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Solubility Determination of c-Met Inhibitor in Solvent Mixtures and Mathematical Modeling to Develop Nanosuspension Formulation

机译:溶剂混合物中C-Met抑制剂的溶解度和数学建模的开发纳米孢子术配方

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摘要

The solubility and dissolution thermodynamics of new c-Met inhibitor, ABN401, were determined in eleven solvents and Transcutol® HP–water mixture (TWM) from 298.15 to 318.15 K. The experimental solubilities were validated using five mathematical models, namely modified Apelblat, van’t Hoff, Buchowski–Ksiazaczak λh, Yalkowsky, and Jouyban–Acree van’t Hoff models. The experimental results were correlated and utilized further to investigate the feasibility of nanosuspension formation using liquid anti-solvent precipitation. Thermodynamic solubility of ABN401 increased significantly with the increase in temperature and maximum solubility was obtained with Transcutol® HP while low solubility in was obtained water. An activity coefficient study indicated that high molecular interaction was observed in ABN401–Transcutol® HP (THP). The solubility increased proportionately as the mole fraction of Transcutol® HP increased in TWM, which was also supported by a solvent effect study. The result suggested endothermic and entropy-driven dissolution. Based on the solubility, nanosuspension was designed with Transcutol® HP as solvent, and water as anti-solvent. The mean particle size of nanosuspension decreased to 43.05 nm when the mole fraction of ABN401 in THP, and mole fraction of ABN401 in TWM mixture were decreased to 0.04 and 0.1. The ultrasonicated nanosuspension appeared to give comparatively higher dissolution than micronized nanosuspension and provide a candidate formulation for in vivo purposes.
机译:新型C-Met抑制剂的溶解度和溶解热力学,ABN401,在11.15至318.15K中,在1108.15至318.15k中测定了二烯溶剂和转基因醇溶液(TWM)。使用五种数学模型,即改进的apelblat,范'T Hoff,Buchowski-Ksiazaczakλh,yalkowsky和jouyban-antee Van't Hoff Models。实验结果是相关的,进一步利用液体抗溶剂沉淀的纳米血管形成的可行性。通过Transcutol®Hp获得了ABN401的热力学溶解度随着温度的增加和最大溶解度而获得,得到水的低溶解度。活动系数研究表明,在ABN401-Transcutol®HP(THP)中观察到高分子相互作用。随着TWM的TWM的摩尔级数增加,溶解度与TWM的摩尔级数相比成比例地增加,这也得到了溶剂效应研究的支持。结果表明了吸热和熵驱动的溶解。基于溶解度,纳米螺母悬雍垂设计有Transcutol®HP作为溶剂,以及作为抗溶剂的水。当ABP4401的摩尔分数和TWM混合物中的ABN401的摩尔分数下降至0.04和0.1时,当AB1401的摩尔分数和ABN401的摩尔分数降低时,纳米孔的平均粒径降至43.05nm。超声化的纳米术似乎比微粉化纳米孔的溶解相对较高,并提供体内目的的候选制剂。

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