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用于早期药物研发的部分自动化溶解度筛选(PASS)分析方法的开发。

Development of a partially automated solubility screening (PASS) assay for early drug development.

作者信息

Alsenz Jochem, Meister Eva, Haenel Elisabeth

机构信息

Preclinical Research, Pharma Division, F. Hoffmann-La Roche Ltd., CH-4002 Basle, Switzerland.

出版信息

J Pharm Sci. 2007 Jul;96(7):1748-62. doi: 10.1002/jps.20814.

DOI:10.1002/jps.20814
PMID:17238197
Abstract

A medium-throughput, compound-saving, thermodynamic solubility assay for early drug development was developed. Solid compound suspended in heptane was used for simple, time-saving, and flexible compound distribution into 96-well plates, with minor risk to generate new physical forms during dispensing. Low volume, well-stirred incubation vessels were generated by using a combination of V-shaped wells, well caps, and vertically inserted stir bars. This allowed solubility determination up to 100 mg/mL in 40-80 microL volumes in aqueous and nonaqueous, low- and high-viscosity solvents. After removal of residual solid through syringe filters mounted on microtiter plates, the filtrate was quantified by ultra performance liquid chromatography (UPLC) using a 1.2 min gradient. Combined with a robotic liquid handling system, throughput was 45 samples per hour and >600 solubility measurements per week. Results from the partially automated solubility screening (PASS) assay correlated well with reported solubility values (r2 = 0.882). The PASS assay is useful for compound-saving, thermodynamic solubility measurement at the discovery-development interface where maximal solubility in many commonly used solvents needs to be determined. PASS results provide a basis for the identification of formulation strategies, the selection of appropriate excipients, and for the prediction of the potential in vivo behavior of compounds.

摘要

开发了一种用于早期药物研发的中等通量、节省化合物的热力学溶解度测定方法。悬浮于庚烷中的固体化合物用于将化合物简单、省时且灵活地分配到96孔板中,在分配过程中产生新物理形态的风险较小。通过使用V形孔、孔盖和垂直插入的搅拌棒的组合,生成了小体积、充分搅拌的孵育容器。这使得在水性和非水性、低粘度和高粘度溶剂中,能够在40 - 80微升体积内测定高达100毫克/毫升的溶解度。通过安装在微孔板上的注射器过滤器去除残留固体后,使用1.2分钟梯度的超高效液相色谱(UPLC)对滤液进行定量。结合机器人液体处理系统,通量为每小时45个样品,每周>600次溶解度测量。部分自动化溶解度筛选(PASS)测定的结果与报道的溶解度值相关性良好(r2 = 0.882)。PASS测定对于在发现-研发界面进行节省化合物的热力学溶解度测量很有用,在该界面需要确定化合物在许多常用溶剂中的最大溶解度。PASS结果为确定制剂策略、选择合适的辅料以及预测化合物的潜在体内行为提供了依据。

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