Key result
Treatment with antagomiR-21a-5p significantly attenuated myocardial inflammation (P=0.001) and fibrosis (P=0.013) in a mouse model of experimental autoimmune myocarditis.
Why the study?
Current myocarditis approaches mostly rely on symptomatic treatments, warranting novel concepts to address its formidable symptoms and increased risk of adverse outcomes.
Does antagomiR-21a-5p reduce myocardial inflammation and fibrosis in experimental autoimmune myocarditis?
Does antagomiR-21a-5p reduce myocardial inflammation and fibrosis in experimental autoimmune myocarditis?
p-value: p=0.001
Silencing of miR-21a-5p with antagomiR-21a-5p significantly attenuates inflammation, fibrosis, and echocardiographic hypertrophy in a murine model of experimental autoimmune myocarditis.
May support miRNA antagonism as a myocarditis target; hypothesis-generating from animal data and requires clinical validation.
AIMS: Myocarditis is associated with formidable symptoms and increased risk of adverse outcomes. Current approaches mostly rely on symptomatic treatments, warranting novel concepts for clinical practice. The aim of this study was to investigate the microRNA (miRNA) expression profile of Balb/c mice with experimental autoimmune myocarditis (EAM), choose a representative miRNA to antagonize after review of available literature and test its effects on myocardial inflammation in vitro and in vivo. METHODS AND RESULTS: Phase 1: EAM was induced in 12 male Balb/c mice, 10 animals served as controls. After sacrifice, next-generation sequencing (NGS) of the miRNA expression profile was performed. Based on these results, H9C2 cells and human ventricular cardiac fibroblasts exposed to lipopolysaccharide (LPS) were treated with the selected candidate antagomiR-21a-5p. Phase 2: EAM was induced in 48 animals. Thereof, 24 animals were either treated with antagomiR-21a-5p or negative control oligonucleotide in a nanoparticle formulation. Transthoracic echocardiography (TTE) was performed on Days 0, 7, 14, and 21. Histopathological examination was performed after sacrifice. Phase 1: EAM resulted in a significant up-regulation of 27 miRNAs, including miR-21a-5p (log2FC: 2.23, adj. P = 0.0026). Transfection with antagomiR-21a-5p resulted in a significant reduction of TNFα, IL-6, and collagen I in vitro. Phase 2: Treatment with antagomiR-21a-5p, formulated in polymeric nanoparticles for systemic injection, significantly attenuated myocardial inflammation (P = 0.001) and fibrosis (P = 0.013), as well as myocardial 'hypertrophy' on TTE. CONCLUSIONS: Silencing of miR-21a-5p results in a significant reduction of the expression of pro-inflammatory cytokines in vitro, as well as a significant attenuation of inflammation, fibrosis and echocardiographic effects of EAM in vivo.
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Mirna et al. (2021) studied Experimental autoimmune myocarditis (n=70). antagomiR-21a-5p vs. negative control oligonucleotide was evaluated on Myocardial inflammation (p=0.001). Treatment with antagomiR-21a-5p significantly attenuated myocardial inflammation (P=0.001) and fibrosis (P=0.013) in a mouse model of experimental autoimmune myocarditis.
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