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Molecular Pathways and Mechanisms of LAG3 in Cancer Therapy
Lawrence P Andrews1,2, Anthony R Cillo1,2, Lilit Karapetyan3
1Department of Immunology, University of Pittsburgh School of Medicine, Pittsburgh, Pennsylvania.
Abstract:
Immunotherapy targeting coinhibitory receptors has been highly successful in treating a wide variety of malignancies; however, only a subset of patients exhibits durable responses. The first FDA-approved immunotherapeutics targeting coinhibitory receptors PD1 and CTLA4, alone or in combination, significantly improved survival but were also accompanied by substantial toxicity in combination. The third FDA-approved immune checkpoint inhibitor targets LAG3, a coinhibitory receptor expressed on activated CD4+ and CD8+ T cells, especially in settings of long-term antigenic stimulation, such as chronic viral infection or cancer. Mechanistically, LAG3 expression limits both the expansion of activated T cells and the size of the memory pool, suggesting that LAG3 may be a promising target for immunotherapy. Importantly, the mechanism(s) by which LAG3 contributes to CD8+ T-cell exhaustion may be distinct from those governed by PD1, indicating that the combination of anti-LAG3 and anti-PD1 may synergistically enhance antitumor immunity. Clinical studies evaluating the role of anti-LAG3 in combination with anti-PD1 are underway, and recent phase III trial results in metastatic melanoma demonstrate both the efficacy and safety of this combination. Further ongoing clinical trials are evaluating this combination across multiple tumor types and the adjuvant setting, with accompanying translational and biomarker-focused studies designed to elucidate the molecular pathways that lead to improved antitumor T-cell responses following dual blockade of PD1 and LAG3. Overall, LAG3 plays an important role in limiting T-cell activation and has now become part of the repertoire of combinatorial immunotherapeutics available for the treatment of metastatic melanoma.
Insights
Immunotherapy combining anti-LAG3 and anti-PD1 shows promise for cancer treatment. This dual blockade may enhance antitumor immunity and improve patient responses, particularly in metastatic melanoma.
Area of Science:
- Immunology
- Oncology
- Cancer Immunotherapy
Background:
- Immunotherapy targeting coinhibitory receptors like PD1 and CTLA4 has improved cancer survival but benefits only a subset of patients.
- LAG3 is a coinhibitory receptor expressed on T cells during chronic stimulation, limiting T cell expansion and memory formation.
- LAG3's distinct exhaustion mechanisms from PD1 suggest synergistic potential when blocked together.
Purpose of the Study:
- To investigate the potential of targeting LAG3, alone or in combination with PD1, for enhancing antitumor immunity.
- To evaluate the efficacy and safety of combining anti-LAG3 and anti-PD1 therapies in cancer patients.
Main Methods:
- Clinical trials evaluating anti-LAG3 in combination with anti-PD1.
- Phase III trial analysis in metastatic melanoma.
- Translational and biomarker studies to understand molecular pathways of dual blockade.
Main Results:
- Phase III trials in metastatic melanoma demonstrate the efficacy and safety of the anti-LAG3 and anti-PD1 combination.
- LAG3 blockade may synergistically enhance antitumor immunity by distinct mechanisms from PD1.
- Ongoing trials are assessing this combination across various tumor types and in the adjuvant setting.
Conclusions:
- LAG3 is a crucial regulator of T cell activation and a promising target for combinatorial immunotherapy.
- The combination of anti-LAG3 and anti-PD1 represents a significant advancement in treating metastatic melanoma and potentially other cancers.
- Further research will elucidate the molecular basis for improved T cell responses following dual PD1 and LAG3 blockade.
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