首页> 外文期刊>Journal of Orthopaedic Translation >Wnt10b-overexpressing umbilical cord mesenchymal stem cells promote critical size rat calvarial defect healing by enhanced osteogenesis and VEGF-mediated angiogenesis
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Wnt10b-overexpressing umbilical cord mesenchymal stem cells promote critical size rat calvarial defect healing by enhanced osteogenesis and VEGF-mediated angiogenesis

机译:WNT10B-过度抑制脐带间充质干细胞促进临界大小大鼠颅骨缺损愈合通过增强的成骨和VEGF介导的血管生成

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Background/objectivesAccelerating the process of bone regeneration is of great interest for surgeons and basic scientists alike. Recently, umbilical cord mesenchymal stem cells (UCMSCs) are considered clinically applicable for tissue regeneration due to their noninvasive harvesting and better viability. Nonetheless, the bone regenerative ability of human UCMSCs (HUCMSCs) is largely unknown. This study aimed to investigate whether Wnt10b-overexpressing HUCMSCs have enhanced bone regeneration ability in a rat model.MethodA rat calvarial defect was performed on 8-week old male Sprague Dawley rats. Commercially purchased HUCMSCsEmp in hydrogel, HUCMSCsWnt10b in hydrogel and HUCMSCsWnt10b with IWR-1 were placed in the calvarial bone defect right after surgery on rats (N?=?8 rats for each group). Calvaria were harvested for micro-CT analysis and histology four weeks after surgery. CFU-F and multi-differentiation assay by oil red staining, alizarin red staining and RT-PCR (real-time polymerase chain reaction) were performed on HUCMSCsEmp and HUCMSCsWnt10b in vitro. Conditioned media from HUCMSCsEmp and HUCMSCsWnt10b were collected and used to treat human umbilical cord vein endothelial cells in Matrigel to access vessel formation capacity by tube formation assay.ResultsAlizarin red staining, oil red staining and RT-PCR results showed robust osteogenic differentiation but poor adipogenic differentiation ability of HUCMSCsWnt10b. Furthermore, HUCMSCsWnt10b could accelerate bone defect healing, which was likely due to enhanced angiogenesis after the HUCMSCsWnt10b treatment, because more CD31+ vessels and increased vascular endothelial growth factor-A (VEGF-A) expression were observed, compared with the HUCMSCsEmp treatment. Conditioned media from HUCMSCsWnt10b also induced endothelial cells to form vessel tubes in a tube formation assay, which could be abolished by SU5416, an angiogenesis inhibitor.ConclusionTo our knowledge, this is the first study providing empirical evidence that HUCMSCsWnt10b can enhance their ability to heal calvarial bone defects via VEGF-mediated angiogenesis.The translational potential of this articleHUCMSCsWnt10b can accelerate critical size calvaria and are a new promising therapeutic cell source for fracture nonunion healing.
机译:背景/玻璃传络骨再生过程对于外科医生和基础科学家而言非常关注。最近,由于它们的非侵入性收获和更好的活力,脐带间充质干细胞(UCMSCs)被认为是用于组织再生的临床上。尽管如此,人UCMSCs(HUCMSCs)的骨再生能力在很大程度上是未知的。该研究旨在研究Wnt10B过表达Hucmscs是否具有提高大鼠模型中的骨再生能力。在8周龄雄性Sprague Dawley大鼠上进行大鼠颅骨缺陷。在Hydrogel和Hucmscswnt10b中,用Iwr-1的Hucmscswnt10b进行市售Hucmsemp,在手术后置于大鼠的颅骨骨缺损中(n?=Δ8大鼠)。手术后四周收获Calvaria以进行微型CT分析和组织学。通过油红染色,茜素红染色和RT-PCR(实时聚合酶链反应)在Hucmscsemp和Hucmscswnt10b体外进行CFU-F和多分化测定。收集来自HUCMSEMP和HUCMSCSWNT10B的调节介质,并用于治疗Matrigel中的人脐纤维内皮细胞,通过管形成测定处理容器形成能力。培养芽孢杆菌红染色,油红染色和RT-PCR结果显示出稳健的骨质分化但令人难度的脂肪分化Hucmscswnt10b的能力。此外,HUCMSCSWNT10B可以加速骨缺损愈合,这可能是由于HUCMSCSWNT10B治疗后增强的血管生成,因为与HUCMSCSEMP处理相比,观察到更多CD31 +血管和增加的血管内皮生长因子-A(VEGF-A)表达。来自Hucmscswnt10b的调节培养基还诱导内皮细胞以在管形成测定中形成血管管,这可以通过SU5416,血管生成抑制剂。控制我们的知识,这是第一项研究,提供了HUCMSCSWNT10B可以增强其治愈颅骨的能力的经验证据骨缺损通过VEGF介导的血管生成。该文献的平移潜力可以加速临界大小的Calvaria,并且是用于骨折非愈合愈合的新有前途的治疗细胞来源。

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