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首页> 外文期刊>Journal of orthopaedic research >Multi-lineage differentiation and angiogenesis potentials of pigmented villonodular synovitis derived mesenchymal stem cells - pathological implication
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Multi-lineage differentiation and angiogenesis potentials of pigmented villonodular synovitis derived mesenchymal stem cells - pathological implication

机译:色素性绒毛状结节性滑膜炎衍生的间充质干细胞的多谱系分化和血管生成潜能-病理学意义

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Pigmented villonodular synovitis (PVNS) is a benign tissue proliferation characterized by its hyper-vascularity within the lesion. The true etiology and cell source of this disease entity still remain unclear. Mesenchymal stem cells (MSCs) exist in various tissues of human body. However, it has not been clarified whether MSCs could be isolated from tissue of PVNS. Here, we isolated MSCs from PVNS (PVNS-SCs), and by comparing to the MSCs from normal synovium (Syn-SCs) of the same individual, we investigated whether PVNS-SCs differed in the capacity for multi-differentiation and inducing angiogenesis. We first demonstrated that PVNS-SCs existed in the lesion of PVNS of three individuals. Moreover, we showed PVNS-SCs had better osteogenic differentiation potential than Syn-SCs, whereas Syn-SCs had better capacity for adipogenic and chondrogenic differentiation. By genome-wide analysis of gene expression profile using a complementary DNA microarray and comparing to Syn-SCs, we identified in PVNS-SCs a distinct gene expression profile characterized by up-regulation of genes involved in angiogenesis. In vitro and in vivo studies further confirmed that PVNS-SCs had better capacities for promoting angiogenesis. In summary, the identification of PVNS-SCs in PVNS tissue and their distinct angiogenic potential may help elucidate the underlying etiology of this disease. (c) 2015 Orthopaedic Research Society. Published by Wiley Periodicals, Inc. J Orthop Res 34:395-403, 2016.
机译:色素性绒毛结节性滑膜炎(PVNS)是一种良性组织增生,其特征是病变内的血管过度增生。该病实体的真正病因和细胞来源仍不清楚。间充质干细胞(MSCs)存在于人体的各种组织中。但是,尚不清楚MSC是否可以从PVNS组织中分离出来。在这里,我们从PVNS(PVNS-SCs)中分离了MSC,并且通过与同一个体的正常滑膜(Syn-SCs)中的MSC进行比较,我们研究了PVNS-SCs在多分化和诱导血管生成的能力上是否有所不同。我们首先证明了PVNS-SCs存在于三个个体的PVNS病变中。此外,我们显示PVNS-SCs具有比Syn-SCs更好的成骨分化潜能,而Syn-SCs具有更好的成脂和软骨形成分化能力。通过使用互补DNA微阵列对基因表达谱进行全基因组分析,并与Syn-SCs进行比较,我们在PVNS-SCs中鉴定出了一个独特的基因表达谱,其特征是参与血管生成的基因上调。体外和体内研究进一步证实,PVNS-SC具有更好的促进血管生成的能力。总而言之,对PVNS组织中PVNS-SC的鉴定及其独特的血管生成潜力可能有助于阐明该疾病的潜在病因。 (c)2015骨科研究学会。由Wiley Periodicals,Inc.出版,J Orthop Res 34:395-403,2016。

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