Publication | Open Access
miR-29a-3p/THBS2 Axis Regulates PAH-Induced Cardiac Fibrosis
60
Citations
49
References
2021
Year
Targets Thbs2ImmunologyPathologyPublic HealthCardiologyCell SignalingFibrosisMolecular PhysiologyPulmonary Artery HypertensionPulmonary FibrosisVascular BiologyMicrorna DetectionCardiac ReprogrammingCell BiologyPulmonary Vascular DiseaseCardiac PathologyPulmonary Arterial HypertensionCardiovascular DiseaseMedicineThbs2 Expression
Pulmonary artery hypertension (PAH) pathology involves extracellular matrix (ECM) remodeling in cardiac tissues, thus promoting cardiac fibrosis progression. miR-29a-3p reportedly inhibits lung progression and liver fibrosis by regulating ECM protein expression; however, its role in PAH-induced fibrosis remains unclear. In this study, we aimed to investigate the role of miR-29a-3p in cardiac fibrosis progression in PAH and its influence on ECM protein thrombospondin-2 (THBS2) expression. The diagnostic and prognostic values of miR-29a-3p and THBS2 in PAH were evaluated. The expressions and effects of miR-29a-3p and THBS2 were assessed in cell culture, monocrotaline-induced PAH mouse model, and patients with PAH. The levels of circulating miR-29a-3p and THBS2 in patients and mice with PAH decreased and increased, respectively. miR-29a-3p directly targets THBS2 and regulates THBS2 expression via a direct anti-fibrotic effect on PAH-induced cardiac fibrosis. The circulating levels of miR-29a-3p and THBS2 were correlated with PAH diagnostic parameters, suggesting their independent prognostic value. miR-29a-3p targeted THBS2 expression via a direct anti-fibrotic effect on PAH-induced cardiac fibrosis, indicating miR-29a-3p acts as a messenger with promising therapeutic effects.
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