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Evaluation of the tolerance and distribution of intravenously applied ferrofluid particles of 250 and 500 nm size in an animal model

机译:在动物模型中评价静脉内施加的250和500nm尺寸的静脉内施用的铁磁体流体颗粒的耐受性和分布

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Objective: Magnetic drug targeting may be a new method for the treatment of malignant tumors. According to the previous investigations, the success of magnetic targeting is generally contingent upon the magnetic properties and size distribution of the magnetic nanoparticles.Therefore, the aim of the present study was to verify the tolerance of two ferrofluid dispersions modified in particle size and density. Materials and Methods: 8.75 ml ferrofluid with particle sizes of 250 or 500 nm were applied intravenously to two groups of seven New Zealand White rabbits in three doses in a time frame of 2 h. Clinical, serological, and histological evaluations were performed with regard to the tolerance of the ferrofluids. Results: All animals tolerated the ferrofluid application without any clinical irregularities; there were no signs of thrombosis or embolism. Histological analysis revealed an accumulation in the liver, spleen, lung, and kidney depending on the particle size; the serological examination did not show significant alterations of the blood parameters. Conclusion: The ferrofluids of 250 and 500 nm particle sizes were well tolerated as shown by the laboratory and histological data and should be evaluated in further studies regarding their clinical use in magnetic drug targeting.
机译:目的:磁药靶向可能是治疗恶性肿瘤的新方法。根据先前的研究,磁靶向的成功通常根据磁性纳米颗粒的磁性和尺寸分布而取决于磁性纳米颗粒的尺寸。因此,本研究的目的是验证在颗粒尺寸和密度中改性的两个铁磁流体分散体的耐受性。材料和方法:8.75mL粒径为250或500nm的粒径为250或500nm的二颗粒,在2小时的时间框架中静脉内静脉内施用两组七个新西兰白兔。关于铁磁流体的耐受性进行临床,血清学和组织学评价。结果:所有动物的所有动物都耐受Ferrofluid应用,没有任何临床违规行为;没有血栓形成或栓塞的迹象。组织学分析揭示了肝脏,脾,肺和肾脏的积累,这取决于粒度;血清学检查没有显示出血液参数的显着改变。结论:250和500nm粒度的铁磁流体如实验室和组织学数据所示,应在进一步的研究中进行评估,关于它们在磁性药物靶向中的临床应用。

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