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Immune targets and neoantigens for cancer immunotherapy and precision medicine
Rong-Fu Wang1,2,3, Helen Y Wang1
1Center for Inflammation and Epigenetics, Houston Methodist Research Institute, Houston, TX 77030, USA.
Abstract:
Harnessing the immune system to eradicate malignant cells is becoming a most powerful new approach to cancer therapy. FDA approval of the immunotherapy-based drugs, sipuleucel-T (Provenge), ipilimumab (Yervoy, anti-CTLA-4), and more recently, the programmed cell death (PD)-1 antibody (pembrolizumab, Keytruda), for the treatment of multiple types of cancer has greatly advanced research and clinical studies in the field of cancer immunotherapy. Furthermore, recent clinical trials, using NY-ESO-1-specific T cell receptor (TCR) or CD19-chimeric antigen receptor (CAR), have shown promising clinical results for patients with metastatic cancer. Current success of cancer immunotherapy is built upon the work of cancer antigens and co-inhibitory signaling molecules identified 20 years ago. Among the large numbers of target antigens, CD19 is the best target for CAR T cell therapy for blood cancer, but CAR-engineered T cell immunotherapy does not yet work in solid cancer. NY-ESO-1 is one of the best targets for TCR-based immunotherapy in solid cancer. Despite the great success of checkpoint blockade therapy, more than 50% of cancer patients fail to respond to blockade therapy. The advent of new technologies such as next-generation sequencing has enhanced our ability to search for new immune targets in onco-immunology and accelerated the development of immunotherapy with potentially broader coverage of cancer patients. In this review, we will discuss the recent progresses of cancer immunotherapy and novel strategies in the identification of new immune targets and mutation-derived antigens (neoantigens) for cancer immunotherapy and immunoprecision medicine.
Insights
Cancer immunotherapy harnesses the immune system, with approved therapies like anti-CTLA-4 and PD-1 antibodies advancing treatment. New strategies focus on novel immune targets and neoantigens for broader patient coverage.
Area of Science:
- Immunology
- Oncology
- Biotechnology
Background:
- Cancer immunotherapy has advanced significantly with FDA-approved drugs like sipuleucel-T, ipilimumab (anti-CTLA-4), and pembrolizumab (anti-PD-1).
- Current immunotherapies, including T cell receptor (TCR) and chimeric antigen receptor (CAR) T cell therapies, show promise for metastatic cancers.
- Success relies on identifying cancer antigens and co-inhibitory molecules, with CD19 and NY-ESO-1 being key targets for blood and solid cancers, respectively.
Purpose of the Study:
- To review recent advancements in cancer immunotherapy.
- To discuss novel strategies for identifying new immune targets and neoantigens.
- To explore the development of immunotherapy and immunoprecision medicine.
Main Methods:
- Review of recent clinical trials and FDA-approved immunotherapies.
- Discussion of target antigen identification for CAR T cell and TCR-based therapies.
- Exploration of next-generation sequencing for identifying novel immune targets.
Main Results:
- Checkpoint blockade therapy benefits over 50% of patients, but response rates can be improved.
- CAR T cell therapy is effective for blood cancers (e.g., CD19 targets) but not yet for solid tumors.
- TCR-based immunotherapy shows promise for solid tumors using targets like NY-ESO-1.
Conclusions:
- New technologies like next-generation sequencing accelerate the discovery of immune targets.
- Identifying novel immune targets and neoantigens is crucial for expanding immunotherapy's reach.
- Further research into immunoprecision medicine aims for broader cancer patient coverage.
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