斑马鱼鳍再生中的血管模拟:巨噬细胞如何构建新血管

IF 9.2 1区 医学 Q1 PERIPHERAL VASCULAR DISEASE
Anita Senk, Jennifer Fazzari, Valentin Djonov
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引用次数: 0

摘要

我们对肿瘤血管生成过程中的血管模拟进行了深入研究。在本研究中,我们利用斑马鱼鳍再生试验首次证明,在组织再生过程中,生理性血管形成过程与肿瘤血管模拟非常相似。在鳍再生前端,血管由镶嵌血管形成,内皮样细胞具有巨噬细胞的形态表型,单细胞内同时表达内皮和巨噬细胞标记。我们的数据表明,再生组织的血管片段部分是通过邻近的巨噬细胞转化为内皮样细胞而扩张的,形成了功能性灌注通道,促进了微血管的新生形成。CVM-1118 可抑制管状血管样结构的形成,防止血管模拟和网络形成,从而使再生区域缩短 70%,血管生长减少 60%,一半的鳍区域完全没有任何再生迹象。此外,这还与巨噬细胞的显著减少有关。此外,使用巨噬细胞抑制剂 PLX-3397 清除巨噬细胞也会导致组织再生和血管形成受损,即再生面积和血管网络比对照组减少 75%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Vascular mimicry in zebrafish fin regeneration: how macrophages build new blood vessels

Vascular mimicry in zebrafish fin regeneration: how macrophages build new blood vessels

Vascular mimicry has been thoroughly investigated in tumor angiogenesis. In this study, we demonstrate for the first time that a process closely resembling tumor vascular mimicry is present during physiological blood vessel formation in tissue regeneration using the zebrafish fin regeneration assay. At the fin-regenerating front, vasculature is formed by mosaic blood vessels with endothelial-like cells possessing the morphological phenotype of a macrophage and co-expressing both endothelial and macrophage markers within single cells. Our data demonstrate that the vascular segments of the regenerating tissue expand, in part, through the transformation of adjacent macrophages into endothelial-like cells, forming functional, perfused channels and contributing to the de novo formation of microvasculature. Inhibiting the formation of tubular vascular-like structures by CVM-1118 prevents vascular mimicry and network formation resulting in a 70% shorter regeneration area with 60% reduced vessel growth and a complete absence of any signs of regeneration in half of the fin area. Additionally, this is associated with a significant reduction in macrophages. Furthermore, depleting macrophages using macrophage inhibitor PLX-3397, results in impaired tissue regeneration and blood vessel formation, namely a reduction in the regeneration area and vessel network by 75% in comparison to controls.

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来源期刊
Angiogenesis
Angiogenesis PERIPHERAL VASCULAR DISEASE-
CiteScore
21.90
自引率
8.20%
发文量
37
审稿时长
6-12 weeks
期刊介绍: Angiogenesis, a renowned international journal, seeks to publish high-quality original articles and reviews on the cellular and molecular mechanisms governing angiogenesis in both normal and pathological conditions. By serving as a primary platform for swift communication within the field of angiogenesis research, this multidisciplinary journal showcases pioneering experimental studies utilizing molecular techniques, in vitro methods, animal models, and clinical investigations into angiogenic diseases. Furthermore, Angiogenesis sheds light on cutting-edge therapeutic strategies for promoting or inhibiting angiogenesis, while also highlighting fresh markers and techniques for disease diagnosis and prognosis.
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