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手性化合物的立体稳定性和化学稳定性评估。

Evaluation of stereo and chemical stability of chiral compounds.

作者信息

Cannazza Giuseppe, Battisti Umberto, Carrozzo Marina M, Brasili Livio, Braghiroli Daniela, Parenti Carlo

机构信息

Dipartimento di Scienze Farmaceutiche, Università degli Studi di Modena e Reggio Emilia, Via Campi 183, Modena, Italy.

出版信息

Chirality. 2011 Nov;23(10):851-9. doi: 10.1002/chir.20941. Epub 2011 Sep 20.

Abstract

A stopped-flow bidimensional recycle HPLC (sf-BD-rHPLC) configuration has been used to investigate simultaneously the stereo and chemical stability of labile chiral compounds. The single enantiomers of a racemate can be separated on chiral column (first dimension) and each one can be trapped in the achiral column (second dimension) that works as reactor.By filling the achiral column with the appropriate aqueous buffers it is possible to evaluate the stability of the trapped enantiomer toward aqueous buffer itself. It was possible to recycle the reaction products formed in the chiral column (first dimension) where they are separated by a second six valve port. The reaction rate constants were calculated for the different processes occurred in the achiral column by means of corresponding peak areas. The method was applied to a pharmacological active compound: (±)7-chloro-5-ethyl-3-methyl-3,4-dihydro-2H-benzo[1,2,4]thiadiazine 1,1-dioxide ((±)-1) to evaluate enantiostability and hydrolysis in conditions similar to those of biological fluid. A classical batchwise kinetic method was used to calculate rate constants of hydrolysis and enantiomerization at the same temperature and in the same solvents used in sf-BD-rHPLC. The good agreement of the results obtained validate the novel procedure developed. Furthermore, the results generated off-line were used to determine the influence of solvents on the racemization of (±)-1.

摘要

采用停流二维循环高效液相色谱(sf-BD-rHPLC)配置同时研究不稳定手性化合物的立体稳定性和化学稳定性。外消旋体的单一对映体可在手性柱(第一维)上分离,且每一种对映体均可捕集于用作反应器的非手性柱(第二维)中。通过用适当的水性缓冲液填充非手性柱,可以评估捕集到的对映体对水性缓冲液本身的稳定性。在手性柱(第一维)中形成的反应产物可通过第二个六通阀端口进行分离并循环利用。通过相应的峰面积计算非手性柱中发生的不同过程的反应速率常数。该方法应用于一种药理活性化合物:(±)7-氯-5-乙基-3-甲基-3,4-二氢-2H-苯并[1,2,4]噻二嗪1,1-二氧化物((±)-1),以评估其在类似于生物流体的条件下的对映体稳定性和水解情况。采用经典的间歇动力学方法计算在与sf-BD-rHPLC相同的温度和相同溶剂中水解和对映体异构化的速率常数。所获得结果的良好一致性验证了所开发的新方法。此外,离线生成的结果用于确定溶剂对(±)-1外消旋化的影响。

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