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Quality Control in Combinatorial Chemistry: Determination of the quantity, Purity, and Quantitative Purity of Compounds in Combinatorial Libraries

机译:组合化学中的质量控制:组合图书馆中化合物的数量,纯度和定量纯度的确定

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摘要

The quality of combinatorial libraries determines the success of biological screening in drug discovery programs. In this paper, we evaluate and compare various methods for measuring identity, purity, and quantity (yield) of combinatorial libraries. Determination of quantitative purity reveals the true library quality and often indicates potential quality problems before full-scale library production. The relative purity can be determined for every member in a large library in a high-throughput mode, but must be cautiously interpreted. In particular, many impurities are not observable by relative purity measurements using detectors such as UV_(214,) UV_(254), and evaporative light-scattering detection. These "invisible" impurities may constitute a significant portion of the sample weight. We found that TFA, plastic extracts, inorganic compounds, and resin washout are among these impurities. With compelling evidence, we reach a conclusion that purification is the only way to remove "invisible" impurities and improve the quantitative purity of any compound even though some compounds may have a high relative purity before purification.
机译:组合库的质量决定了药物发现程序中生物筛选的成功。在本文中,我们评估和比较了用于测量组合文库的同一性,纯度和数量(产量)的各种方法。定量纯度的测定揭示了真正的文库质量,并经常表明在大规模生产文库之前存在潜在的质量问题。可以使用高通量模式确定大型文库中每个成员的相对纯度,但必须谨慎解释。特别地,使用诸如UV_(214,)UV_(254)的检测器和蒸发光散射检测,通过相对纯度测量不能观察到许多杂质。这些“看不见的”杂质可能占样品重量的很大一部分。我们发现,TFA,塑料提取物,无机化合物和树脂洗出物都是这些杂质。有了令人信服的证据,我们得出结论,即使某些化合物在纯化前可能具有较高的相对纯度,但纯化是去除“看不见的”杂质并提高任何化合物定量纯度的唯一方法。

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