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由材料界面驱动的单一干细胞群体的骨与软骨分化

Bone and cartilage differentiation of a single stem cell population driven by material interface.

作者信息

Donnelly Hannah, Smith Carol-Anne, Sweeten Paula E, Gadegaard Nikolaj, Meek Rm Dominic, D'Este Matteo, Mata Alvaro, Eglin David, Dalby Matthew J

机构信息

Centre for Cell Engineering, University of Glasgow, Glasgow, UK.

Division of Biomedical Engineering, University of Glasgow, Glasgow, UK.

出版信息

J Tissue Eng. 2017 May 15;8:2041731417705615. doi: 10.1177/2041731417705615. eCollection 2017 Jan-Dec.

Abstract

Adult stem cells, such as mesenchymal stem cells, are a multipotent cell source able to differentiate towards multiple cell types. While used widely in tissue engineering and biomaterials research, they present inherent donor variability and functionalities. In addition, their potential to form multiple tissues is rarely exploited. Here, we combine an osteogenic nanotopography and a chondrogenic hyaluronan hydrogel with the hypothesis that we can make a complex tissue from a single multipotent cell source with the exemplar of creating a three-dimensional bone-cartilage boundary environment. Marrow stromal cells were seeded onto the topographical surface and the temperature gelling hydrogel laid on top. Cells that remained on the nanotopography spread and formed osteoblast-like cells, while those that were seeded into or migrated into the gel remained rounded and expressed chondrogenic markers. This novel, simple interfacial environment provides a platform for anisotropic differentiation of cells from a single source, which could ultimately be exploited to sort osteogenic and chondrogenic progenitor cells from a marrow stromal cell population and to develop a tissue engineered interface.

摘要

成体干细胞,如间充质干细胞,是一种多能细胞来源,能够向多种细胞类型分化。虽然它们在组织工程和生物材料研究中被广泛应用,但存在固有的供体变异性和功能差异。此外,它们形成多种组织的潜力很少被开发利用。在此,我们将成骨纳米形貌和软骨生成透明质酸水凝胶相结合,基于这样的假设:我们可以从单一的多能细胞来源制造出复杂组织,以创建三维骨 - 软骨边界环境为例。将骨髓基质细胞接种到形貌表面,并在其上铺设温度凝胶化水凝胶。留在纳米形貌上的细胞铺展并形成成骨样细胞,而接种到凝胶中或迁移到凝胶中的细胞则保持圆形并表达软骨生成标记物。这种新颖、简单的界面环境为单一来源细胞的各向异性分化提供了一个平台,最终可用于从骨髓基质细胞群体中筛选成骨和软骨生成祖细胞,并开发组织工程界面。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/affe/5438107/8c1eedb32bda/10.1177_2041731417705615-fig1.jpg

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