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通过甘露糖加权化学交换饱和转移磁共振成像对未标记间充质基质细胞进行体内追踪

In vivo tracking of unlabelled mesenchymal stromal cells by mannose-weighted chemical exchange saturation transfer MRI.

作者信息

Yuan Yue, Wang Congxiao, Kuddannaya Shreyas, Zhang Jia, Arifin Dian R, Han Zheng, Walczak Piotr, Liu Guanshu, Bulte Jeff W M

机构信息

The Russell H. Morgan Department of Radiology and Radiological Science, Division of MR Research, The Johns Hopkins University School of Medicine, Baltimore, MD, USA.

Cellular Imaging Section and Vascular Biology Program, Institute for Cell Engineering, The Johns Hopkins University School of Medicine, Baltimore, MD, USA.

出版信息

Nat Biomed Eng. 2022 May;6(5):658-666. doi: 10.1038/s41551-021-00822-w. Epub 2022 Feb 7.

Abstract

The tracking of the in vivo biodistribution of transplanted human mesenchymal stromal cells (hMSCs) relies on reporter genes or on the addition of exogenous imaging agents. However, reporter genes and exogenous labels may require bespoke manufacturing and regulatory processes if used in cell therapies, and the labels may alter the cells' properties and are diluted on cellular division. Here we show that high-mannose N-linked glycans, which are abundantly expressed on the surface of hMSCs, can serve as a biomarker for the label-free tracking of transplanted hMSCs by mannose-weighted chemical exchange saturation transfer (CEST) magnetic resonance imaging (MRI). For live mice with luciferase-transfected hMSCs transplanted into their brains, post-mortem fluorescence staining with a mannose-specific lectin showed that increases in the CEST MRI signal, which correlated well with the bioluminescence intensity of viable hMSCs for 14 days, corresponded to the presence of mannose. In vitro, osteogenically differentiated hMSCs led to lower CEST MRI signal intensities owing to the concomitantly reduced expression of mannose. The label-free imaging of hMSCs may facilitate the development and testing of cell therapies.

摘要

移植的人间充质基质细胞(hMSCs)体内生物分布的追踪依赖于报告基因或添加外源性成像剂。然而,如果用于细胞治疗,报告基因和外源性标记可能需要定制生产和监管流程,并且这些标记可能会改变细胞特性,并在细胞分裂时被稀释。在此,我们表明,hMSCs表面大量表达的高甘露糖型N-连接聚糖可作为生物标志物,通过甘露糖加权化学交换饱和转移(CEST)磁共振成像(MRI)对移植的hMSCs进行无标记追踪。对于将荧光素酶转染的hMSCs移植到大脑中的活体小鼠,用甘露糖特异性凝集素进行的死后荧光染色显示,CEST MRI信号的增加与存活hMSCs的生物发光强度在14天内具有良好的相关性,这与甘露糖的存在相对应。在体外,成骨分化的hMSCs由于甘露糖表达的同时降低,导致CEST MRI信号强度降低。hMSCs的无标记成像可能会促进细胞治疗的开发和测试。

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