Kostura Lisa, Kraitchman Dara L, Mackay Alastair M, Pittenger Mark F, Bulte Jeff W M
Osiris Therapeutics Inc., Baltimore, MD, USA.
NMR Biomed. 2004 Nov;17(7):513-7. doi: 10.1002/nbm.925.
Magnetic resonance (MR) tracking of superparamagnetic iron oxide (SPIO)-labeled cells is a relatively new technique to non-invasively determine the biodistribution and migration of transplanted stem cells. A number of studies have recently reported encouraging results in the use of bone marrow-derived mesenchymal stem cells (MSCs) for repair of a variety of tissues. For MR tracking of SPIO-labeled MSCs, it is important to determine the effect that the magnetic labeling procedure may have on the differentiation capacity of labeled MSCs. Human MSCs were labeled with poly-L-lysine (PLL)-coated Feridex, with Feridex being an FDA-approved SPIO formulation in an off-label application, and assayed for cellular differentiation using five different assays. As compared with unlabeled controls, labeled MSCs exhibited an unaltered viability, proliferated similarly, and underwent normal adipogenic and osteogenic differentiation. However, there was a marked inhibition of chondrogenesis. The blocking of chondrogenic activity was mediated by the Feridex, rather than by the transfection agent (PLL). This is the first report showing Feridex blocking of cellular differentiation down a specific pathway (while not affecting viability and proliferation), and caution should thus be exercised when using Feridex-labeled MSCs for chondrogenic MR tracking studies. On the other hand, no detrimental effects of Feridex-labeling are anticipated for MR-guided osteogenic or adipogenic transplantation studies.
超顺磁性氧化铁(SPIO)标记细胞的磁共振(MR)追踪是一种相对较新的技术,用于非侵入性地确定移植干细胞的生物分布和迁移情况。最近有多项研究报告了使用骨髓间充质干细胞(MSC)修复多种组织的令人鼓舞的结果。对于SPIO标记的MSC的MR追踪,确定磁性标记程序可能对标记的MSC的分化能力产生的影响非常重要。人MSC用聚-L-赖氨酸(PLL)包被的菲立磁进行标记,菲立磁是一种FDA批准的SPIO制剂,但属于非标签应用,并用五种不同的测定法检测细胞分化情况。与未标记的对照相比,标记的MSC表现出未改变的活力,增殖情况相似,并且经历正常的脂肪生成和成骨分化。然而,软骨生成受到明显抑制。软骨生成活性的阻断是由菲立磁介导的,而不是由转染剂(PLL)介导的。这是第一份显示菲立磁阻断细胞沿特定途径分化(同时不影响活力和增殖)的报告,因此在将菲立磁标记的MSC用于软骨生成MR追踪研究时应谨慎。另一方面,对于MR引导的成骨或脂肪生成移植研究,预计菲立磁标记不会产生有害影响。