Evacetrapib
A brush-type Whelk-O 1 chiral column resolves evacetrapib from its enantiomer, two diastereomers, and six impurities (J Chromatogr A 2014)
Original title: Stereoselective high-performance liquid chromatography and analytical method characterization of evacetrapib using a brush-type chiral stationary phase: a challenging isomeric separation requiring a unique eluent system
This paper screened HPLC chiral columns from the polysaccharide, macrocyclic antibiotic, and brush classes across multiple chromatographic modes to separate evacetrapib, a candidate cardiovascular drug, from its enantiomer, two diastereomers, and several impurities. Screening consistently identified the brush-type (S,S) Whelk-O 1 chiral column as most promising, and a systematic optimization process first resolved the isomers and then incorporated six potential impurities into the separation. A relatively complex but rugged separation system was ultimately developed that resolves all compounds within a reasonable analysis time, providing an adequate tool for measuring the enantiopurity of bulk evacetrapib drug substance.
Original abstract
Using HPLC chiral separation screening, various columns representing the polysaccharide, macrocyclic antibiotic and brush classes were assessed in multiple chromatographic modes for the separation of evacetrapib, a potential cardiovascular drug, from its enantiomer, two diastereomers and several impurities. Screening data consistently pointed to the brush-type Whelk-O 1 chiral column as most promising for this task. A systematic separation optimization process is outlined using the (S,S) Whelk-O 1 chiral column, first for the resolution of the isomers, and later including six potential impurities. A relatively complex yet rugged separation system was eventually identified that effectively resolves all compounds within a reasonable analysis time, and should serve as an adequate tool for evacetrapib bulk drug enantiopurity measurement.
Summary written by cetpinhibition.org from the published abstract; figures as published. Page updated 18 August 2026. Methods.