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Lipidic spherulites as magnetic resonance imaging contrast agents

机译:脂质球晶作为磁共振成像造影剂

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摘要

Magnetic resonance imaging is an excellent technique to achieve anatomical details and highly resolved images. The search for efficient contrast agents to increase the signal to background ratio led us to evaluate paramagnetic spherulites as potential Magnetic Resonance imaging (MRI) contrast agents. Spherulites are supramolecular assemblies, made of lipidic concentric multilayers, able to encapsulate with high efficiency soluble macromolecules. Despite their highly interesting structure, spherulites have never been proposed as imaging agents. We proposed here three approaches to render spherulites paramagnetic: encapsulating a soluble contrastophore, inserting a lipidic contrastophore derivative or grafting a soluble contrastophore at the surface of the spherulites. Following similar strategies, liposomes were prepared for comparison. The conservation of the spherulite structure, throughout these three strategies, was shown by cryoelectron microscopy and small angle light scattering. The effect of the paramagnetic spherulites was studied by magnetic resonance imaging at different magnetic fields. The results showed that insertion of a contrastophore lipidic derivative into spherulite bilayers and grafting a contrastophore at the surface of the spherulites were the two strategies which led to the highest MRI contrast improvement.
机译:磁共振成像是获得解剖学细节和高度分辨图像的出色技术。寻找有效的造影剂以增加信噪比使我们评估了顺磁球晶作为潜在的磁共振成像(MRI)造影剂。球晶是由脂质同心多层制成的超分子组装体,能够用高效可溶性大分子包封。尽管其高度有趣的结构,但从未提出将球晶用作成像剂。我们在这里提出了三种使球晶顺磁性的方法:封装可溶性造影剂,插入脂质造影剂衍生物或将可溶性造影剂接枝在球晶表面。按照相似的策略,制备脂质体用于比较。在这三种策略中,球晶结构的守恒通过冷冻电子显微镜和小角度光散射得以显示。通过在不同磁场下的磁共振成像研究了顺磁球晶的作用。结果表明,将造影剂脂质衍生物插入球晶双层中并在球晶表面接枝造影剂是导致最高的MRI对比度改善的两种策略。

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