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Physicochemical Characterization of Ferumoxytol Heparin and Protamine Nanocomplexes for improved magnetic labeling of stem cells

机译:阿魏酸肝素和鱼精蛋白纳米复合物的理化特性可改善干细胞的磁性标记

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摘要

Stem cell-based therapies have become a major focus in regenerative medicine and to treat diseases. A straightforward approach combining three drugs, heparin (H), protamine (P) with ferumoxytol (F) in the form of nanocomplexes (NCs) effectively labeled stem cells for cellular MRI. We report on the physicochemical characteristics for optimizing the H, P, and F components in different ratios, and mixing sequences, producing NCs that varied in hydrodynamic size. NC size depended on the order in which drugs were mixed in media. Electron microscopy of HPF or FHP showed that F was located on the surface of spheroidal shaped HP complexes. Human stem cells incubated with FHP NCs resulted in a significantly greater iron concentration per cell compared to that found in HPF NCs with the same concentration of F. These results indicate that FHP could be useful for labeling stem cells in translational studies in the clinic.
机译:基于干细胞的疗法已成为再生医学和疾病治疗的主要重点。一种简单的方法将肝素(H),鱼精蛋白(P)和阿魏酸(F)三种药物以纳米复合物(NCs)的形式结合在一起,可以有效地标记干细胞以进行细胞MRI检查。我们报告了理化特性,以优化H,P和F组分的不同比例和混合顺序,从而产生了流体动力学尺寸各不相同的NC。 NC的大小取决于药物在介质中混合的顺序。 HPF或FHP的电子显微镜显示,F位于球形HP复合物的表面。与具有相同F浓度的HPF NCs相比,与FHP NCs孵育的人干细胞导致每个细胞的铁浓度明显更高。这些结果表明FHP在临床翻译研究中可用于标记干细胞。

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