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Percutaneous Contrast Echocardiography-guided Intramyocardial Injection and Cell Delivery in a Large Preclinical Model
Published on: January 21, 2018
Novel Therapeutic Approach Targeting CXCR3 to Treat Immunotherapy Myocarditis
Yuhsin Vivian Huang1, Yin Sun1, Harrison Chou1
1Stanford Cardiovascular Institute, CA (Y.V.H., Y.S., H.C., N.W., M.R.V., B.X., Z.L., C.B., R.M.W., P.K.N., S.M.W., H.Z.).
Background:
Immune checkpoint inhibitors (ICIs) are successful in treating many cancers but may cause immune-related adverse events. ICI-mediated myocarditis has a high fatality rate with severe cardiovascular consequences. Targeted therapies for ICI myocarditis are currently limited.
Methods:
We used a genetic mouse model of PD1 deletion (MRL/Pdcd1) along with a novel drug-treated ICI myocarditis mouse model to recapitulate the disease phenotype. We performed single-cell RNA-sequencing, single-cell T-cell receptor sequencing, and cellular indexing of transcriptomes and epitopes on immune cells isolated from MRL and MRL/Pdcd1 mice at serial time points. We assessed the impact of macrophage deletion in MRL/Pdcd1 mice, then inhibited CXCR3 (C-X-C motif chemokine receptor 3) in ICI-treated mice to assess the therapeutic effect on myocarditis phenotype. Furthermore, we delineated the functional and mechanistic effects of CXCR3 blockade on T-cell and macrophage interactions. We then correlated the results in human single-cell multiomics data from blood and heart biopsy data from patients with ICI myocarditis.
Results:
Single-cell multiomics demonstrated expansion of CXCL (C-X-C motif chemokine ligand) 9/10+CCR2+ macrophages and CXCR3hi (C-X-C motif chemokine receptor 3 high-expressing) CD8+ (cluster of differentiation) effector T lymphocytes in the hearts of MRL/Pdcd1 mice correlating with onset of myocarditis development. Both depletion of CXCL9/10+CCR2+ (C-C motif chemokine receptor) macrophages and CXCR3 blockade, respectively, led to decreased CXCR3hi CD8+ T-cell infiltration into the heart and significantly improved survival. Transwell migration assays demonstrated that the selective blockade of CXCR3 and its ligand, CXCL10, reduced CXCR3+CD8+ T-cell migration toward macrophages, implicating this interaction in T-cell cardiotropism toward cardiac macrophages. Furthermore, cardiomyocyte apoptosis was induced by CXCR3hi CD8+ T cells. Cardiac biopsies from patients with confirmed ICI myocarditis demonstrated infiltrating CXCR3+ T cells and CXCL9+/CXCL10+ macrophages. Both mouse cardiac immune cells and patient peripheral blood immune cells revealed expanded TCRs (T-cell receptors) correlating with CXCR3hi CD8+ T cells in ICI myocarditis samples.
Conclusions:
These findings bring forth the CXCR3-CXCL9/10 axis as an attractive therapeutic target for ICI myocarditis treatment, and more broadly as a druggable pathway in cardiac inflammation.
Insights
The CXCR3-CXCL9/10 axis is a key driver of immune checkpoint inhibitor (ICI) myocarditis, promoting T-cell infiltration and cardiac damage. Blocking this pathway offers a promising therapeutic strategy for this severe condition.
Area of Science:
- Immunology
- Cardiology
- Oncology
Background:
- Immune checkpoint inhibitors (ICIs) are effective cancer treatments but can cause immune-related adverse events, including potentially fatal myocarditis.
- Current targeted therapies for ICI-mediated myocarditis are limited, necessitating research into underlying mechanisms and novel treatment strategies.
Purpose of the Study:
- To investigate the mechanisms of ICI-mediated myocarditis using genetic and drug-induced mouse models.
- To identify potential therapeutic targets for ICI myocarditis by analyzing immune cell interactions and pathways.
Main Methods:
- Utilized genetic (MRL/Pdcd1-/-) and drug-treated mouse models of ICI myocarditis.
- Performed single-cell RNA-sequencing, T-cell receptor sequencing, and CITE-seq on isolated immune cells.
- Assessed the impact of macrophage depletion and CXCR3 inhibition, correlating findings with human patient data.
Main Results:
- Identified expansion of CXCL9/10+CCR2+ macrophages and CXCR3hi CD8+ T cells in the hearts of affected mice.
- Demonstrated that macrophage depletion and CXCR3 blockade reduced T-cell infiltration, improved survival, and inhibited T-cell migration.
- Confirmed the presence of CXCR3+ T cells and CXCL9+/CXCL10+ macrophages in human ICI myocarditis biopsies.
Conclusions:
- The CXCR3-CXCL9/10 axis plays a critical role in ICI myocarditis pathogenesis.
- Targeting the CXCR3-CXCL9/10 axis represents a promising therapeutic strategy for ICI myocarditis and other cardiac inflammatory conditions.
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