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Evaluation and optimization of compound solubilization and delivery methods in a two-tiered ion channel lead optimization triage

机译:两级离子通道导联优化分类中化合物增溶和递送方法的评估和优化

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Low-volume dispensing of neat dimethyl sulfoxide (DMSO) into plate-based assays conserves compound, assay reagents, and intermediate dilution plate cost and, as we demonstrate here, significantly improves structure-activity relationship resolution. Acoustic dispensing of DMSO solutions into standard volume 384W plates yielded inconsistent results in studies with 2 cell lines because of apparent effects on the integrity of the cell monolayer (increased intracellular Ca ++ levels as indicated by elevated basal dye fluorescence after acoustic transfer). PocketTip-mediated transfer was successful at increasing apparent potency on a more consistent basis. Notably, the correlation coefficient among fluorescence imaging plate reader (FLIPR):electrophysiology (EP) across a representative ~125 compound collection was increased ~5× via conversion to a PocketTip direct dispensation, indicating a triage assay more predictive of activity in the decisional patch-clamp assay. Very importantly, the EP-benchmarked false-negative rate as measured by compounds with FLIPR EC 50 more than the highest concentration tested fell from 11% to 5% assay-wide, and the relative FLIPR:EP rank-order fidelity increased from 55% to 78%. Elimination of the aqueous intermediate step provided additional benefits, including reduced assay cost, decreased cycle time, and reduced wet compound consumption rate. Direct DMSO dispensing has broad applicability to cell-based functional assays of multiple varieties, especially in cases where limit solubility in assay buffer is a recognized impediment to maximizing interassay connectivity.
机译:将纯净的二甲亚砜(DMSO)少量分装到基于板的测定中,可以节省化合物,测定试剂和中间稀释板的成本,并且,如我们在此处所示,它可以显着提高结构-活性关系的分辨率。将DMSO溶液以声学方式分配到标准体积384W平板中时,在2种细胞系的研究中产生不一致的结果,这是因为对细胞单层完整性有明显影响(通过细胞内Ca ++含量的增加,如通过声转移后基础染料荧光的升高所表明)。 PocketTip介导的转移在更一致的基础上成功提高了视力。值得注意的是,通过转换为PocketTip直接分配,代表性的〜125种化合物中的荧光成像板读数器(FLIPR):电生理学(EP)之间的相关系数增加了约5倍,这表明分流分析可更好地预测决定性贴片中的活性钳测定。非常重要的是,用FLIPR EC 50超过测试的最高浓度的化合物测得的EP基准假阴性率从> 11%下降至整个测定范围的5%,相对FLIPR:EP等级保真度从55 %至78%。消除水性中间步骤可提供额外的好处,包括减少测定成本,减少循环时间和减少湿化合物消耗速率。直接DMSO分配具有广泛的适用性,可用于多种品种的基于细胞的功能测定,尤其是在测定缓冲液中溶解度有限的情况下,这是最大程度地实现测定间连通性的公认障碍。

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