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Autonomous magnetic labelling of functional mesenchymal stem cells for improved traceability and spatial control in cell therapy applications

机译:功能性间充质干细胞的自主磁性标记可改善细胞治疗应用中的可追溯性和空间控制

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摘要

Mesenchymal stem cells (MSCs) represent a valuable resource for regenerative medicine treatments for orthopaedic repair and beyond. Following developments in isolation, expansion and differentiation protocols, efforts to promote clinical translation of emerging cellular strategies now seek to improve cell delivery and targeting. This study shows efficient live MSC labelling using silica‐coated magnetic particles (MPs), which enables 3D tracking and guidance of stem cells. A procedure developed for the efficient and unassisted particle uptake was shown to support MSC viability and integrity, while surface marker expression and MSC differentiation capability were also maintained. In vitro, MSCs showed a progressive decrease in labelling over increasing culture time, which appeared to be linked to the dilution effect of cell division, rather than to particle release, and did not lead to detectable secondary particle uptake. Labelled MSC populations demonstrated magnetic responsiveness in vitro through directed migration in culture and, when seeded onto a scaffold, supporting MP‐based approaches to cell targeting. The potential of these silica‐coated MPs for MRI cell tracking of MSC populations was validated in 2D and in a cartilage repair model following cell delivery. These results highlight silica‐coated magnetic particles as a simple, safe and effective resource to enhance MSC targeting for therapeutic applications and improve patient outcomes. © 2016 The Authors Journal of Tissue Engineering and Regenerative Medicine Published by John Wiley & Sons Ltd.
机译:间充质干细胞(MSC)代表了骨科修复及其他领域的再生医学治疗的宝贵资源。随着隔离,扩展和分化方案的发展,促进新兴细胞策略的临床翻译的努力现在寻求改善细胞递送和靶向。这项研究显示了使用涂有二氧化硅的磁性颗粒(MPs)进行的有效MSC实时标记,可以对干细胞进行3D跟踪和引导。研究表明,为有效而无辅助地摄取颗粒而开发的程序可支持MSC的生存能力和完整性,同时还可保持表面标记物表达和MSC分化能力。在体外,MSCs随着培养时间的增加,标记逐渐减少,这似乎与细胞分裂的稀释作用有关,而不是与颗粒释放有关,并且没有导致可检测的次级颗粒摄取。标记的MSC群体通过在培养物中的定向迁移在体外表现出磁响应性,当接种到支架上时,支持基于MP的细胞靶向方法。这些二氧化硅涂层的MPs在MSC群体的MRI细胞追踪中的潜力已在细胞递送后的二维和软骨修复模型中得到验证。这些结果突出了涂有二氧化硅的磁性颗粒,它是一种简单,安全和有效的资源,可增强MSC在治疗应用中的靶向性并改善患者预后。 ©2016作者:《组织工程与再生医学杂志》,作者:John Wiley&SonsLtd。

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