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Preparation and In-vitro Evaluation of Rifampin-loaded Mesoporous Silica Nanoaggregates by an Experimental Design

机译:利福平负载介孔二氧化硅纳米聚集体的制备和体外评价的实验设计。

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摘要

The goal of this research is preparation, optimization and in-vitro evaluation of rifampin-loaded silica nanoparticles in order to use in the pulmonary drug delivery. Nanoparticles are exhaled because of their small size. Preparation of nanoaggregates in a micron-size scale and re-dispersion of them after deposition in the lung is an approach to overcome this problem. We used this approach in our research. Rifampin was selected as a model lipophilic molecule since it was a well-documented and much used anti tuberculosis drug. A half factorial design was used to identify significant parameters of the spray drying process. The results showed that feed concentration, feed pH and the interaction between feed flow rate and gas atomizer flow rate had statistically significant effects on the particle size of nanoaggregates. The Box-Behnken design was employed to optimize the spray drying process. Finally, a quadratic equation which explains the relation between independent variables and aerodynamic diameter of nanoaggregates was obtained. Rifampin-loaded silica nanoaggregates underwent different in-vitro tests including: SEM, Aerosol performance and drug release. The in-vitro drug release was investigated with buffer phosphate (pH=7.4). Regarding the drug release study, a triphasic pattern of release was observed. The rifampin-loaded silica nanoaggregates were capable of releasing 90% drug content after 24 h in combination patterns of release. The prepared rifampin-loaded nanoaggregates seem to have a potential to be used in a pulmonary drug delivery.
机译:这项研究的目的是制备,优化和体外评估负载利福平的二氧化硅纳米粒子,以便用于肺部药物递送。纳米颗粒由于尺寸小而被呼出。制备微米级规模的纳米聚集体并使其在肺中沉积后重新分散是解决该问题的一种方法。我们在研究中使用了这种方法。利福平被选作模型的亲脂性分子,因为它是有据可查且使用广泛的抗结核药物。半因子设计用于确定喷雾干燥过程的重要参数。结果表明,进料浓度,进料pH和进料流速与气体雾化器流速之间的相互作用对纳米聚集体的粒径具有统计学意义。采用Box-Behnken设计来优化喷雾干燥过程。最后,得到一个二次方程,该方程解释了自变量与纳米聚集体的空气动力学直径之间的关系。负载利福平的二氧化硅纳米聚集体经历了不同的体外测试,包括:SEM,气溶胶性能和药物释放。用磷酸盐缓冲液(pH = 7.4)研究了体外药物释放。关于药物释放研究,观察到了三重释放模式。负载利福平的二氧化硅纳米聚集体在释放后24小时内能够释放90%的药物含量。制备的负载利福平的纳米聚集体似乎具有用于肺部药物递送的潜力。

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