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Updated: May 17, 2025

Detection of Human Leukocyte Antigen Biomarkers in Breast Cancer Utilizing Label-free Biosensor Technology
Published on: March 24, 2015
MHC class II-mediated spontaneous rejection of breast carcinomas expressing model neoantigens
James William Jenkins1, Alvaro Peña1, Sarah A Castro1
1Department of Immunology, Mayo Clinic, Rochester, Minnesota, USA.
Background:
Cancers persist despite expression of immunogenic neoantigens and ongoing antitumor immune responses. While some occult tumors likely are cleared by effective antitumor immune responses, the targeted antigens are not easily identifiable as those tumors spontaneously disappear.
Methods:
We used mouse models with a defined antigenic protein mimicking tumor-specific neoantigens to address the nature of these spontaneous anti-tumor immune responses.
Results:
BALB/c (H-2d ) mice challenged with BALB/c breast tumors expressing the rat-erbB2 oncoprotein succumb to their tumors despite ongoing immune responses targeting tumor-specific model antigens. Meanwhile, congenic BALB.B (H-2b ) and H-2d/H-2b F1 hybrid mice spontaneously eliminate genetically matched tumors in a major histocompatibility complex (MHC)-II dependent manner. Adoptive transfer and immune cell depletion strategies revealed CD4+ T cells and CD20+ B cells are crucial mediators of the protective response in H-2b mice. Furthermore, passive transfer of immune serum from mice rejecting their tumors confers resistance in tumor antigen-tolerant animals with an inversely proportional relationship between tumor outgrowth and the amount of rat-erbB2 specific antibody present in tumor-bearing mice. Introduction of the rat-erb2 ectodomain into other H-2b tumor models also promotes their spontaneous tumor rejection. Notably, the tumor microenvironments differ in rat-erbB2+ tumor-bearing BALB.B and BALB/c mice at the time of fate decision in the models reflecting the differences between effective and ineffective tumor immune responses.
Conclusions:
We find that the effective antitumor immunity targeting neoantigens in these breast cancer models is determined by MHC-II-restricted presentation of optimal cancer-associated antigens. These responses are dependent on CD4+ T cells, B cells, and antigen-specific antibodies.
Insights
Effective antitumor immunity relies on major histocompatibility complex (MHC)-II presentation of optimal antigens. This immune response requires CD4+ T cells, B cells, and antibodies for cancer neoantigen targeting.
Area of Science:
- Immunology
- Oncology
- Cancer Research
Background:
- Cancers can persist despite the presence of neoantigens and immune responses.
- Spontaneously disappearing tumors suggest effective immune clearance, but targeted antigens remain unidentified.
Purpose of the Study:
- To investigate the nature of spontaneous anti-tumor immune responses using mouse models with defined neoantigens.
- To understand the mechanisms underlying effective versus ineffective anti-tumor immunity.
Main Methods:
- Utilized mouse models expressing the rat-erbB2 oncoprotein to mimic tumor-specific neoantigens.
- Employed adoptive transfer and immune cell depletion strategies.
- Analyzed tumor microenvironments and antibody levels.
Main Results:
- Mice with specific genetic backgrounds (H-2) rejected tumors expressing rat-erbB2, while others (H-2) succumbed despite immune responses.
- CD4+ T cells, CD20+ B cells, and antibodies were crucial for tumor rejection in H-2 mice.
- Tumor microenvironments differed significantly between mice that rejected tumors and those that did not.
Conclusions:
- Effective anti-tumor immunity against neoantigens is dictated by MHC-II restricted presentation of optimal antigens.
- Immune responses involving CD4+ T cells, B cells, and specific antibodies are critical for controlling cancer growth.
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