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Molecular and Genomic Determinants of Response to Immune Checkpoint Inhibition in Cancer
Russell W Jenkins1,2, Rohit Thummalapalli1, Jacob Carter1
1Department of Medical Oncology, Dana-Farber Cancer Institute, Boston, Massachusetts 02215, USA;
Abstract:
Molecularly targeted therapy and immunotherapy have dramatically changed the landscape of available treatment options for patients with advanced cancer. Improved understanding of the molecular and genomic features of cancers over the last decade has led to the development of successful targeted therapies and the field of precision cancer medicine. As a result of these advances, patients whose tumors harbor select molecular alterations are eligible for treatment with targeted therapies active against the unique molecular aberration. Concurrently, advances in tumor immunology have led to the development of immunomodulatory antibodies targeting T cell coinhibitory receptors CTLA-4 and PD-1 (programmed death-1) that have shown activity in several cancer histologies, reinvigorating antitumor immune responses in a subset of patients. These immunomodulatory antibodies offer the promise of durable disease control. However, discrete genomic determinants of response to cancer immunotherapy, unlike molecularly targeted therapies, have remained elusive, and robust biomarkers are lacking. Recent advances in tumor profiling have begun to identify novel genomic features that may influence response and resistance to cancer immunotherapy, including tumor mutational burden (e.g., microsatellite instability), copy-number alterations, and specific somatic alterations that influence immune recognition and response. Further investigation into the molecular and genomic features of response and resistance to cancer immunotherapy will be needed. We review the recent advances in understanding the molecular and genomic determinants of response to cancer immunotherapy, with an emphasis on immune checkpoint inhibitors.
Insights
Molecularly targeted therapies and immunotherapies offer new advanced cancer treatments. Genomic features influencing immunotherapy response are emerging, aiding precision cancer medicine development.
Area of Science:
- Oncology
- Genomics
- Immunology
Background:
- Advanced cancer treatment has been transformed by molecularly targeted therapy and immunotherapy.
- Precision cancer medicine leverages molecular and genomic insights for tailored treatments.
- Immunotherapies, like CTLA-4 and PD-1 inhibitors, show promise for durable cancer control by enhancing immune responses.
Purpose of the Study:
- To review recent advances in understanding the molecular and genomic determinants of response to cancer immunotherapy.
- To highlight the importance of identifying biomarkers for immunotherapy efficacy.
- To emphasize the role of immune checkpoint inhibitors in cancer treatment.
Main Methods:
- Review of recent scientific literature on cancer molecular profiling and immunotherapy.
- Analysis of genomic features influencing response and resistance to cancer immunotherapy.
- Focus on immune checkpoint inhibitors and their associated biomarkers.
Main Results:
- Molecularly targeted therapies have established genomic determinants of response.
- Genomic determinants for cancer immunotherapy response remain less defined, with a lack of robust biomarkers.
- Emerging genomic features like tumor mutational burden and specific somatic alterations are being identified as potential predictors of immunotherapy response.
Conclusions:
- Further research into molecular and genomic features is crucial for predicting and improving response to cancer immunotherapy.
- Identifying robust biomarkers will enhance the effectiveness of precision cancer medicine in immunotherapy.
- Advances in tumor profiling are beginning to elucidate the genomic landscape of immunotherapy response and resistance.
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