Key result
Long-term exposure to β1-adrenoceptor autoantibody induced cardiac dysfunction and fibrosis in mice, and promoted proliferation of cardiac fibroblasts via the β1-AR/cAMP/PKA, p38MAPK, and ERK1/2 pathways.
Why the study?
Does β1-adrenoceptor autoantibody (β1-AA) induce cardiac fibrosis and promote proliferation in cardiac fibroblasts?
Does β1-adrenoceptor autoantibody (β1-AA) induce cardiac fibrosis and promote proliferation in cardiac fibroblasts?
p-value: p=<0.01
β1-adrenoceptor autoantibodies directly trigger cardiac dysfunction and fibrosis in vivo and promote cardiac fibroblast proliferation in vitro, providing insight into the pathological mechanisms of β1-AA in heart failure.
No immediate clinical implications; leaves open the role of β1-AAb in human cardiomyopathy.
Chronic sustained stimulation of β-adrenoceptor is closely related to cardiac fibrosis which is bad for cardiac function. Growing evidence showed that the high prevalence of β1-adrenoceptor autoantibody (β1-AA) in the sera of patients with various types of cardiovascular diseases decreased cardiac function. In the current study, we demonstrated that β1-AA impaired the cardiac function evaluated by echocardiography and that β1-AA triggered cardiac fibrosis in terms of increased expression of α-smooth muscle actin as the marker of myofibroblast and collagen deposition in a passive β1-AA immunized mice model during 16 weeks. Further, we showed that β1-AA activated β1-AR/cAMP/PKA pathway and promoted proliferation in primary cardiac fibroblasts through specific binding to β1-AR but not to β2-AR. Moreover, β1-AA was also likely to promote proliferation in cardiac fibroblasts through activating p38MAPK and ERK1/2 as p38MAPK inhibitor SB203580 and ERK1/2 inhibitor PD98059 partially reversed the proliferative effect. The persistent activating signalling of PKA and P38MAPK in 1 h induced by β1-AA was associated with lacking agonist-induced desensitization phenomena. The conditioned medium from β1-AA-stimulated cardiac fibroblasts induced cardiomyocyte apoptosis, which indicated that β1-AA changed the secretion of cardiac fibroblasts contributing to cardiac injury. These findings will contribute to our understanding of the pathological mechanisms of β1-AA.
No takes yet. Share an insight, caveat, or question.
Lv et al. (2016) studied Cardiac fibrosis and cardiac dysfunction. β1-adrenoceptor autoantibody (β1-AA) vs. Vehicle (saline) or non-specific IgG was evaluated on Cardiac function (ejection fraction and fractional shortening) and cardiac fibrosis (p=<0.01). Long-term exposure to β1-adrenoceptor autoantibody induced cardiac dysfunction and fibrosis in mice, and promoted proliferation of cardiac fibroblasts via the β1-AR/cAMP/PKA, p38MAPK, and ERK1/2 pathways.
Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context: