Pharmaceutical Production Research Facility, Schulich School of Engineering, University of Calgary, Calgary, Alberta, Canada.
Department of Clinical Neurosciences, Cumming School of Medicine, University of Calgary, Calgary, Alberta, Canada.
J Tissue Eng Regen Med. 2017 Dec;11(12):3385-3397. doi: 10.1002/term.2252. Epub 2017 Feb 8.
Peripheral nerve injury affects 2.8% of trauma patients with severe cases often resulting in long-lived permanent disability, despite nerve repair surgery. Autologous Schwann cell (SC) therapy currently provides an exciting avenue for improved outcomes for these patients, particularly with the possibility to derive SCs from easily-accessible adult skin. However, due to current challenges regarding the efficient expansion of these cells, further optimization is required before they can be seriously considered for clinical application. Here, a microcarrier-based bioreactor system is proposed as a means to scale-up large numbers of adult skin-derived SCs for transplantation into the injured nerve. Bioprocessing parameters that allow for the expansion of adult rodent SCs have been identified, whilst maintaining similar rates of proliferation (as compared to static-grown SCs), expression of SC markers, and, importantly, their capacity to myelinate axons following transplant into the injured sciatic nerve. The same bioprocessing parameters can be applied to SCs derived from adult human skin, and like rodent cells, they sustain their proliferative potential and expression of SC markers. Taken together, this dataset demonstrates the basis for a scalable bioprocess for the production of SCs, an important step towards clinical use of these cells as an adjunct therapy for nerve repair. Copyright © 2017 John Wiley & Sons, Ltd.
周围神经损伤影响 2.8%的创伤患者,严重者常导致长期永久性残疾,尽管进行了神经修复手术。自体雪旺细胞 (SC) 治疗目前为这些患者提供了改善预后的令人兴奋的途径,特别是有可能从易于获得的成人皮肤中获得 SC。然而,由于目前在这些细胞的有效扩增方面存在挑战,因此在考虑将其用于临床应用之前,需要进一步进行优化。在这里,提出了一种基于微载体的生物反应器系统,作为将大量成人皮肤来源的 SC 扩增用于移植到损伤神经的手段。已经确定了允许扩增成年啮齿动物 SC 的生物加工参数,同时保持与静态生长的 SC 相似的增殖率(与静态生长的 SC 相比),SC 标志物的表达,并且重要的是,它们在移植到损伤的坐骨神经后有髓鞘形成轴突的能力。相同的生物加工参数可应用于源自成人皮肤的 SC,并且与啮齿动物细胞一样,它们保持其增殖潜力和 SC 标志物的表达。综上所述,该数据集为 SC 的生产提供了可扩展的生物处理基础,这是将这些细胞作为神经修复的辅助治疗方法临床应用的重要一步。版权所有 © 2017 约翰威立父子公司