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Updated: May 10, 2026

Generation of a Mouse Spontaneous Autoimmune Thyroiditis Model
Published on: March 17, 2023
Enhanced autoimmunity associated with induction of tumor immunity in thyroiditis-susceptible mice
Suresh Kari1, Jeffrey C Flynn, Muhammad Zulfiqar
11 Department of Immunology and Microbiology, Wayne State University School of Medicine , Detroit, Michigan.
Background:
Immunotherapeutic modalities to bolster tumor immunity by targeting specific sites of the immune network often result in immune dysregulation with adverse autoimmune sequelae. To understand the relative risk for opportunistic autoimmune disorders, we studied established breast cancer models in mice resistant to experimental autoimmune thyroiditis (EAT). EAT is a murine model of Hashimoto's thyroiditis, an autoimmune syndrome with established MHC class II control of susceptibility. The highly prevalent Hashimoto's thyroiditis is a prominent autoimmune sequela in immunotherapy, and its relative ease of diagnosis and treatment could serve as an early indicator of immune dysfunction. Here, we examined EAT-susceptible mice as a combined model for induction of tumor immunity and EAT under the umbrella of disrupted regulatory T cell (Treg) function.
Methods:
Tumor immunity was evaluated in female CBA/J mice after depleting Tregs by intravenous administration of CD25 monoclonal antibody and/or immunizing with irradiated mammary adenocarcinoma cell line A22E-j before challenge; the role of T cell subsets was determined by injecting CD4 and/or CD8 antibodies after tumor immunity induction. Tumor growth was monitored 3×/week by palpation. Subsequent EAT was induced by mouse thyroglobulin (mTg) injections (4 daily doses/week over 4 weeks). For some experiments, EAT was induced before establishing tumor immunity by injecting mTg+interleukin-1, 7 days apart. EAT was evaluated by mTg antibodies and thyroid infiltration.
Results:
Strong resistance to tumor challenge after Treg depletion and immunization with irradiated tumor cells required participation of both CD4(+) and CD8(+) T cells. This immunity was not altered by induction of mild thyroiditis with our protocol of Treg depletion and adjuvant-free, soluble mTg injections. However, the increased incidence of mild thyroiditis can be directly related to Treg depletion needed to achieve strong tumor immunity. Moreover, when a subclinical, mild thyroiditis was induced with soluble mTg and low doses of interleukin-1, to simulate pre-existing autoimmunity in patients subjected to cancer immunotherapy, mononuclear infiltration into the thyroid was enhanced.
Conclusions:
Our current findings indicate that genetic predisposition to autoimmune disease could enhance autoimmunity during induction of tumor immunity in thyroiditis-susceptible mice. Thus, HLA genotyping of cancer patients should be part of any risk assessment.
Insights
Cancer immunotherapy can trigger autoimmune thyroiditis, especially in genetically susceptible individuals. This study in mice suggests that pre-existing autoimmune conditions may worsen thyroiditis during tumor immunity induction, highlighting the need for genetic risk assessment in patients.
Area of Science:
- Immunology
- Oncology
- Autoimmunity
Background:
- Cancer immunotherapies can cause immune dysregulation and autoimmune side effects.
- Experimental autoimmune thyroiditis (EAT) in mice models Hashimoto's thyroiditis, a common autoimmune sequela.
- Studying EAT-susceptible mice helps understand risks of autoimmune disorders during cancer treatment.
Purpose of the Study:
- To investigate the interplay between tumor immunity induction and autoimmune thyroiditis development.
- To examine the role of regulatory T cells (Tregs) in this interplay.
- To assess the impact of pre-existing autoimmunity on cancer immunotherapy outcomes.
Main Methods:
- Depleted Tregs in mice using CD25 monoclonal antibody.
- Induced tumor immunity by immunizing with irradiated mammary adenocarcinoma cells.
- Induced experimental autoimmune thyroiditis (EAT) using mouse thyroglobulin (mTg) injections.
- Assessed T cell subset roles (CD4+, CD8+) and monitored tumor growth and EAT development.
Main Results:
- Strong tumor immunity required both CD4+ and CD8+ T cells after Treg depletion and immunization.
- Treg depletion increased the incidence of mild thyroiditis.
- Pre-inducing mild thyroiditis enhanced mononuclear infiltration into the thyroid, simulating immunotherapy in patients with autoimmunity.
Conclusions:
- Genetic predisposition to autoimmune disease can exacerbate autoimmunity during cancer immunity induction.
- Thyroiditis-susceptible mice showed enhanced autoimmunity.
- Recommends HLA genotyping for cancer patients undergoing immunotherapy to assess autoimmune risk.
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