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Superparamagnetic Nanoparticle Delivery to the Cochlea Through Round Window by External Magnetic Field: Feasibility and Toxicity

机译:通过外部磁场通过圆形窗口将超顺磁性纳米粒子输送到耳蜗:可行性和毒性

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Introduction. The objective of this study was to evaluate the feasibility and toxicity of superparamagnetic iron oxide nanoparticles (SPIONs) administered into the cochlea through the round window (RW) by an external magnetic field. Materials and Methods. In 5 Wistar rats, the left RW was punctured. SPIONs suspended in hyaluronic gel (5 mg/mL) were applied in the RW niche and covered by a muscle graft. The nanoparticles were mobilized using a rare earth magnet (0.54 T) held in 4 consecutive positions around the head. The right ear served as control. Hearing function was monitored by auditory brainstem responses (4-32 kHz tone bursts). Results. The auditory thresholds remained unchanged 1 month after the administration. The histological study of the cochleae showed that SPIONs were driven into the scala tympani in the basal turn, the second turn, and the apex. Conclusion. Superparamagnetic nanoparticles can be driven inside the cochlea toward the apex with a preserved hearing up to 1 month in rats.
机译:介绍。本研究的目的是评估通过外部磁场(RW)给耳蜗施入耳蜗(RW)中的超顺磁性氧化铁纳米颗粒(栓塞)的可行性和毒性。材料和方法。在5只Wistar大鼠中,左侧RW被刺破。将悬浮在透明质凝胶(5mg / ml)中的酱施用于RW Niche并被肌肉移植物覆盖。使用稀土磁铁(0.54t)在头部周围4个连续位置保持纳米颗粒。右耳担任控制。听觉脑干响应监测听力功能(4-32 kHz色调爆发)。结果。当政府后1个月,听觉阈值保持不变。耳蜗的组织学研究表明,在基础转弯,第二圈和顶点中,散网被驱动到Scala鼓巴中。结论。可以将超顺磁性纳米颗粒在耳蜗内朝向顶点驱动,在大鼠中保存的听力最多。

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