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Angiogenesis in a 3D model containing adipose tissue stem cells and endothelial cells is mediated by canonical Wnt signaling

机译:包含脂肪组织干细胞和内皮细胞的3D模型中的血管生成由经典Wnt信号传导介导

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Adipose-derived stromal cells (ASCs) have gained great attention in regenerative medicine. Progress in our understanding of adult neovascularization further suggests the potential of ASCs in promoting vascular regeneration, although the specific cues that stimulate their angiogenic behavior remain controversial. In this study, we established a three-dimensional (3D) angiogenesis model by co-culturing ASCs and endothelial cells (ECs) in collagen gel and found that ASC-EC-instructed angiogenesis was regulated by the canonical Wnt pathway. Furthermore, the angiogenesis that occurred in implants collected after injections of our collagen gel-based 3D angiogenesis model into nude mice was confirmed to be functional and also regulated by the canonical Wnt pathway. Wnt regulation of angiogenesis involving changes in vessel length, vessel density, vessel sprout, and connection numbers occurred in our system. Wnt signaling was then shown to regulate ASC-mediated paracrine signaling during angiogenesis through the nuclear translocation of β-catenin after its cytoplasmic accumulation in both ASCs and ECs. This translocation enhanced the expression of nuclear co-factor Lef-1 and cyclin D1 and activated the angiogenic transcription of vascular endothelial growth factor A (VEGFA), basic fibroblast growth factor (bFGF), and insulin-like growth factor 1 (IGF-1). The angiogenesis process in the 3D collagen model appeared to follow canonical Wnt signaling, and this model can help us understand the importance of the canonical Wnt pathway in the use of ASCs in vascular regeneration.
机译:脂肪基质细胞(ASCs)在再生医学中引起了极大的关注。我们对成人新血管形成的了解的进展进一步表明了ASC在促进血管再生方面的潜力,尽管刺激其血管生成行为的特定线索仍存在争议。在这项研究中,我们通过在胶原蛋白凝胶中共培养ASC和内皮细胞(EC)建立了三维(3D)血管生成模型,并发现ASC-EC指导的血管生成受到规范的Wnt途径的调节。此外,已证实在将我们基于胶原蛋白凝胶的3D血管生成模型注入裸鼠后收集的植入物中发生的血管生成是功能性的,并且也受到规范的Wnt途径的调节。 Wnt调节血管生成,涉及血管长度,血管密度,血管发芽和连接数目的变化,发生在我们的系统中。然后显示出Wnt信号传导通过β-catenin在ASC和EC中的胞质积累后的核转运,在血管生成过程中调节ASC介导的旁分泌信号传导。这种易位增强了核辅助因子Lef-1和cyclin D1的表达,并激活了血管内皮生长因子A(VEGFA),碱性成纤维细胞生长因子(bFGF)和胰岛素样生长因子1(IGF-1)的血管生成转录)。 3D胶原蛋白模型中的血管生成过程似乎遵循规范的Wnt信号传导,并且该模型可以帮助我们了解规范性Wnt途径在血管再生中使用ASC的重要性。

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