摘要
背景:血管生成诱导的血管网络形成在许多生理和病理过程中起重要作用。然而,血流和血管网络形成的潜在机制的作用,例如尾静脉丛(CVP)的发展,人们知之甚少。 目的:本研究旨在探讨ERK5-klf2a-nos2b信号通路在CVP血管生成中的作用。 方法和结果:在这项关于斑马鱼胚胎中tnnt2a-MO注射和化学血流调节剂治疗的研究中,我们证明血流量减少会破坏CVP的形成。定量分析血液动力学。此外,响应于用ERK5特异性抑制剂治疗和注射klf2a-MO,nos2b-MO,通过破坏下游效应子ERK5,klf2a和nos2b的血流来抑制斑马鱼胚胎中的CVP血管生成。过表达klf2a mRNA或nos2b mRNA可恢复tnnt2a或klf2a morphant中的血管缺陷。数据表明,流动诱导的ERK5-klf2a-nos2b信号传导参与斑马鱼胚胎中的CVP血管生成。 结论:我们已经证明血流是血管网络形成所必需的,特别是斑马鱼的CVP血管生成。发现了一种新的遗传和机械机制,其中ERK5促进血流与下游klf2a-nos2b信号传导的CVP血管生成的整合。
关键词: 血流,斑马鱼,CVP血管生成,ERK5,klf2a,nos2b。
Current Molecular Medicine
Title:Blood Flow Regulates Zebrafish Caudal Vein Plexus Angiogenesis by ERK5-klf2a-nos2b Signaling
Volume: 18 Issue: 1
关键词: 血流,斑马鱼,CVP血管生成,ERK5,klf2a,nos2b。
摘要: Background: Vascular network formation induced by angiogenesis plays an important role in many physiological and pathological processes. However, the role of blood flow and underlying mechanisms in vascular network formation, for example for the development of the caudal vein plexus (CVP), is poorly understood.
Objective: The aim of this study was to explore the role of ERK5-klf2a-nos2b signaling in the CVP angiogenesis.
Method and Results: In this study on tnnt2a-MO injection and chemical blood flow modulator treatment in zebrafish embryos, we demonstrated that decreased blood flow disrupted CVP formation. The hemodynamic force was quantitatively analyzed. Furthermore, CVP angiogenesis in zebrafish embryos was inhibited by disruption of the blood flow downstream effectors ERK5, klf2a, and nos2b in response to treatment with the ERK5 specific inhibitor and to injection of klf2a-MO, nos2b-MO. Overexpression of klf2a mRNA or nos2b mRNA restored vascular defects in tnnt2a or klf2a morphants. The data suggest that flow-induced ERK5-klf2a-nos2b signaling is involved in CVP angiogenesis in zebrafish embryos.
Conclusion: We have demonstrated that blood flow is essential for vascular network formation, specifically for CVP angiogenesis in zebrafish. A novel genetic and mechanical mechanism was discovered in which ERK5 facilitates the integration of blood flow with the downstream klf2a-nos2b signaling for CVP angiogenesis.
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Cite this article as:
Blood Flow Regulates Zebrafish Caudal Vein Plexus Angiogenesis by ERK5-klf2a-nos2b Signaling, Current Molecular Medicine 2018; 18 (1) . https://dx.doi.org/10.2174/1566524018666180322153432
DOI https://dx.doi.org/10.2174/1566524018666180322153432 |
Print ISSN 1566-5240 |
Publisher Name Bentham Science Publisher |
Online ISSN 1875-5666 |
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