Department of Oral and Maxillofacial Surgery and Pharmacology, University of Pennsylvania School of Dental Medicine, 240 South 40th Street, Philadelphia, PA19104, USA.
Division of Plastic and Reconstructive Surgery, University of Pennsylvania Perelman School of Medicine and Children's Hospital of Philadelphia, 3400 Civic Center Blvd, Philadelphia, PA, 19104, USA.
Sci Rep. 2018 Apr 26;8(1):6634. doi: 10.1038/s41598-018-24888-w.
Despite the promising neuro-regenerative capacities of stem cells, there is currently no licensed stem cell-based product in the repair and regeneration of peripheral nerve injuries. Here, we explored the potential use of human gingiva-derived mesenchymal stem cells (GMSCs) as the only cellular component in 3D bio-printed scaffold-free neural constructs that were transplantable to bridge facial nerve defects in rats. We showed that GMSCs have the propensity to aggregate into compact 3D-spheroids that could produce their own matrix. When cultured under either 2D- or 3D-collagen scaffolds, GMSC spheroids were found to be more capable of differentiating into both neuronal and Schwann-like cells than their adherent counterparts. Using a scaffold-free 3D bio-printer system, nerve constructs were printed from GMSC spheroids in the absence of exogenous scaffolds and allowed to mature in a bioreactor. In vivo transplantation of the GMSC-laden nerve constructs promoted regeneration and functional recovery when used to bridge segmental defects in rat facial nerves. Our findings suggest that GMSCs represent an easily accessible source of MSCs for 3D bio-printing of scaffold-free nervous tissue constructs with promising potential application for repair and regeneration of peripheral nerve defects.
尽管干细胞具有有前景的神经再生能力,但目前在修复和再生周围神经损伤方面,还没有获得许可的基于干细胞的产品。在这里,我们探索了人牙龈来源间充质干细胞(GMSC)作为唯一细胞成分在 3D 无支架生物打印支架中的潜在用途,可用于移植以桥接大鼠面神经缺损的神经构建体。我们表明,GMSC 有聚集形成紧凑 3D 球体的倾向,这些球体可以产生自己的基质。当在 2D 或 3D 胶原支架中培养时,发现 GMSC 球体比其贴壁对应物更能够分化为神经元和许旺样细胞。使用无支架 3D 生物打印机系统,可以从 GMSC 球体中打印出无支架的神经构建体,而无需外源性支架,并在生物反应器中使其成熟。当用于桥接大鼠面神经的节段性缺损时,负载 GMSC 的神经构建体的体内移植促进了再生和功能恢复。我们的研究结果表明,GMSC 代表了一种易于获得的 MSC 来源,可用于 3D 无支架神经组织构建体的生物打印,具有修复和再生周围神经缺损的潜在应用前景。