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Published on: February 17, 2022
PD1 Blockade Enhances ICAM1-Directed CAR T Therapeutic Efficacy in Advanced Thyroid Cancer
Katherine D Gray1, Jaclyn E McCloskey2, Yogindra Vedvyas2
1Department of Surgery, Weill Cornell Medicine, New York, New York.
Purpose:
Advanced thyroid cancers, including poorly differentiated and anaplastic thyroid cancer (ATC), are lethal malignancies with limited treatment options. The majority of patients with ATC have responded poorly to programmed death 1 (PD1) blockade in early clinical trials. There is a need to explore new treatment options.
Experimental Design:
We examined the expression of PD-L1 (a ligand of PD1) and intercellular adhesion molecule 1 (ICAM1) in thyroid tumors and ATC cell lines, and investigated the PD1 expression level in peripheral T cells of patients with thyroid cancer. Next, we studied the tumor-targeting efficacy and T-cell dynamics of monotherapy and combination treatments of ICAM1-targeting chimeric antigen receptor (CAR) T cells and anti-PD1 antibody in a xenograft model of ATC.
Results:
Advanced thyroid cancers were associated with increased expression of both ICAM1 and PD-L1 in tumors, and elevated PD1 expression in CD8+ T cells of circulating blood. The expression of ICAM1 and PD-L1 in ATC lines was regulated by the IFNγ-JAK2 signaling pathway. ICAM1-targeted CAR T cells, produced from either healthy donor or patient T cells, in combination with PD1 blockade demonstrated an improved ability to eradicate ICAM1-expressing target tumor cells compared with CAR T treatment alone. PD1 blockade facilitated clearance of PD-L1 high tumor colonies and curtailed excessive CAR T expansion, resulting in rapid tumor clearance and prolonged survival in a mouse model.
Conclusions:
Targeting two IFNγ-inducible, tumor-associated antigens-ICAM1 and PD-L1-in a complementary manner might be an effective treatment strategy to control advanced thyroid cancers in vivo.
Insights
Combining ICAM1-targeting CAR T cells with PD1 blockade effectively treats advanced thyroid cancer. This dual approach eradicates tumors and improves survival in preclinical models.
Area of Science:
- Immunotherapy
- Oncology
- Molecular Biology
Background:
- Advanced thyroid cancers, including anaplastic thyroid cancer (ATC), are aggressive with limited treatment options.
- Current treatments like programmed death 1 (PD1) blockade show limited efficacy in ATC patients.
- Novel therapeutic strategies are urgently needed for these lethal malignancies.
Purpose of the Study:
- To investigate the expression of PD-L1 and intercellular adhesion molecule 1 (ICAM1) in thyroid tumors.
- To evaluate the efficacy of combining ICAM1-targeting chimeric antigen receptor (CAR) T cells with PD1 blockade in an ATC model.
- To understand the impact of this combination therapy on T-cell dynamics and tumor clearance.
Main Methods:
- Examined ICAM1 and PD-L1 expression in thyroid tumors and ATC cell lines.
- Assessed PD1 expression in peripheral T cells from thyroid cancer patients.
- Utilized a xenograft model of ATC to test monotherapy and combination treatments of CAR T cells and anti-PD1 antibody.
Main Results:
- Advanced thyroid cancers exhibited increased ICAM1 and PD-L1 tumor expression and elevated PD1 on T cells.
- ICAM1-targeted CAR T cells combined with PD1 blockade showed enhanced tumor eradication compared to CAR T cells alone.
- Combination therapy led to rapid tumor clearance and prolonged survival in a preclinical ATC model.
Conclusions:
- Targeting both ICAM1 and PD-L1, which are IFNγ-inducible antigens, offers a promising therapeutic strategy.
- This complementary targeting approach may effectively control advanced thyroid cancers in vivo.
- Combination immunotherapy holds potential for treating lethal thyroid malignancies.
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