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Cell sourcing for bone tissue engineering : amniotic fluid stem cells have a delayed, robust differentiation compared to mesenchymal stem cells

机译:骨组织工程的细胞来源:与间充质干细胞相比,羊水干细胞具有延迟,稳定的分化

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摘要

Cell based therapies for bone regeneration are an exciting emerging technology, but the availability of osteogenic cells is limited and an ideal cell source has not been identified. Amniotic fluid-derived stem (AFS) cells and bone-marrow derived mesenchymal stem cells (MSCs) were compared to determine their osteogenic differentiation capacity in both 2D and 3D environments. In 2D culture, the AFS cells produced more mineralized matrix but delayed peaks in osteogenic markers. Cells were also cultured on 3D scaffolds constructed of poly-e-caprolactone for 15 weeks. MSCs differentiated more quickly than AFS cells on 3D scaffolds, but mineralized matrix production slowed considerably after 5 weeks. In contrast, the rate of AFS cell mineralization continued to increase out to 15 weeks, at which time AFS constructs contained 5-fold more mineralized matrix than MSC constructs. Therefore, cell source should be taken into consideration when used for cell therapy, as the MSCs would be a good choice for immediate matrix production, but the AFS cells would continue robust mineralization for an extended period of time. This study demonstrates that stem cell source can dramatically influence the magnitude and rate of osteogenic differentiation in vitro.
机译:基于细胞的骨再生疗法是一项令人兴奋的新兴技术,但是成骨细胞的可用性有限,并且尚未确定理想的细胞来源。比较了羊水来源的干细胞(AFS)和骨髓来源的间充质干细胞(MSC),以确定它们在2D和3D环境中的成骨分化能力。在二维培养中,AFS细胞产生更多的矿化基质,但延迟了成骨标记物的峰。还将细胞在由聚-ε-己内酯构成的3D支架上培养15周。在3D支架上,MSCs的分化速度比AFS细胞快,但5周后矿化的基质生成明显减慢。相反,AFS细胞矿化的速率持续增加到15周,此时AFS构建物的矿化基质比MSC构建物多5倍。因此,当用于细胞治疗时,应考虑细胞来源,因为MSCs是立即产生基质的好选择,但AFS细胞将在很长一段时间内持续稳定的矿化作用。这项研究表明干细胞来源可以显着影响体外成骨分化的幅度和速率。

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