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成年斑马鱼的高级超声心动图显示心肌冷冻损伤后心脏功能恢复延迟。

Advanced echocardiography in adult zebrafish reveals delayed recovery of heart function after myocardial cryoinjury.

作者信息

Hein Selina J, Lehmann Lorenz H, Kossack Mandy, Juergensen Lonny, Fuchs Dieter, Katus Hugo A, Hassel David

机构信息

Department of Medicine III, Cardiology, Heidelberg University Hospital, 69120 Heidelberg, Germany and DZHK (German Center for Cardiovascular Research), Partner Site Heidelberg/Mannheim, Heidelberg, Germany.

FUJIFILM VisualSonics Inc., Amsterdam, The Netherlands.

出版信息

PLoS One. 2015 Apr 8;10(4):e0122665. doi: 10.1371/journal.pone.0122665. eCollection 2015.

Abstract

Translucent zebrafish larvae represent an established model to analyze genetics of cardiac development and human cardiac disease. More recently adult zebrafish are utilized to evaluate mechanisms of cardiac regeneration and by benefiting from recent genome editing technologies, including TALEN and CRISPR, adult zebrafish are emerging as a valuable in vivo model to evaluate novel disease genes and specifically validate disease causing mutations and their underlying pathomechanisms. However, methods to sensitively and non-invasively assess cardiac morphology and performance in adult zebrafish are still limited. We here present a standardized examination protocol to broadly assess cardiac performance in adult zebrafish by advancing conventional echocardiography with modern speckle-tracking analyses. This allows accurate detection of changes in cardiac performance and further enables highly sensitive assessment of regional myocardial motion and deformation in high spatio-temporal resolution. Combining conventional echocardiography measurements with radial and longitudinal velocity, displacement, strain, strain rate and myocardial wall delay rates after myocardial cryoinjury permitted to non-invasively determine injury dimensions and to longitudinally follow functional recovery during cardiac regeneration. We show that functional recovery of cryoinjured hearts occurs in three distinct phases. Importantly, the regeneration process after cryoinjury extends far beyond the proposed 45 days described for ventricular resection with reconstitution of myocardial performance up to 180 days post-injury (dpi). The imaging modalities evaluated here allow sensitive cardiac phenotyping and contribute to further establish adult zebrafish as valuable cardiac disease model beyond the larval developmental stage.

摘要

半透明的斑马鱼幼体是分析心脏发育遗传学和人类心脏疾病的成熟模型。最近,成年斑马鱼被用于评估心脏再生机制,并且受益于包括TALEN和CRISPR在内的最新基因组编辑技术,成年斑马鱼正成为评估新型疾病基因以及特别验证致病突变及其潜在发病机制的有价值的体内模型。然而,在成年斑马鱼中灵敏且非侵入性地评估心脏形态和功能的方法仍然有限。我们在此提出一种标准化检查方案,通过采用现代斑点追踪分析改进传统超声心动图,以广泛评估成年斑马鱼的心脏功能。这能够准确检测心脏功能的变化,并进一步以高时空分辨率对局部心肌运动和变形进行高度灵敏的评估。将传统超声心动图测量与心肌冷冻损伤后的径向和纵向速度、位移、应变、应变率以及心肌壁延迟率相结合,能够非侵入性地确定损伤范围,并纵向跟踪心脏再生过程中的功能恢复情况。我们表明,冷冻损伤心脏的功能恢复分为三个不同阶段。重要的是,冷冻损伤后的再生过程远远超过了心室切除术后所提出的45天,心肌功能在损伤后180天仍能重建。本文评估的成像方式能够实现灵敏的心脏表型分析,并有助于进一步确立成年斑马鱼作为超越幼体发育阶段的有价值的心脏疾病模型。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a4cc/4390243/212776d72131/pone.0122665.g001.jpg

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