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斑马鱼在心血管发育和疾病中的生物力学信号传导工具。

A zebrafish toolbox for biomechanical signaling in cardiovascular development and disease.

机构信息

Institute of Biochemistry and Biology, Potsdam University, Potsdam, Germany.

Institute of Molecular Biology, Hannover Medical School, Hannover, Germany.

出版信息

Curr Opin Hematol. 2021 May 1;28(3):198-207. doi: 10.1097/MOH.0000000000000648.

Abstract

PURPOSE OF REVIEW

The zebrafish embryo has emerged as a powerful model organism to investigate the mechanisms by which biophysical forces regulate vascular and cardiac cell biology during development and disease. A versatile arsenal of methods and tools is available to manipulate and analyze biomechanical signaling. This review aims to provide an overview of the experimental strategies and tools that have been utilized to study biomechanical signaling in cardiovascular developmental processes and different vascular disease models in the zebrafish embryo. Within the scope of this review, we focus on work published during the last two years.

RECENT FINDINGS

Genetic and pharmacological tools for the manipulation of cardiac function allow alterations of hemodynamic flow patterns in the zebrafish embryo and various types of transgenic lines are available to report endothelial cell responses to biophysical forces. These tools have not only revealed the impact of biophysical forces on cardiovascular development but also helped to establish more accurate models for cardiovascular diseases including cerebral cavernous malformations, hereditary hemorrhagic telangiectasias, arteriovenous malformations, and lymphangiopathies.

SUMMARY

The zebrafish embryo is a valuable vertebrate model in which in-vivo manipulations of biophysical forces due to cardiac contractility and blood flow can be performed. These analyses give important insights into biomechanical signaling pathways that control endothelial and endocardial cell behaviors. The technical advances using this vertebrate model will advance our understanding of the impact of biophysical forces in cardiovascular pathologies.

摘要

综述目的:斑马鱼胚胎已成为一种强大的模式生物,可用于研究生物物理力在发育和疾病过程中调节血管和心脏细胞生物学的机制。目前有多种方法和工具可用于操纵和分析生物力学信号。本综述旨在概述在研究心血管发育过程中的生物力学信号以及斑马鱼胚胎中不同血管疾病模型中使用的实验策略和工具。在本综述的范围内,我们重点介绍了过去两年发表的工作。

最新发现:用于操纵心脏功能的遗传和药理学工具可改变斑马鱼胚胎中的血液动力学流动模式,并且有多种类型的转基因系可用于报告内皮细胞对生物物理力的反应。这些工具不仅揭示了生物物理力对心血管发育的影响,还有助于建立更准确的心血管疾病模型,包括脑海绵状血管畸形、遗传性出血性毛细血管扩张症、动静脉畸形和淋巴管发育不良。

综述总结:斑马鱼胚胎是一种有价值的脊椎动物模型,可在体内对心脏收缩和血流引起的生物物理力进行操纵。这些分析为控制内皮细胞和心内膜细胞行为的生物力学信号通路提供了重要的见解。使用这种脊椎动物模型的技术进步将增进我们对生物物理力在心血管病理学中的影响的理解。

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