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Gadonanotubes as magnetic nanolabels for stem cell detection.

机译:Gadonanotubes作为用于干细胞检测的磁性纳米标记。

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Stem cell-based therapies have emerged as a promising approach in regenerative medicine. In the development of such therapies, the demand for imaging technologies that permit the noninvasive monitoring of transplanted stem cells in vivo is growing. Here, we report the performance of gadolinium-containing carbon nanocapsules, or gadonanotubes (GNTs), as a new T-weighted magnetic resonance imaging (MRI) intracellular labeling agent for pig bone marrow-derived mesenchymal stem cells (MSCs). Without the use of a transfection agent, micromolar concentrations of GNTs can deliver up to 10 Gd(3+) ions per cell without compromising cell viability, differentiation potential, proliferation pattern, and phenotype. Imaging 10 x 10 GNT-labeled MSCs demonstrates a nearly two-fold reduction in T relaxation time when compared to unlabeled MSCs at 1.5 T in a clinical MRI scanner, which easily permits the discrimination of GNT-labeled MSCs in a T-weighted MR image. It is anticipated that GNTs will allow in vivo tracking of GNT-labeled MSCs, as well as other mammalian cell types, by T-weighted imaging with greater efficacy than other current technologies now allow.
机译:基于干细胞的疗法已成为再生医学中一种有前途的方法。在这种疗法的发展中,对允许在体内无创监测移植的干细胞的成像技术的需求正在增长。在这里,我们报告含pig的碳纳米胶囊或gadonanotubes(GNTs)作为猪骨髓源性间充质干细胞(MSC)的新型T加权磁共振成像(MRI)细胞内标记剂的性能。在不使用转染剂的情况下,微摩尔浓度的GNTs可以在不损害细胞活力,分化潜能,增殖模式和表型的情况下,每个细胞释放10 Gd(3+)离子。在临床MRI扫描仪中,对10 x 10 GNT标记的MSC进行成像显示,与1.5 T时未标记的MSC相比,T弛豫时间减少了近两倍,这很容易在T加权MR图像中区分GNT标记的MSC。 。可以预期,GNTs将通过T加权成像以比目前其他当前技术更大的功效,在体内追踪GNT标记的MSC以及其他哺乳动物细胞类型。

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