通过增强内皮活性和限制纤维化反应使 flt1 失活,从而促进斑马鱼心脏再生

Zhenyu Wang, Armaan Mehra, Quian-Chen Wang, Savita Gupta, Agatha Ribeiro da Silva, Thomas Juan, Stephan Gunther, Jan Detleffsen, Mario Looso, Didier Y.R. Stainier, Ruben Marin-Juez
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引用次数: 0

摘要

多年来,人们一直在探索将血管内皮生长因子(VEGFA)作为一种促进血管生成的疗法来治疗心血管疾病(包括心力衰竭),但收效甚微。在这里,我们研究了一种提高血管内皮生长因子生物利用率的不同方法:通过删除血管内皮生长因子诱饵受体 VEGFR1/FLT1,可以获得更多生理浓度的血管内皮生长因子。我们发现,冷冻损伤后,斑马鱼 flt1 突变体心脏的冠状动脉血管再通和心内膜扩张能力增强,心肌细胞去分化和增殖能力增强,瘢痕减少。抑制flt1突变体中的Vegfa信号传导会减弱flt1缺失带来的这些有益影响。冷冻损伤的flt1突变体心脏转录组分析显示,内皮MAPK/ERK信号增强,转录因子基因egr3下调。利用新生成的基因工具,我们观察到egr3在再生心内膜中上调,并发现egr3促进了肌成纤维细胞的分化。这些数据表明,随着 Vegfa 生物利用率的提高,心内膜通过下调 egr3 限制了心肌成纤维细胞的分化,从而为损伤后的心肌细胞补充提供了更有利的微环境。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
flt1 inactivation promotes zebrafish cardiac regeneration by enhancing endothelial activity and limiting the fibrotic response
VEGFA administration has been explored as a pro-angiogenic therapy for cardiovascular diseases including heart failure for several years, but with little success. Here we investigate a different approach to augment VEGFA bioavailability: by deleting the VEGFA decoy receptor VEGFR1/FLT1, one can achieve more physiological VEGFA concentrations. We find that following cryoinjury, zebrafish flt1 mutant hearts display enhanced coronary revascularization and endocardial expansion, increased cardiomyocyte dedifferentiation and proliferation, and decreased scarring. Suppressing Vegfa signaling in flt1 mutants abrogates these beneficial effects of flt1 deletion. Transcriptomic analyses of cryoinjured flt1 mutant hearts reveal enhanced endothelial MAPK/ERK signaling and downregulation of the transcription factor gene egr3. Using newly generated genetic tools, we observe egr3 upregulation in the regenerating endocardium, and find that Egr3 promotes myofibroblast differentiation. These data indicate that with enhanced Vegfa bioavailability, the endocardium limits myofibroblast differentiation via egr3 downregulation, thereby providing a more permissive microenvironment for cardiomyocyte replenishment after injury.
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