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Low toxicity and long circulation time of Polyampholyte-coated magnetic nanoparticles for blood pool contrast agents

机译:聚两性电解质涂层磁性纳米粒子用于血池造影剂的低毒性和长循环时间

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摘要

Polyampholyte-coated (poly(acrylic acid) (PAA)-co-3-(diethylamino)-propylamine (DEAPA)) magnetite nanoparticles (PAMNPs) have been prepared as contrasting agent used in magnetic resonance imaging (MRI). Excellent biocompatibility is required for contrasting agents used in high-resolution magnetic resonance angiography. To evaluate the biocompatibility of PAMNPs, some experiments have been conducted. The hemolysis, plasma recalcification, dynamic blood clotting, prothrombin time, inflammatory cytokine release and complement system activation assays were carried out to investigate the hemocompatibility. To evaluate the toxicity to vessel, MTT test and vascular irritation tests were conducted. Tissue toxicity test was also performed to investigate the biocompability in vivo. We also looked into the biodistribution. The results showed that PAMNPs at the working concentration (0.138 mM) present similar hemocompatibility with negative control, thus have no significant effect to vessels. PAMNPs were mainly distributed in the liver and the blood. The circulation time in blood was considerably long, with the half-time of 3.77 h in plasma. This property is advantageous for PAMNPs' use in angiography. PAMNPs could be metabolized rapidly in mice and were not observed to cause any toxic or adverse effect. In short, these results suggest that the PAMNPs have great potential to serve as safe contrast agents in magnetic resonance imaging (MRI).
机译:已经制备了聚两性电解质涂层的(聚(丙烯酸)(PAA)-co-3-(二乙基氨基)-丙胺(DEAPA))磁铁矿纳米颗粒(PAMNPs)作为磁共振成像(MRI)中使用的造影剂。高分辨率磁共振血管造影术中使用的造影剂需要出色的生物相容性。为了评估PAMNPs的生物相容性,已经进行了一些实验。进行溶血,血浆再钙化,动态血凝,凝血酶原时间,炎性细胞因子释放和补体系统激活测定以研究血液相容性。为了评估对血管的毒性,进行了MTT试验和血管刺激试验。还进行了组织毒性测试以研究体内的生物相容性。我们还研究了生物分布。结果表明,工作浓度为0.138μmM的PAMNPs具有与阴性对照相似的血液相容性,因此对血管无明显影响。 PAMNPs主要分布在肝脏和血液中。血液中的循环时间相当长,血浆中的循环时间为3.77 h。该性质对于PAMNP在血管造影术中的使用是有利的。 PAMNPs可以在小鼠中快速代谢,没有观察到引起任何毒性或不利影响。简而言之,这些结果表明,PAMNPs在磁共振成像(MRI)中具有作为安全造影剂的巨大潜力。

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