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首页> 外文期刊>Molecular medicine reports >Tracking of mesenchymal stem cells labeled with gadolinium diethylenetriamine pentaacetic acid by 7T magnetic resonance imaging in a model of cerebral ischemia
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Tracking of mesenchymal stem cells labeled with gadolinium diethylenetriamine pentaacetic acid by 7T magnetic resonance imaging in a model of cerebral ischemia

机译:7T磁共振成像在脑缺血模型中追踪二乙tri三乙酸五乙酸标记的间充质干细胞

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Progress in the development of stem cell and gene therapy requires repeatable and non-invasive techniques to monitor the survival and integration of stem cells in vivo with a high temporal and spatial resolution. The purpose of the present study was to examine the feasibility of using the standard contrast agent gadolinium diethylenetriamine pentaacetic acid (Gd-DTPA) to label rat mesenchymal stem cells (MSCs) for stem cell tracking. MSCs, obtained from the bilateral femora of rats, were cultured and propagated. The non-liposomal lipid transfection reagent effectene was then used to induce the intracellular uptake of Gd-DTPA. Electron microscopy was used to detect the distribution of Gd-DTPA particles in the MSCs. The labeling efficiency of the Gd-DTPA particles in the MSCs was determined using spectrophotometry, and MTT and trypan blue exclusion assays were used to evaluate the viability and proliferation of the labeled MSCs. T1-weighted magnetic resonance imaging (MRI) was used to observe the labeled cells in vitro and in the rat brain. Gd-DTPA particles were detected inside the MSCs using transmission electron microscopy and a high labeling efficiency was observed. No difference was observed in cell viability or proliferation between the labeled and unlabeled MSCs (P>0.05). In the in vitro T1-weighted MRI and in the rat brain, a high signal intensity was observed in the labeled MSCs. The T1-weighted imaging of the labeled cells revealed a significantly higher signal intensity compared with that of the unlabeled cells (P<0.05) and the T1 values were significantly lower. The function of the labeled MSCs demonstrated no change following Gd-DTPA labeling, with no evident adverse effect on cell viability or proliferation. Therefore, a change in MR signal intensity was detected in vitro and in vivo, suggesting Gd-DTPA can be used to label MSCs for MRI tracking.
机译:干细胞和基因疗法的开发进展需要可重复的非侵入性技术,以高时空分辨率监测体内干细胞的存活和整合。本研究的目的是检验使用标准造影剂di二亚乙基三胺五乙酸(Gd-DTPA)标记大鼠间充质干细胞(MSC)进行干细胞追踪的可行性。培养并繁殖从大鼠双侧股骨获得的MSC。然后将非脂质体脂质转染试剂效应子诱导Gd-DTPA的细胞内摄取。用电子显微镜检测MSC中Gd-DTPA颗粒的分布。使用分光光度法确定MSC中Gd-DTPA颗粒的标记效率,并使用MTT和锥虫蓝排除法评估标记MSC的生存力和增殖。 T1加权磁共振成像(MRI)用于在体外和在大鼠脑中观察标记的细胞。使用透射电子显微镜在MSC内部检测到Gd-DTPA颗粒,并观察到高标记效率。在标记的和未标记的MSC之间,未观察到细胞活力或增殖的差异(P> 0.05)。在体外T1加权MRI和大鼠脑中,在标记的MSC中观察到高信号强度。与未标记细胞相比,标记细胞的T1加权成像显示出明显更高的信号强度(P <0.05),而T1值则明显更低。标记的MSC的功能在Gd-DTPA标记后没有显示变化,对细胞活力或增殖没有明显的不利影响。因此,在体外和体内都检测到了MR信号强度的变化,表明Gd-DTPA可用于标记MSC进行MRI跟踪。

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