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Physicochemical characterization of nebulized superparamagnetic iron oxide nanoparticles (SPIONs)

机译:雾化的超顺磁性氧化铁纳米粒子(SPIONs)的理化特性

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摘要

Abstract Background: Aerosol-mediated delivery of nano-based therapeutics to the lung has emerged as a promising alternative for treatment and prevention of lung diseases. Superparamagnetic iron oxide nanoparticles (SPIONs) have attracted significant attention for such applications due to their biocompatibility and magnetic properties. However, information is lacking about the characteristics of nebulized SPIONs for use as a therapeutic aerosol. To address this need, we conducted a physicochemical characterization of nebulized Rienso, a SPION-based formulation for intravenous treatment of anemia. Methods: Four different concentrations of SPION suspensions were nebulized with a one-jet nebulizer. Particle size was measured in suspension by transmission electron microscopy (TEM), photon correlation spectroscopy (PCS), and nanoparticle tracking analysis (NTA), and in the aerosol by a scanning mobility particle sizer (SMPS). Results: The average particle size in suspension as measured by TEM, PCS, and NTA was 9±2 nm, 27±7 nm, and 56±10 nm, respectively. The particle size in suspension remained the same before and after the nebulization process. However, after aerosol collection in an impinger, the suspended particle size increased to 159±46 nm as measured by NTA. The aerosol particle concentration increased linearly with increasing suspension concentration, and the aerodynamic diameter remained relatively stable at around 75 nm as measured by SMPS. Conclusions: We demonstrated that the total number and particle size in the aerosol were modulated as a function of the initial concentration in the nebulizer. The data obtained mark the first known independent characterization of nebulized Rienso and, as such, provide critical information on the behavior of Rienso nanoparticles in an aerosol. The data obtained in this study add new knowledge to the existing body of literature on potential applications of SPION suspensions as inhaled aerosol therapeutics.
机译:摘要背景:气溶胶介导的基于纳米的治疗剂向肺的输送已成为治疗和预防肺部疾病的有希望的替代方法。超顺磁性氧化铁纳米颗粒(SPIONs)由于其生物相容性和磁性而受到了广泛的关注。但是,缺少有关用作治疗用气雾剂的雾化SPIONs特性的信息。为了满足这一需求,我们对雾化的Rienso(一种基于SPION的用于静脉内治疗贫血的制剂)进行了物理化学表征。方法:用单喷嘴雾化器雾化四种不同浓度的SPION悬浮液。悬浮液中的粒径通过透射电子显微镜(TEM),光子相关光谱法(PCS)和纳米颗粒跟踪分析(NTA)进行测量,气溶胶中的粒径通过扫描迁移率粒度仪(SMPS)进行测量。结果:通过TEM,PCS和NTA测得的悬浮液平均粒径分别为9±2 nm,27±7 nm和56±10 nm。在喷雾过程之前和之后,悬浮液中的粒度保持相同。然而,在通过冲击器收集气溶胶后,通过NTA测得的悬浮颗粒尺寸增加到159±46 nm。气溶胶颗粒浓度随悬浮液浓度的增加而线性增加,并且通过SMPS测量,空气动力学直径在75 stablenm左右保持相对稳定。结论:我们证明气雾剂的总数和粒径是雾化器中初始浓度的函数。获得的数据标志着雾化的Rienso的第一个已知独立特征,因此,它提供了有关Rienso纳米颗粒在气溶胶中的行为的关键信息。这项研究中获得的数据为有关SPION悬浮液作为吸入气雾剂治疗的潜在应用的文献提供了新的知识。

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