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Non-immunogenic dextran-coated superparamagnetic iron oxide nanoparticles: a biocompatible size-tunable contrast agent for magnetic resonance imaging

机译:非免疫原性葡聚糖涂层的超顺磁性氧化铁纳米粒子:一种生物相容性大小可调的造影剂用于磁共振成像

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摘要

Iron oxide-based contrast agents have been in clinical use for magnetic resonance imaging (MRI) of lymph nodes, liver, intestines, and the cardiovascular system. Superparamagnetic iron oxide nanoparticles (SPIONs) have high potential as a contrast agent for MRI, but no intravenous iron oxide-containing agents are currently approved for clinical imaging. The aim of our work was to analyze the hemocompatibility and immuno-safety of a new type of dextran-coated SPIONs (SPIONdex) and to characterize these nanoparticles with ultra-high-field MRI. Key parameters related to nanoparticle hemocompatibility and immuno-safety were investigated in vitro and ex vivo. To address concerns associated with hypersensitivity reactions to injectable nanoparticulate agents, we analyzed complement activation-related pseudoallergy (CARPA) upon intravenous administration of SPIONdex in a pig model. Furthermore, the size-tunability of SPIONdex and the effects of size reduction on their biocompatibility were investigated. In vitro, SPIONdex did not induce hemolysis, complement or platelet activation, plasma coagulation, or leukocyte procoagulant activity, and had no relevant effect on endothelial cell viability or endothelial–monocytic cell interactions. Furthermore, SPIONdex did not induce CARPA even upon intravenous administration of 5 mg Fe/kg in pigs. Upon SPIONdex administration in mice, decreased liver signal intensity was observed after 15 minutes and was still detectable 24 h later. In addition, by changing synthesis parameters, a reduction in particle size <30 nm was achieved, without affecting their hemo- and biocompatibility. Our findings suggest that due to their excellent biocompatibility, safety upon intravenous administration and size-tunability, SPIONdex particles may represent a suitable candidate for a new-generation MRI contrast agent.
机译:基于氧化铁的造影剂已在临床上用于淋巴结,肝脏,肠道和心血管系统的磁共振成像(MRI)。超顺磁性氧化铁纳米粒子(SPIONs)具有作为MRI造影剂的高潜力,但目前尚无静脉含铁氧化物的药物被批准用于临床成像。我们的工作目的是分析新型葡聚糖包被的SPIONs(SPIONdex)的血液相容性和免疫安全性,并通过超高场MRI表征这些纳米颗粒。在体外和离体研究了与纳米颗粒血液相容性和免疫安全性有关的关键参数。为了解决与对可注射的纳米颗粒药物的超敏反应有关的问题,我们在猪模型中静脉注射SPIONdex后分析了补体激活相关的假性变态反应(CARPA)。此外,还研究了SPIONdex的尺寸可调性以及尺寸减小对其生物相容性的影响。在体外,SPIONdex不会诱导溶血,补体或血小板活化,血浆凝结或白细胞促凝活性,并且对内皮细胞活力或内皮-单核细胞相互作用没有相关影响。此外,即使在猪中静脉注射5 mg Fe / kg时,SPIONdex也不会诱导CARPA。在小鼠中施用SPIONdex后,在15分钟后观察到肝信号强度下降,并且24小时后仍可检测到。此外,通过更改合成参数,可以实现<30 nm的粒径减小,而不会影响其血液和生物相容性。我们的发现表明,由于SPIONdex粒子具有出色的生物相容性,静脉内给药的安全性和尺寸可调性,因此它们可能是新一代MRI造影剂的合适候选者。

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