Improving Right Ventricular Function by Increasing BMP Signaling with FK506

后负荷 BMPR2型 心脏纤维化 内科学 纤维化 医学 压力过载 肺动脉高压 内分泌学 心功能曲线 心脏病学 心室 骨形态发生蛋白 心力衰竭 生物 生物化学 心肌肥大 基因
作者
Mario Boehm,Xuefei Tian,Md Khadem Ali,Yuqiang Mao,Kenzo Ichimura,Mingming Zhao,Kazuya Kuramoto,Svenja Dannewitz Prosseda,Giovanni Fajardo,Melanie J. Dufva,Xulei Qin,Vitaly O. Kheyfets,Daniel Bernstein,Sushma Reddy,Ross J. Metzger,Roham T. Zamanian,François Haddad,Edda Spiekerkoetter
出处
期刊:American Journal of Respiratory Cell and Molecular Biology [American Thoracic Society]
卷期号:65 (3): 272-287 被引量:25
标识
DOI:10.1165/rcmb.2020-0528oc
摘要

Right ventricular (RV) function is the predominant determinant of survival in patients with pulmonary arterial hypertension (PAH). In preclinical models, pharmacological activation of BMP (bone morphogenetic protein) signaling with FK506 (tacrolimus) improved RV function by decreasing RV afterload. FK506 therapy further stabilized three patients with end-stage PAH. Whether FK506 has direct effects on the pressure-overloaded right ventricle is yet unknown. We hypothesized that increasing cardiac BMP signaling with FK506 improves RV structure and function in a model of fixed RV afterload after pulmonary artery banding (PAB). Direct cardiac effects of FK506 on the microvasculature and RV fibrosis were studied after surgical PAB in wild-type and heterozygous Bmpr2 mutant mice. RV function and strain were assessed longitudinally via cardiac magnetic resonance imaging during continuous FK506 infusion. Genetic lineage tracing of endothelial cells (ECs) was performed to assess the contribution of ECs to fibrosis. Molecular mechanistic studies were performed in human cardiac fibroblasts and ECs. In mice, low BMP signaling in the right ventricle exaggerated PAB-induced RV fibrosis. FK506 therapy restored cardiac BMP signaling, reduced RV fibrosis in a BMP-dependent manner independent from its immunosuppressive effect, preserved RV capillarization, and improved RV function and strain over the time course of disease. Endothelial mesenchymal transition was a rare event and did not significantly contribute to cardiac fibrosis after PAB. Mechanistically, FK506 required ALK1 in human cardiac fibroblasts as a BMPR2 co-receptor to reduce TGFβ1-induced proliferation and collagen production. Our study demonstrates that increasing cardiac BMP signaling with FK506 improves RV structure and function independent from its previously described beneficial effects on pulmonary vascular remodeling.
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