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首页> 外文期刊>Nature medicine >Self-assembling nanocomplexes by combining ferumoxytol, heparin and protamine for cell tracking by magnetic resonance imaging
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Self-assembling nanocomplexes by combining ferumoxytol, heparin and protamine for cell tracking by magnetic resonance imaging

机译:通过组合阿魏酸,肝素和鱼精蛋白的自组装纳米复合物通过磁共振成像跟踪细胞

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摘要

We report on a new straightforward magnetic cell-labeling approach that combines three US Food and Drug Administration (FDA)-approved drugs - ferumoxytol, heparin and protamine - in serum-free medium to form self-assembling nanocomplexes that effectively label cells for in vivo magnetic resonance imaging (MRI). We observed that the ferumoxytol-heparin-protamine (HPF) nanocomplexes were stable in serum-free cell culture medium. HPF nanocomplexes show a threefold increase in T2 relaxivity compared to ferumoxytol. Electron microscopy showed internalized HPF in endosomes, which we confirmed by Prussian blue staining of labeled cells. There was no long-term effect or toxicity on cellular physiology or function of HPF-labeled hematopoietic stem cells, bone marrow stromal cells, neural stem cells or T cells when compared to controls. In vivo MRI detected 1,000 HPF-labeled cells implanted in rat brains. This HPF labeling method should facilitate the monitoring by MRI of infused or implanted cells in clinical trials.
机译:我们报告了一种新的直接磁性细胞标记方法,该方法在无血清培养基中结合了美国食品和药物管理局(FDA)批准的三种药物-阿魏酸,肝素和鱼精蛋白,形成了可自我标记的纳米复合物,可有效标记体内细胞磁共振成像(MRI)。我们观察到ferumoxytol-肝素-鱼精蛋白(HPF)纳米复合物在无血清细胞培养基中是稳定的。与阿魏酸相比,HPF纳米复合物的T2弛豫性提高了三倍。电子显微镜显示内体中的HPF内在化,我们通过标记细胞的普鲁士蓝染色证实了这一点。与对照组相比,对HPF标记的造血干细胞,骨髓基质细胞,神经干细胞或T细胞的细胞生理学或功能没有长期影响或毒性。体内MRI检测到1,000个HPF标记的细胞植入了大鼠大脑。这种HPF标记方法应有助于在临床试验中通过MRI监测注入或植入的细胞。

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