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激活素A直接损害人类心肌细胞的收缩功能,表明其在心力衰竭发展中可能发挥作用。

Activin A directly impairs human cardiomyocyte contractile function indicating a potential role in heart failure development.

作者信息

MacDonnell Scott, Megna Jake, Ruan Qin, Zhu Olivia, Halasz Gabor, Jasewicz Dan, Powers Kristi, E Hock, Del Pilar Molina-Portela Maria, Jin Ximei, Zhang Dongqin, Torello Justin, Feric Nicole T, Graziano Michael P, Shekhar Akshay, Dunn Michael E, Glass David, Morton Lori

机构信息

Regeneron Pharmaceuticals, Tarrytown, NY, United States.

TARA Biosystems Inc., Alexandria Center for Life Sciences, New York, NY, United States.

出版信息

Front Cardiovasc Med. 2022 Nov 10;9:1038114. doi: 10.3389/fcvm.2022.1038114. eCollection 2022.

Abstract

Activin A has been linked to cardiac dysfunction in aging and disease, with elevated circulating levels found in patients with hypertension, atherosclerosis, and heart failure. Here, we investigated whether Activin A directly impairs cardiomyocyte (CM) contractile function and kinetics utilizing cell, tissue, and animal models. Hydrodynamic gene delivery-mediated overexpression of Activin A in wild-type mice was sufficient to impair cardiac function, and resulted in increased cardiac stress markers (N-terminal pro-atrial natriuretic peptide) and cardiac atrophy. In human-induced pluripotent stem cell-derived (hiPSC) CMs, Activin A caused increased phosphorylation of SMAD2/3 and significantly upregulated and (markers of SMAD2/3 activation and activin signaling, respectively). Activin A signaling in hiPSC-CMs resulted in impaired contractility, prolonged relaxation kinetics, and spontaneous beating in a dose-dependent manner. To identify the cardiac cellular source of Activin A, inflammatory cytokines were applied to human cardiac fibroblasts. Interleukin -1β induced a strong upregulation of Activin A. Mechanistically, we observed that Activin A-treated hiPSC-CMs exhibited impaired diastolic calcium handling with reduced expression of calcium regulatory genes (, , ). Importantly, when Activin A was inhibited with an anti-Activin A antibody, maladaptive calcium handling and CM contractile dysfunction were abrogated. Therefore, inflammatory cytokines may play a key role by acting on cardiac fibroblasts, causing local upregulation of Activin A that directly acts on CMs to impair contractility. These findings demonstrate that Activin A acts directly on CMs, which may contribute to the cardiac dysfunction seen in aging populations and in patients with heart failure.

摘要

激活素A与衰老和疾病中的心脏功能障碍有关,在高血压、动脉粥样硬化和心力衰竭患者中发现循环水平升高。在此,我们利用细胞、组织和动物模型研究激活素A是否直接损害心肌细胞(CM)的收缩功能和动力学。通过流体动力学基因传递介导野生型小鼠中激活素A的过表达足以损害心脏功能,并导致心脏应激标志物(N端前心钠素)增加和心脏萎缩。在人诱导多能干细胞衍生的(hiPSC)心肌细胞中,激活素A导致SMAD2/3磷酸化增加,并显著上调 和 (分别为SMAD2/3激活和激活素信号的标志物)。hiPSC-心肌细胞中的激活素A信号传导导致收缩性受损、舒张动力学延长以及自发搏动呈剂量依赖性。为了确定激活素A的心脏细胞来源,将炎性细胞因子应用于人心脏成纤维细胞。白细胞介素-1β诱导激活素A强烈上调。从机制上讲,我们观察到用激活素A处理的hiPSC-心肌细胞表现出舒张期钙处理受损,钙调节基因( 、 、 )的表达降低。重要的是,当用抗激活素A抗体抑制激活素A时,适应性不良的钙处理和心肌细胞收缩功能障碍被消除。因此,炎性细胞因子可能通过作用于心脏成纤维细胞发挥关键作用,导致激活素A在局部上调,直接作用于心肌细胞以损害收缩性。这些发现表明激活素A直接作用于心肌细胞,这可能导致老年人群和心力衰竭患者出现心脏功能障碍。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0a2b/9685658/ba18f47bbb5b/fcvm-09-1038114-g001.jpg

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