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首页> 外文期刊>Journal of pharmaceutical sciences. >Validation and long-term assessment of an approach for the high throughput determination of lipophilicity (log POW) values using multiplexed, absorbance-based capillary electrophoresis.
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Validation and long-term assessment of an approach for the high throughput determination of lipophilicity (log POW) values using multiplexed, absorbance-based capillary electrophoresis.

机译:验证和长期评估的一种方法,该方法通过使用基于吸光度的多重毛细管电泳来高通量测定亲脂性(log POW)值。

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摘要

A critical evaluation of the use of 96-capillary multiplexed microemulsion electrokinetic chromatography (MMEEKC) for the indirect determination of octanol-water partition coefficients (log POW values) for a wide range of structurally different compounds is presented. The various components of the microemulsion solution were evaluated and optimized for use in a multiplexed capillary format. A six-component calibration mixture and 23 different solutes (n = 4 each) were analyzed simultaneously, providing a throughput of up to 46 samples/h, which translates to greater than a 20-fold improvement over existing indirect log POW methods. Agreement to within +/-0.5 log P units of literature values was obtained for 51 of the 54 tested neutral and basic (uncharged) solutes. A linear free energy relationship (LFER) analysis performed on the MMEEKC system supports its use as a viable and effective model of the classical shake-flask method for log POW determinations. Moreover, a standard deviation of 0.1 or less log P units was obtained for 35 of 36 solutes analyzed repeatedly over an 8-month time period, documenting the long-term effectiveness of the analysis format. Critical comparisons between the proposed MMEEKC method and existing separation methods for the indirect determination of log POW values are also made. Overall, the results indicate that 96-capillary MMEEKC can serve as a high throughput, cost effective and robust approach and as a valid model for log POW determinations.
机译:提出了使用96毛细管多路微乳液电动色谱(MMEEKC)间接测定各种结构不同化合物的辛醇-水分配系数(log POW值)的关键评估。对微乳液溶液的各种成分进行了评估和优化,以用于多重毛细管形式。同时分析了六组分校准混合物和23种不同的溶质(每种n = 4),提供了高达46个样品/ h的通量,这比现有的间接log POW方法提高了20倍以上。对于54种测试的中性和碱性(不带电)溶质中的51种,获得了文献值+/- 0.5 log P单位以内的一致性。在MMEEKC系统上进行的线性自由能关系(LFER)分析支持将其用作经典摇瓶法进行log POW测定的可行且有效的模型。此外,在8个月的时间内重复分析的36种溶质中的35种溶质获得了0.1 log log P单位或更小的标准偏差,证明了该分析格式的长期有效性。还对建议的MMEEKC方法与现有分离方法之间的关键比较进行了间接比较,以间接确定log POW值。总体而言,结果表明96毛细管MMEEKC可以作为高通量,具有成本效益和稳健性的方法,并且可以作为确定log POW的有效模型。

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