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A Simple and Efficient Approach for Estimating Recovery of a Preparative Reversed Phase HPLC Purification

机译:一种简单高效的方法,用于估计制备型反相HPLC纯化的回收率

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摘要

The widely applied reversed phase high-performance liquid chromatography (RP-HPLC) is an indispensable purification technique in drug discovery. During drug discovery, recovery was usually calculated based on the weight of the purified product after drying over the weight of the crude material multiplied by the assumed purity from HPLC/UV area percent of the product. Such a purity assumption can be off significantly when the crude material contains water, solvents, other UV-inactive impurities and inorganic salts. In this paper, we report a simple and efficient way to estimate recovery of preparative HPLC purification process. It is based on the ratio of the HPLC/UV peak area measured for the product in the crude solution and that in the final collected fraction with both accounted for their volumes. This approach eliminates not only the need for drying of the collected fraction to calculate recovery but also the inaccuracy associated with the true content in the crude sample using the traditional method. A systematic study was conducted to verify this method using caffeine mixed with various UV-active and -inactive impurities. The calculated recoveries using this approach were found to be consistent within 4% with the true recoveries based on dry weight estimation. The approach has been successfully applied for our in-house purifications. Furthermore, the approach was extended to library purifications, where in many cases heart-cutting the desired peaks is used to meet the purity requirements.
机译:广泛应用的反相高效液相色谱(RP-HPLC)是药物发现中必不可少的纯化技术。在药物发现过程中,回收率通常是根据干燥后纯化产品的重量超过粗材料的重量乘以产品HPLC / UV面积百分比的假定纯度来计算的。当原油原料中含有水,溶剂,其他对紫外线无活性的杂质和无机盐时,这种纯度假设可能会大为不同。在本文中,我们报告了一种简单高效的方法来估算制备型HPLC纯化过程的回收率。它基于在粗溶液中测得的产品和最终收集的馏分中所测产品的HPLC / UV峰面积之比,两者均考虑了其体积。这种方法不仅消除了对收集的馏分进行干燥以计算回收率的需要,而且消除了使用传统方法与原油样品中真实含量相关的不准确性。进行了系统的研究以验证这种方法是将咖啡因与各种紫外线活性和非活性杂质混合使用。根据干重估算,发现使用这种方法计算的回收率与真实回收率相差4%以内。该方法已成功应用于我们的内部净化。此外,该方法扩展到了文库纯化,在许多情况下,使用切心所需的峰来满足纯度要求。

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