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Applicability of cord blood‐derived unrestricted somatic stem cells in tissue engineering concepts

机译:脐带血不受限制的体干细胞在组织工程学中的适用性

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摘要

: Cell‐based tissue engineering concepts are becoming an important therapeutic alternative in the treatment of traumatic or chronic skeletal diseases. Here, we have evaluated cord blood‐derived unrestricted somatic stem cells (USSCs) for use in bone and cartilage repair strategies. : This type of somatic stem cell can be generated from cord blood with a current rate of 29% and we have documented excellent proliferation potential to high passage numbers. The cells have an initial population doubling time of 39 h, which slightly decreased with increasing passage number, but cells maintained their proliferation abilities up to passage 23. Cells clearly differentiated towards chondrogenic, adipogenic and osteogenic lineage as shown by reverse transcription‐polymerase chain reaction as well as by histological, biochemical and immunohistochemical stains. Differentiation potential of USSCs was observed at passage 6, passage 15 and passage 21. In addition, USSCs showed increased secretion of vascular endothelial growth factor (VEGF) during osteogenic differentiation, as well as expression of key markers of angiogenesis such as vascular endothelial growth factor receptor‐2 and platelet/endothelial cell adhesion molecule. : USSCs when transplanted into a bone defect might support the repair process not only by pure remineralization but also by installation of angiogenic environment.
机译::基于细胞的组织工程学概念正在成为治疗创伤性或慢性骨骼疾病的重要治疗选择。在这里,我们评估了脐带血来源的无限制体细胞干细胞(USSC)用于骨骼和软骨修复策略。 :这种体细胞干细胞可以从脐带血中以29%的电流产生,并且我们已经证明了高传代数具有极好的增殖潜力。细胞的初始种群倍增时间为39小时,随着传代次数的增加而略有下降,但细胞一直维持到第23代时仍具有增殖能力。如逆转录聚合酶链反应所示,细胞明显分化为成软骨,成脂和成骨谱系以及组织学,生化和免疫组化染色。在第6代,第15代和第21代观察到了USSCs的分化潜能。此外,USSCs在成骨分化过程中显示出血管内皮生长因子(VEGF)的分泌增加,以及血管生成关键标志物如血管内皮生长因子的表达受体2和血小板/内皮细胞粘附分子。 :USSCs移植到骨缺损中后,不仅可以通过纯矿化来支持修复过程,还可以通过安装血管生成环境来支持修复过程。

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