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首页> 外文期刊>Journal of nanomaterials >Pilot Study of Inhaled Aerosols Targeted via Magnetic Alignment of High Aspect Ratio Particles in Rabbits
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Pilot Study of Inhaled Aerosols Targeted via Magnetic Alignment of High Aspect Ratio Particles in Rabbits

机译:通过高长宽比颗粒的磁性排列靶向吸入的气溶胶的家兔的初步研究

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摘要

Recently, inhaled pharmaceutical aerosols have seen increased investigation in the treatment of lung cancer, where the inability to deliver adequate therapeutic drug concentrations to tumour sites may be overcome with improved targeted delivery to the site of the tumour. In this study, the feasibility of magnetically targeted delivery of high aspect ratio particles loaded with iron oxide nanoparticles was studied in 19 New Zealand White rabbits. Half of the exposed rabbits had a magnetic field placed externally over their right lung. Iron sensitive magnetic resonance images of the lungs were acquired to determine the iron concentrations in the right and left lung of each animal. The right/left ratio increased in the middle and basal regions of the lung where, due to the morphology of the rabbit lung, this method of targeting is most effective. With further optimization, this technique could be an effective method for increasing the dose of drug delivered to a specific site within the lung.
机译:最近,吸入的药物气雾剂已经在肺癌的治疗中得到了越来越多的研究,其中可以通过改善向肿瘤部位的靶向递送来克服无法将足够的治疗药物浓度递送到肿瘤部位的问题。在这项研究中,在19只新西兰白兔中研究了磁性靶向递送载有氧化铁纳米颗粒的高长径比颗粒的可行性。一半的暴露兔子的右肺外部有磁场。采集肺的铁敏感磁共振图像以确定每只动物的右肺和左肺中的铁浓度。在右侧和左侧的比例在肺的中部和基部区域增加,在这些区域中,由于兔肺的形态,这种靶向方法最有效。通过进一步优化,该技术可能是增加递送至肺内特定部位的药物剂量的有效方法。

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