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Practical Method for Preparing Nanosuspension Formulations for Toxicology Studies in the Discovery Stage: Formulation Optimization and in Vitro/in Vivo Evaluation of Nanosized Poorly Water-Soluble Compounds

机译:在发现阶段准备用于毒理学研究的纳米混悬剂的实用方法:纳米级难溶于水化合物的配方优化和体内/体外评估

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摘要

The present study aimed to develop a practical method for preparing nanosuspension formulations of poorly water-soluble compounds for enhancing oral absorption in toxicology studies in the discovery stage. To obtain a suitable nanosuspension formulation for the intended purpose, formulations were optimized with a focus on the following characteristics: i) containing a high drug concentration, ii) consisting of commonly used excipient types in proper quantities for toxicology studies, iii) having long-term stability, and iv) having versatility for use with diverse compounds. Test compounds were milled with various excipients by wet media milling methods using a mixer mill (10 mg/batch) and a rotation/revolution mixer (0.5g/batch). As a result, 100 mg/mL nanosuspensions of all 11 test compounds could be prepared with an optimized dispersing agent, 0.5% hydroxypropyl methylcellulose (HPMC) (3 cP)-0.5% Tween 80. Notably, it was found that the molecular weight of HPMC influenced not only particle size but also the stability of nanosuspensions and they were stable for 4 weeks at 5 degrees C. The nanosuspensions increased in vitro dissolution rates and provided 3.9 and 3.0 times higher C-max and 4.4 and 1.6 times higher area under the concentration time curve from 0-24h (AUC(0-24h)) in rats (oral dose of 300 mg/kg) for cilostazol and danazol, respectively. In conclusion, applying a wet media milling method with the combination of HPMC of a small molecular weight and Tween 80 as a dispersing agent, nanosuspensions can be practically prepared and conveniently utilized for enhancing the oral absorption of poorly water-soluble compounds in toxicology studies in the discovery stage.
机译:本研究旨在开发一种实用的方法,用于制备水溶性差的化合物的纳米混悬剂,以在发现阶段的毒理学研究中增强口服吸收。为了获得适合于预期目的的纳米悬浮液制剂,应针对以下特征进行优化:i)药物浓度高,ii)常用的适量赋形剂类型进行毒理学研究,iii)具有较长的术语稳定性,以及iv)具有与多种化合物一起使用的多功能性。使用混合研磨机(10 mg /批)和旋转/公转混合器(0.5g /批),通过湿介质研磨法将试验化合物与各种赋形剂一起研磨。结果,可以用优化的分散剂0.5%羟丙基甲基纤维素(HPMC)(3 cP)-0.5%Tween 80制备所有11种测试化合物的100 mg / mL纳米悬浮液。 HPMC不仅影响粒径,而且影响纳米悬浮液的稳定性,它们在5摄氏度下可稳定4周。纳米悬浮液提高了体外溶出速率,在C-max下提供了3.9和3.0倍的C-max和4.4和1.6倍的更大面积。大鼠(口服剂量300 mg / kg)从0-24h(AUC(0-24h))的浓度变化曲线分别为西洛他唑和达那唑。综上所述,采用湿介质研磨法,结合小分子量HPMC和Tween 80作为分散剂,可以实际制备纳米悬浮液,并方便地用于增强水溶性差的化合物在口腔毒理学研究中的口服吸收。发现阶段。

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