Thomas J. Long School of Pharmacy & Health Sciences, University of the Pacific , 3601 Pacific Avenue, Stockton, CA 95211 , USA and.
Pharm Dev Technol. 2014 Jun;19(4):491-500. doi: 10.3109/10837450.2013.800107. Epub 2013 Jun 3.
The aim of this study was to evaluate the effect of coprecipitation and nanomilling on the crystallinity of a model drug, aripiprazole and evaluate the in vitro dissolution rate (IDR). Aripiprazole compositions were prepared by physical mixing, coprecipitation and nanomilling using hydroxypropylcellulose (HPC), polyvinylpyrrolidone (PVP) K17 and pluronic F127. The particle size, solubility, IDR and drug crystallinity were studied. Aripiprazole pluronic compositions were compressed into tablets and dissolution rate was evaluated. The particle size of nanomilled compositions was significantly smaller than that of the other compositions. The saturation solubility of aripiprazole from nanoparticle (NP) and coprecipitate (CP) from PVP and Pluronic was comparable, however, NP of HPC containing composition showed higher solubility when compared to its CP compositions. The crystallinity of aripiprazole decreased from physical mixtures to coprecipitates and further in NPs. The increased aripiprazole IDR was due to decreased crystallinity from coprecipitate compositions and disruption of crystallinity from nanomilled compositions. Aripiprazole tablets prepared from nanomilled powder dissolved >75% within 10 min compared with 17% and 20% for tablets prepared from physical mixture and coprecipitate powders, respectively. The increase in IDR due to nanomilling was more significant than coprecipitation and NPs retained the IDR after compression into tablets.
本研究旨在评估共沉淀和纳米研磨对模型药物阿立哌唑结晶度的影响,并评估其体外溶出度(IDR)。使用羟丙纤维素(HPC)、聚维酮(PVP)K17 和泊洛沙姆 F127 通过物理混合、共沉淀和纳米研磨制备阿立哌唑组合物。研究了粒径、溶解度、IDR 和药物结晶度。将阿立哌唑泊洛沙姆组合物压制成片剂并评估其溶出速率。纳米研磨组合物的粒径明显小于其他组合物。纳米粒子(NP)和 PVP 及泊洛沙姆共沉淀(CP)中阿立哌唑的饱和溶解度相当,然而,HPC 含 NP 组成的溶解度高于其 CP 组成。阿立哌唑的结晶度从物理混合物到共沉淀再到 NP 降低。共沉淀组合物的结晶度降低和纳米研磨组合物的结晶度破坏导致阿立哌唑 IDR 增加。与物理混合物和共沉淀粉末制备的片剂相比,纳米研磨粉末制备的片剂在 10 分钟内溶解>75%,而前者分别为 17%和 20%。纳米研磨引起的 IDR 增加比共沉淀更显著,并且 NPs 在压制成片剂后保持 IDR。