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首页> 外文期刊>Circulation research: a journal of the American Heart Association >Actin binding GFP allows 4D in vivo imaging of myofilament dynamics in the zebrafish heart and the identification of Erbb2 signaling as a remodeling factor of myofibril architecture.
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Actin binding GFP allows 4D in vivo imaging of myofilament dynamics in the zebrafish heart and the identification of Erbb2 signaling as a remodeling factor of myofibril architecture.

机译:肌动蛋白结合GFP允许斑马鱼心脏中的肌丝动力学的4D体内成像,并鉴定Erbb2信号作为肌原纤维结构的重塑因子。

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摘要

Using this novel line, we compiled a reference for myofibrillar microarchitecture among myocardial subtypes in vivo and at different developmental stages, establishing this model as a tool to analyze in vivo cardiomyocyte contractility and remodeling for a broad range of cardiovascular questions. Furthermore, we applied this model to study Erbb2 signaling in cardiomyopathy. We show a direct link between Erbb2 activity and remodeling of myofibrils, revealing an unexpected mechanism with potentially important implications for prevention and treatment of cardiomyopathy.
机译:使用这一新颖的方法,我们为体内和处于不同发育阶段的心肌亚型中的肌原纤维微结构编制了参考,建立了该模型作为分析体内心肌细胞收缩性和重塑广泛心血管问题的工具。此外,我们将该模型用于研究心肌病中的Erbb2信号传导。我们显示了Erbb2活性和肌原纤维的重塑之间的直接联系,揭示了意料之外的机制,对预防和治疗心肌病具有潜在的重要意义。

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