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Endothelial Smoothened-dependent Hedgehog Signaling is Not Required for Sonic Hedgehog Induced Angiogenesis or Ischemic Tissue Repair

机译:声波刺猬诱导的血管生成或缺血性组织修复不需要内皮细胞平滑化依赖性的刺猬信号。

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摘要

Sonic Hedgehog (Shh) signaling induces neovascularization and angiogenesis. It is not known whether hedgehog signaling pathway in endothelial cells is essential to angiogenesis. Smoothened (Smo) transduces hedgehog signaling across the cell membrane. This study assessed whether endothelial Smoothened-dependent Shh signaling is required for Shh mediated angiogenesis and ischemic tissue repair. Endothelial specific smoothened knockout mice, eSmoNull were created using Cre-lox recombination system. eSmoNull mice had no observable phenotype at baseline and showed normal cardiac function. Smoothened in CD31+ cells isolated from eSmoNull hearts was significantly reduced compared to CD31+ cells from eSmoWT littermate control hearts. Fluorescence immunostaining of eSmoNull heart sections showed Smo expression in endothelial cells was abolished. The hind-limb ischemia (HLI) model was used to assess the response to ischemic injury. Perfusion ratio, limb motor function, and limb necrosis were not significantly different after HLI between eSmoNull mice and eSmoWT. Capillary densities in the ischemic limb in eSmoNull mice were also similar to eSmoWT at 4 weeks after HLI. Next, response to exogenous Shh was assessed in the corneal angiogenesis model. There was no significant difference in corneal angiogenesis induced by administration of Shh pellets between eSmoWT and eSmoNull mice. Furthermore, in vitro experiments demonstrated that direct Shh had limited effects on endothelial cell proliferation and migration. However, conditioned media from Shh-treated fibroblasts had a more potent effect on endothelial cell proliferation and migration than non-treated conditioned media. Furthermore, Shh treatment of fibroblasts dramatically stimulated angiogenic growth factor expression, including PDGF-B, VEGF-A, HGF and IGF. PDGF-B was the most upregulated and may contribute to the large neo-vessels associated with Shh induced angiogenesis. Taken together, these data demonstrate that Shh signaling via Smoothened in endothelial cells is not required for angiogenesis and ischemic tissue repair. Shh signaling via stromal cells likely mediates its angiogenic effects.
机译:声波刺猬(Shh)信号诱导新血管形成和血管生成。尚不清楚内皮细胞中的刺猬信号通路是否对血管生成至关重要。平滑(Smo)在整个细胞膜上转导刺猬信号。该研究评估了Shh介导的血管生成和缺血性组织修复是否需要内皮细胞平滑化依赖性Shh信号传导。使用Cre-lox重组系统创建内皮特异性平滑敲除小鼠eSmo Null 。 eSmo Null 小鼠在基线时没有可观察到的表型,并且显示出正常的心脏功能。与来自同窝对照心脏的eSmo WT 心脏的CD31 +细胞相比,从eSmo Null 心脏分离的CD31 +细胞的平滑度显着降低。 eSmo Null 心脏切片的荧光免疫染色表明,Smo在内皮细胞中的表达被取消。后肢缺血(HLI)模型用于评估对缺血性损伤的反应。 HLI后,eSmo Null 小鼠和eSmo WT 小鼠的灌注率,肢体运动功能和肢体坏死没有显着差异。 HLI后4周,eSmo Null 小鼠的缺血肢体中的毛细血管密度也类似于eSmo WT 。接下来,在角膜血管生成模型中评估对外源性Shh的反应。在eSmo WT 和eSmo Null 小鼠之间,Shh颗粒的给药所致的角膜血管新生没有显着差异。此外,体外实验表明直接Shh对内皮细胞增殖和迁移的作用有限。然而,与未处理的条件培养基相比,Shh处理的成纤维细胞的条件培养基对内皮细胞增殖和迁移的作用更大。此外,Shh处理成纤维细胞可显着刺激血管生成生长因子的表达,包括PDGF-B,VEGF-A,HGF和IGF。 PDGF-B是最上调的,可能有助于与Shh诱导的血管生成相关的大型新血管。综上所述,这些数据表明在血管生成和缺血性组织修复中不需要通过内皮细胞中的平滑化的Shh信号传导。通过基质细胞的Shh信号可能介导其血管生成作用。

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