CD40 is an immune checkpoint regulator that potentiates myocardial inflammation through activation and expansion of CCR2+ macrophages and CD8 T-cells
Jimenez, J.; Amrute, J.; Ma, P.; Wang, X.; Dai, R.; Lavine, K.
Show abstract
Novel immune checkpoint therapeutics including CD40 agonists have tremendous promise to elicit antitumor responses in patients resistant to current therapies. Conventional immune checkpoint inhibitors (PD-1/PD-L1, CTLA-4 antagonists) are associated with serious adverse cardiac events including life-threatening myocarditis. However, little is known regarding the potential for CD40 agonists to trigger myocardial inflammation or myocarditis. Here, we leveraged genetic mouse models, single cell sequencing, and cell depletion studies to demonstrate that an anti-CD40 agonist antibody reshapes the cardiac immune landscape through activation of CCR2+ macrophages and subsequent recruitment of effector memory CD8 T-cells. We identify a positive feedback loop between CCR2+ macrophages and CD8 T-cells driven by IL12b, TNF, and IFN-{gamma} signaling that promotes myocardial inflammation and show that prior exposure to CD40 agonists sensitizes the heart to secondary insults and accelerates LV remodeling. Collectively, these findings highlight the potential for CD40 agonists to promote myocardial inflammation and potentiate heart failure pathogenesis.
Matching journals
The top 6 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- A disrupted compartment boundary underlies abnormal cardiac patterning and congenital heart defects 97%
- An engineered human cardiac tissue model reveals contributions of systemic lupus erythematosus autoantibodies to myocardial injury 97%
- Tbx5 maintains atrial identity by regulating an atrial enhancer network 96%
Similar papers in this journal
- Reproducing extracellular matrix adverse remodelling of non-ST myocardialinfarction in a large animal model 96%
- Identification of epigenetic regulators of fibrotic transformation in cardiac fibroblasts through bulk and single-cell CRISPR screens 96%
- The pericardium forms as a distinct structure during heart formation 96%
Similar papers in this journal
- The EMT transcription factor Snai1 maintains myocardial wall integrity by repressing intermediate filament gene expression 95%
- Pharmacologically inducing regenerative cardiac cells by small molecule drugs 94%
- Resident and recruited macrophages differentially contribute to cardiac healing after myocardial ischemia 94%
Similar papers in this journal
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.