医学
神经营养因子
神经营养素
心功能曲线
神经科学
脑源性神经营养因子
疾病
心脏病
心力衰竭
去神经支配
内科学
交感神经系统
淀粉样蛋白(真菌学)
淀粉样变性
神经系统
病理
内分泌学
心血管生理学
心脏病学
中枢神经系统
人脑
外周神经系统
人的心脏
心脏传导系统
机制(生物学)
心源性猝死
阿尔茨海默病
作者
Andrea Elia,Rebecca Parodi‐Rullán,Rafael Vázquez‐Torres,Ashley M Carey,Huaqing Zhao,Sabzali Javadov,Silvia Fossati
标识
DOI:10.1002/advs.202511924
摘要
While a link between cardiovascular risk factors and increased Alzheimer's disease (AD) risk has been reported, it remains unclear whether AD pathology has a direct effect on cardiac function and myocardial innervation. AD and amyloidosis are known to impair neuronal function and affect brain neurotrophic factors (NGF and BDNF) expression. Amyloid aggregates and neuro-signaling impairments may also expose AD patients to peripheral nervous system deficits, promoting cardiac disorders. Here, we provide novel understanding of cardiac physiological impairment, amyloid pathology, neurotrophic factors loss, and impoverishment of cardiac neuronal fibers in Tg2576-AD mice hearts, human cardiomyocytes in culture, and human AD post-mortem left ventricular (LV) heart tissue. We reveal that Tg2576 animals exhibit increased myocardial fibrosis, amyloid β (Aβ) deposition, and brain/heart-axis neurotrophic deficiencies, resulting in myocardial denervation and cardiac dysfunction. Aβ oligomers challenge reduces BDNF expression in both human immortalized and iPSC-derived cardiomyocytes, by disrupting TrkB/CREB signaling. Analysis of human LV AD post-mortem tissue confirms cell and animal results. Our findings reveal potential pathways by which Aβ pathology may disrupt cardiac neurotrophic signaling and physiology, identifying a possible link between AD and heart degeneration.
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