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Published on: January 26, 2024
Breast Cancer Neoantigens Can Induce CD8+ T-Cell Responses and Antitumor Immunity
Xiuli Zhang1, Samuel Kim1, Jasreet Hundal2
1Department of Surgery, Washington University School of Medicine, St. Louis, Missouri.
Abstract:
Next-generation sequencing technologies have provided insights into the biology and mutational landscape of cancer. Here, we evaluate the relevance of cancer neoantigens in human breast cancers. Using patient-derived xenografts from three patients with advanced breast cancer (xenografts were designated as WHIM30, WHIM35, and WHIM37), we sequenced exomes of tumor and patient-matched normal cells. We identified 2,091 (WHIM30), 354 (WHIM35), and 235 (WHIM37) nonsynonymous somatic mutations. A computational analysis identified and prioritized HLA class I-restricted candidate neoantigens expressed in the dominant tumor clone. Each candidate neoantigen was evaluated using peptide-binding assays, T-cell cultures that measure the ability of CD8+ T cells to recognize candidate neoantigens, and preclinical models in which we measured antitumor immunity. Our results demonstrate that breast cancer neoantigens can be recognized by the immune system, and that human CD8+ T cells enriched for prioritized breast cancer neoantigens were able to protect mice from tumor challenge with autologous patient-derived xenografts. We conclude that next-generation sequencing and epitope-prediction strategies can identify and prioritize candidate neoantigens for immune targeting in breast cancer. Cancer Immunol Res; 5(7); 516-23. ©2017 AACR.
Insights
Next-generation sequencing identified breast cancer neoantigens. These neoantigens were recognized by T cells and protected against tumor challenge in preclinical models, highlighting their potential for cancer immunotherapy.
Area of Science:
- Immunology
- Oncology
- Genomics
Background:
- Next-generation sequencing (NGS) advances cancer research by revealing tumor biology and mutational profiles.
- Cancer neoantigens are crucial targets for cancer immunotherapy.
Purpose of the Study:
- To evaluate the relevance and immunogenicity of cancer neoantigens in human breast cancers.
- To assess the potential of neoantigen-targeted therapies for breast cancer.
Main Methods:
- Whole-exome sequencing of patient-derived breast cancer xenografts (WHIM30, WHIM35, WHIM37) and matched normal cells.
- Computational identification and prioritization of HLA class I-restricted neoantigens.
- Validation using peptide-binding assays, CD8+ T-cell recognition assays, and preclinical antitumor immunity models.
Main Results:
- Identified thousands of nonsynonymous somatic mutations across three breast cancer xenografts.
- Demonstrated that breast cancer neoantigens are recognized by the human immune system.
- Showed that CD8+ T cells targeting prioritized neoantigens conferred protection against autologous tumor xenografts in mice.
Conclusions:
- NGS and epitope prediction can effectively identify and prioritize neoantigens for immune targeting in breast cancer.
- Breast cancer neoantigens hold promise as targets for developing novel immunotherapies.
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