murine LAM model.
Conclusions:
- The PD-1/PD-L1 pathway is implicated in immune suppression within LAM.
- Targeting PD-1/PD-L1 represents a potential novel therapeutic strategy for LAM.
- This approach may offer benefits beyond current rapamycin therapy for LAM patients.
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