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Manufacturing Chimeric Antigen Receptor CAR T Cells for Adoptive Immunotherapy
Published on: December 17, 2019
CAR-T Cells Targeting TSHR Demonstrate Safety and Potent Preclinical Activity Against Differentiated Thyroid Cancer
Hanning Li1,2,3, Xiang Zhou4, Ge Wang1,2,3
1Department of Thyroid and Breast Surgery, Tongji Hospital, Tongji Medical College, Huazhong University of Science and Technology (HUST), Wuhan, Hubei 430030, People's Republic of China.
Background:
Chimeric antigen receptor T cells (CAR-Ts) have demonstrated remarkable efficacy in hematological cancers but have not yet translated in treating solid tumors. The significant hurdles limiting CAR-T therapy were from a paucity of differentially expressed cell surface molecules on solid tumors that can be safely targeted. Here, we present TSH receptor (TSHR) as a putative target for CAR-T therapy of differentiated thyroid cancer (DTC).
Methods:
We undertook a large-scale screen on thyroid cancer tissues and multiple internal organs through bioinformatical analysis and immunohistochemistry to date TSHR expression. Using 3 previously described monoclonal antibodies, we generated 3 third-generation CAR-Ts. We tested anti-TSHR CAR-T in vitro activity by T-cell function and killing assay. Then we tested preclinical therapeutical efficacy in a xenograft mouse model of DTC and analyzed mice's physical conditions and histological abnormalities to evaluate anti-TSHR CAR-T's safety.
Results:
TSHR is highly and homogeneously expressed on 90.8% (138/152) of papillary thyroid cancer, 89.2% (33/37) of follicular thyroid cancer, 78.2% (18/23) of cervical lymph node metastases, and 86.7% of radioactive iodine resistance diseases. We developed 3 novel anti-TSHR CAR-Ts from monoclonal antibodies M22, K1-18, and K1-70; all 3 CAR-Ts mediate significant antitumor activity in vitro. Among these, we demonstrate that K1-70 CAR-T can have therapeutical efficacy in vivo, and no apparent toxicity has been observed.
Conclusion:
TSHR is a latent target antigen of CAR-T therapy for DTC. Anti-TSHR CAR-T could represent a therapeutic option for patients with locoregional relapsed or distant metastases of thyroid cancer and should be tested in carefully designed clinical trials.
Insights
Thyroid cancer can now be targeted by Chimeric antigen receptor T cells (CAR-Ts) using the TSH receptor (TSHR). This CAR-T therapy shows promise for treating thyroid cancer metastases with no observed toxicity.
Area of Science:
- Immunotherapy
- Oncology
- Molecular Biology
Background:
- Chimeric antigen receptor T cells (CAR-Ts) show efficacy in hematological cancers but face challenges in solid tumors.
- A lack of specific cell surface targets limits CAR-T therapy for solid tumors.
- Thyroid stimulating hormone receptor (TSHR) is proposed as a target for differentiated thyroid cancer (DTC).
Purpose of the Study:
- To evaluate TSHR as a target for CAR-T therapy in differentiated thyroid cancer (DTC).
- To develop and assess the efficacy and safety of anti-TSHR CAR-T cells.
Main Methods:
- Large-scale screening of TSHR expression in thyroid cancer and normal tissues using bioinformatics and immunohistochemistry.
- Generation of three third-generation CAR-T cells targeting TSHR using monoclonal antibodies.
- In vitro testing of CAR-T cell function and killing assays, followed by in vivo efficacy and safety evaluation in a DTC xenograft mouse model.
Main Results:
- TSHR is highly and homogeneously expressed on various types of thyroid cancer, including papillary and follicular thyroid cancer, metastases, and radioiodine-refractory disease.
- Three novel anti-TSHR CAR-T cells were developed, all demonstrating significant in vitro antitumor activity.
- One CAR-T construct (K1-70) showed therapeutic efficacy in vivo without apparent toxicity in a preclinical model.
Conclusions:
- TSHR is a viable target antigen for CAR-T therapy in differentiated thyroid cancer (DTC).
- Anti-TSHR CAR-T cells offer a potential therapeutic strategy for patients with recurrent or metastatic thyroid cancer.
- Further investigation in clinical trials is warranted to validate anti-TSHR CAR-T therapy.
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