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用于纯化和定量多种化合物文库的简化系统以及化合物浓度测量对生物测定结果准确解读的影响。

Streamlined system for purifying and quantifying a diverse library of compounds and the effect of compound concentration measurements on the accurate interpretation of biological assay results.

作者信息

Popa-Burke Ioana G, Issakova Olga, Arroway James D, Bernasconi Paul, Chen Min, Coudurier Louis, Galasinski Scott, Jadhav Ajit P, Janzen William P, Lagasca Dennis, Liu Darren, Lewis Roderic S, Mohney Robert P, Sepetov Nikolai, Sparkman Darren A, Hodge C Nicholas

机构信息

Amphora Discovery Corporation, P.O. Box 12169, Research Triangle Park, North Carolina 27709, USA.

出版信息

Anal Chem. 2004 Dec 15;76(24):7278-87. doi: 10.1021/ac0491859.

Abstract

As part of an overall systems approach to generating highly accurate screening data across large numbers of compounds and biological targets, we have developed and implemented streamlined methods for purifying and quantitating compounds at various stages of the screening process, coupled with automated "traditional" storage methods (DMSO, -20 degrees C). Specifically, all of the compounds in our druglike library are purified by LC/MS/UV and are then controlled for identity and concentration in their respective DMSO stock solutions by chemiluminescent nitrogen detection (CLND)/evaporative light scattering detection (ELSD) and MS/UV. In addition, the compound-buffer solutions used in the various biological assays are quantitated by LC/UV/CLND to determine the concentration of compound actually present during screening. Our results show that LC/UV/CLND/ELSD/MS is a widely applicable method that can be used to purify, quantitate, and identify most small organic molecules from compound libraries. The LC/UV/CLND technique is a simple and sensitive method that can be easily and cost-effectively employed to rapidly determine the concentrations of even small amounts of any N-containing compound in aqueous solution. We present data to establish error limits for concentration determination that are well within the overall variability of the screening process. This study demonstrates that there is a significant difference between the predicted amount of soluble compound from stock DMSO solutions following dilution into assay buffer and the actual amount present in assay buffer solutions, even at the low concentrations employed for the assays. We also demonstrate that knowledge of the concentrations of compounds to which the biological target is exposed is critical for accurate potency determinations. Accurate potency values are in turn particularly important for drug discovery, for understanding structure-activity relationships, and for building useful empirical models of protein-ligand interactions. Our new understanding of relative solubility demonstrates that most, if not all, decisions that are made in early discovery are based upon missing or inaccurate information. Finally, we demonstrate that careful control of compound handling and concentration, coupled with accurate assay methods, allows the use of both positive and negative data in analyzing screening data sets for structure-activity relationships that determine potency and selectivity.

摘要

作为生成大量化合物和生物靶点的高精度筛选数据的整体系统方法的一部分,我们开发并实施了简化方法,用于在筛选过程的各个阶段纯化和定量化合物,并结合自动化的“传统”储存方法(二甲基亚砜,-20摄氏度)。具体而言,我们类药物库中的所有化合物都通过液相色谱/质谱/紫外进行纯化,然后通过化学发光氮检测(CLND)/蒸发光散射检测(ELSD)和质谱/紫外对其各自二甲基亚砜储备溶液中的身份和浓度进行控制。此外,各种生物测定中使用的化合物 - 缓冲溶液通过液相色谱/紫外/CLND进行定量,以确定筛选过程中实际存在的化合物浓度。我们的结果表明,液相色谱/紫外/CLND/ELSD/质谱是一种广泛适用的方法,可用于从化合物库中纯化、定量和鉴定大多数小分子有机化合物。液相色谱/紫外/CLND技术是一种简单且灵敏的方法,可轻松且经济高效地用于快速测定水溶液中即使是少量任何含氮化合物的浓度。我们提供数据以确定浓度测定的误差限度,该误差限度完全在筛选过程的总体变异性范围内。这项研究表明,即使在用于测定的低浓度下,从储备二甲基亚砜溶液稀释到测定缓冲液后预测的可溶性化合物量与测定缓冲液溶液中实际存在的量之间也存在显著差异。我们还证明,了解生物靶点所接触的化合物浓度对于准确的效价测定至关重要。准确的效价值反过来对于药物发现、理解构效关系以及建立蛋白质 - 配体相互作用的有用经验模型尤为重要。我们对相对溶解度的新认识表明,早期发现中做出的大多数(如果不是全部)决策都是基于缺失或不准确的信息。最后,我们证明,对化合物处理和浓度的仔细控制,再加上准确的测定方法,允许在分析用于确定效价和选择性的构效关系的筛选数据集时使用阳性和阴性数据。

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