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FTY720 Promotes Local Microvascular Network Formation and Regeneration of Cranial Bone Defects

机译:FTY720促进局部微血管网络的形成和颅骨缺损的再生。

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摘要

The calvarial bone microenvironment contains a unique progenitor niche that should be considered for therapeutic manipulation when designing regeneration strategies. Recently, our group demonstrated that cells isolated from the dura are multipotent and exhibit expansion potential and robust mineralization on biodegradable constructs in vitro. In this study, we evaluate the effectiveness of healing critical-sized cranial bone defects by enhancing microvascular network growth and host dura progenitor trafficking to the defect space pharmacologically by delivering drugs targeted to sphingosine 1-phosphate (S1P) receptors. We demonstrate that delivery of pharmacological agonists to (S1P) receptors S1P1 and S1P3 significantly increase bone ingrowth, total microvessel density, and smooth muscle cell investment on nascent microvessels within the defect space. Further, in vitro proliferation and migration studies suggest that selective activation of S1P3 promotes recruitment and growth of osteoblastic progenitors from the meningeal dura mater.
机译:颅盖骨微环境包含独特的祖细胞壁iche,在设计再生策略时应考虑对其进行治疗操作。最近,我们的小组证明了从硬脑膜分离的细胞具有多能性,并且在体外可生物降解的构建体上具有扩展潜力和强大的矿化作用。在这项研究中,我们通过增强微血管网络的生长并通过递送靶向1磷酸鞘氨醇(S1P)受体的药物,通过药理学方法将硬脑膜祖硬脑膜贩运到缺损空间,评估了治疗关键性颅骨缺损的有效性。我们证明向(S1P)受体S1P1和S1P3传递药理激动剂会显着增加骨向内生长,总微血管密度以及缺陷空间内新生微血管上的平滑肌细胞投资。此外,体外增殖和迁移研究表明,S1P3的选择性激活促进了来自脑膜硬脑膜的成骨祖细胞的募集和生长。

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