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Influence of Formulation Parameters on Redispersibility of Naproxen Nanoparticles from Granules Produced in a Fluidized Bed Process

机译:配方参数对流化床工艺生产的颗粒萘普生纳米粒再分散性的影响

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摘要

The particle size reduction of active pharmaceutical ingredients is an efficient method to overcome challenges associated with a poor aqueous solubility. With respect to stability and patient’s convenience, the corresponding nanosuspensions are often further processed to solid dosage forms. In this regard, the influence of several formulation parameters (i.e., type of carrier material, type and amount of additional polymeric drying excipient in the nanosuspension) on the redispersibility of naproxen nanoparticle-loaded granules produced in a fluidized bed process was investigated. The dissolution rate of the carrier material (i.e., sucrose, mannitol, or lactose) was identified as a relevant material property, with higher dissolution rates (sucrose > mannitol > lactose) resulting in better redispersibility of the products. Additionally, the redispersibility of the product granules was observed to improve with increasing amounts of polymeric drying excipient in the nanosuspension. The redispersibility was observed to qualitatively correlate with the degree of nanoparticle embedding on the surface of the corresponding granules. This embedding was assumed to be either caused by a partial dissolution and subsequent resolidification of the carrier surface dependent on the dissolution rate of the carrier material or by resolidification of the dissolved polymeric drying excipient upon drying. As the correlation between the redispersibility and the morphology of the corresponding granules was observed for all investigated formulation parameters, it may be assumed that the redispersibility of the nanoparticles is determined by their distance in the dried state.
机译:降低活性药物成分的粒径是克服与水溶性差有关的挑战的有效方法。考虑到稳定性和患者的便利性,通常将相应的纳米悬浮液进一步加工成固体剂型。在这方面,研究了几种配方参数(即,载体材料的类型,纳米悬浮液中另外的聚合物干燥赋形剂的类型和数量)对流化床工艺中生产的载有萘普生纳米颗粒的颗粒的可再分散性的影响。载体材料(即蔗糖,甘露醇或乳糖)的溶解速率被确定为相关的材料性能,具有更高的溶解速率(蔗糖>甘露醇>乳糖),导致产物的再分散性更好。另外,观察到产物颗粒的可再分散性随着纳米悬浮液中聚合物干燥赋形剂量的增加而提高。观察到可再分散性与纳米颗粒在相应颗粒表面上的包埋程度在质量上相关。认为这种包埋是由于载体表面的部分溶解和随后的再固化所致,取决于载体材料的溶解速率,或者是由于干燥后溶解的聚合物干燥赋形剂的再固化。由于对于所有研究的制剂参数均观察到相应颗粒的可再分散性与形态之间的相关性,因此可以假设纳米颗粒的可再分散性是由它们在干燥状态下的距离决定的。

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