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Long-Term/Bioinert Labeling of Rat Mesenchymal Stem Cells with PVA-Gd Conjugates and MRI Monitoring of the Labeled Cell Survival after Intramuscular Transplantation

机译:PVA-Gd共轭物对大鼠间充质干细胞的长期/生物惰性标记以及肌内移植后标记细胞存活率的MRI监测

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摘要

Noninvasive in vivo imaging of transplanted stem cells is an effective method to clarify the mechanisms involved in stem cell transplantation therapy. We labeled rat mesenchymal stem cells (MSCs) with water-soluble magnetic resonance imaging (MRI) contrast agent poly(vinyl alcohol)-gadolinium (PVA-Gd) in order to ascertain the fate of transplanted MSCs in vivo. PVA-Gd was retained and localized in the cytosolic compartment of MSCs for a longer period of time. The effect of PVA-Gd labeling on MSC proliferation was much less than that of the commercially available contrast agent ProHance, and the labeled MSCs were found to have osteoblastic differentiation ability. To study the MSC lifetime in vivo, MSCs were seeded and trapped in the cytocompatible three-dimensional porous scaffolds of Spongel and transplanted. The MRI signal attributed to MSCs was eliminated from the transplanted site in 14 days. Because free PVA-Gd was rapidly eliminated from the site, this signal reduction indicated MSC death in the transplantation site. The low efficiency of MSC transplantation for ischemic tissue may be due to their short lifetime, making it important to develop highly effective stem cell transplantation systems that address cell number, injection position, and cell formulation (suspension, sheet, and aggregates). Our cell survival tracking system would be a very powerful tool to this end and would be applicable in clinical cell therapies.
机译:移植的干细胞的非侵入性体内成像是阐明干细胞移植治疗机制的有效方法。我们用水溶性磁共振成像(MRI)造影剂聚(乙烯醇)-d(PVA-Gd)标记大鼠间充质干细胞(MSC),以确定体内移植MSC的命运。 PVA-Gd保留并定位在MSC的胞质区隔更长的时间。 PVA-Gd标记对MSC增殖的影响远小于市售造影剂ProHance,并且发现标记的MSC具有成骨细胞分化能力。为了研究MSC在体内的寿命,将MSC接种并捕获在海绵状细胞相容的三维多孔支架中并进行移植。在14天内从移植部位消除了归因于MSC的MRI信号。由于游离的PVA-Gd已迅速从该位点清除,此信号减少表明MSC在移植位点死亡。 MSC缺血组织的移植效率低可能是由于它们的生命周期短,因此开发能够解决细胞数量,注射位置和细胞组成(悬浮液,薄片和聚集体)的高效干细胞移植系统非常重要。为此,我们的细胞存活追踪系统将是一个非常强大的工具,并将应用于临床细胞疗法。

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