首页> 外文期刊>International journal of biological sciences >Exosomes Secreted by Human-Induced Pluripotent Stem Cell-Derived Mesenchymal Stem Cells Repair Critical-Sized Bone Defects through Enhanced Angiogenesis and Osteogenesis in Osteoporotic Rats
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Exosomes Secreted by Human-Induced Pluripotent Stem Cell-Derived Mesenchymal Stem Cells Repair Critical-Sized Bone Defects through Enhanced Angiogenesis and Osteogenesis in Osteoporotic Rats

机译:人类诱导的多能干细胞衍生的间充质干细胞分泌的外泌体通过增强的血管生成和成骨作用,在骨质疏松大鼠中修复临界骨缺损。

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Bone defects caused by trauma, severe infection, tumor resection and skeletal abnormalities are common osteoporotic conditions and major challenges in orthopedic surgery, and there is still no effective solution to this problem. Consequently, new treatments are needed to develop regeneration procedures without side effects. Exosomes secreted by mesenchymal stem cells (MSCs) derived from human induced pluripotent stem cells (hiPSCs, hiPSC-MSC-Exos) incorporate the advantages of both MSCs and iPSCs with no immunogenicity. However, there are no reports on the application of hiPSC-MSC-Exos to enhance angiogenesis and osteogenesis under osteoporotic conditions. HiPSC-MSC-Exos were isolated and identified before use. The effect of hiPSC-MSC-Exos on the proliferation and osteogenic differentiation of bone marrow MSCs derived from ovariectomized (OVX) rats (rBMSCs-OVX) in vitro were investigated. In vivo, hiPSC-MSC-Exos were implanted into critical size bone defects in ovariectomized rats, and bone regeneration and angiogenesis were examined by microcomputed tomography (micro-CT), sequential fluorescent labeling analysis, microfil perfusion and histological and immunohistochemical analysis. The results in vitro showed that hiPSC-MSC-Exos enhanced cell proliferation and alkaline phosphatase (ALP) activity, and up-regulated mRNA and protein expression of osteoblast-related genes in rBMSCs-OVX. In vivo experiments revealed that hiPSC-MSC-Exos dramatically stimulated bone regeneration and angiogenesis in critical-sized calvarial defects in ovariectomized rats. The effect of hiPSC-MSC-Exos increased with increasing concentration. In this study, we showed that hiPSC-MSC-Exos effectively stimulate the proliferation and osteogenic differentiation of rBMSCs-OVX, with the effect increasing with increasing exosome concentration. Further analysis demonstrated that the application of hiPSC-MSC-Exos+β-TCP scaffolds promoted bone regeneration in critical-sized calvarial defects by enhancing angiogenesis and osteogenesis in an ovariectomized rat model.
机译:由创伤,严重感染,肿瘤切除和骨骼异常引起的骨缺损是常见的骨质疏松症,是整形外科的主要挑战,目前仍没有有效的解决方案。因此,需要新的疗法来发展再生程序而没有副作用。由人诱导的多能干细胞(hiPSC,hiPSC-MSC-Exos)衍生的间充质干细胞(MSC)分泌的外泌体兼具MSC和iPSC的优势,而没有免疫原性。然而,没有关于在骨质疏松条件下应用hiPSC-MSC-Exos增强血管生成和成骨的报道。 HiPSC-MSC-Exos在使用前已被分离和鉴定。研究了hiPSC-MSC-Exos对去卵巢(OVX)大鼠(rBMSCs-OVX)骨髓MSCs增殖和成骨分化的影响。在体内,将hiPSC-MSC-Exos植入卵巢切除大鼠的临界大小的骨缺损中,并通过微计算机断层扫描(micro-CT),顺序荧光标记分析,微丝灌注以及组织学和免疫组织化学分析检查骨再生和血管生成。体外研究结果表明,hiPSC-MSC-Exos增强了rBMSCs-OVX中成骨相关基因的细胞增殖和碱性磷酸酶(ALP)活性,并上调了成骨相关基因的mRNA和蛋白质表达。体内实验表明,hiPSC-MSC-Exos可以极大地刺激卵巢切除大鼠临界大小的颅骨缺损中的骨再生和血管生成。 hiPSC-MSC-Exos的作用随浓度增加而增加。在这项研究中,我们表明hiPSC-MSC-Exos有效地刺激了rBMSCs-OVX的增殖和成骨分化,并且随着外泌体浓度的增加其效果增加。进一步的分析表明,hiPSC-MSC-Exos +β-TCP支架的应用通过在卵巢切除大鼠模型中增强血管生成和成骨作用,促进了关键大小颅盖缺损的骨再生。

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