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Alginate-lanthanide microspheres for MRI-guided embolotherapy

机译:海藻酸盐-镧系元素微球用于MRI引导栓塞治疗

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摘要

In cancer therapy, a promising treatment option to accomplish a high tumor-to-normal-tissue ratio is endovascular intervention with microsized particles, such as embolotherapy. In this study, alginate microspheres (ams) were prepared with the JetCutter technique, which is based on cutting a sodium alginate solution jet stream into small droplets of uniform size which are then cross-linked with different lanthanides or iron-III, resulting in microspheres of a predefined size which can be visualized by magnetic resonance imaging (MRI). The microspheres were investigated for their size and morphology (light microscopy and scanning electron microscopy analysis), cation content and MRI properties. The lanthanide-ams formulations, with a uniform size of 250 μm and a cation content between 0.72-0.94%, showed promising results for MR imaging. This was further demonstrated for Ho3+-cross-linked alginate microspheres (Ho3+-ams), the most potent microsphere formulation with respect to MR visualization, allowing single sphere detection and detailed microsphere distribution examination. Intravascular infusion of Ho 3+-ams by catherization of ex vivo rabbit and porcine liver tissue and assessment of the procedure with MRI clearly showed accumulation and subsequently embolization of the targeted vessels, allowing accurate monitoring of the microsphere biodistribution throughout the tissue. Therefore, the different alginate-lanthanide microsphere formulations developed in this study show great potential for utilization as image-guided embolotherapy agents.
机译:在癌症治疗中,实现高肿瘤与正常组织比的一种有前途的治疗选择是用微细颗粒进行血管内干预,例如栓塞治疗。在这项研究中,使用JetCutter技术制备藻酸盐微球(ams),该技术基于将藻酸钠溶液喷射流切割成均匀大小的小液滴,然后与不同的镧系元素或铁III交联,从而形成微球可以通过磁共振成像(MRI)可视化的预定大小。研究了微球的大小和形态(光学显微镜和扫描电子显微镜分析),阳离子含量和MRI特性。尺寸为250μm且阳离子含量为0.72-0.94%的镧系元素-ams配方在MR成像方面显示出令人鼓舞的结果。对于Ho3 +交联的藻酸盐微球(Ho3 + -ams),这是MR可视化方面最有效的微球配方,进一步证明了这一点,从而可以检测单个球并进行详细的微球分布检查。通过离体兔和猪肝组织的导管化处理对Ho 3 + -ams进行血管内输注,并通过MRI评估该程序,清楚显示了靶血管的蓄积和随后的栓塞,从而可以精确监控整个组织内微球的生物分布。因此,在这项研究中开发的不同藻酸盐-镧系元素微球制剂显示出作为图像引导栓塞治疗剂的巨大潜力。

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