Development and validation of ion-pairing HPLC-CAD chromatography for measurement of Islatravir’s phosphorylated intermediates

化学 试剂 高效液相色谱法 色谱法 组合化学 亲水作用色谱法 离子色谱法 洗脱 有机化学
作者
Matthew J. Gunsch,Erica L. Schwalm,Claire M. Ouimet,Holst M. Halsey,Simon Hamilton,Frank Bernardoni,Junyong Jo
出处
期刊:Journal of Pharmaceutical and Biomedical Analysis [Elsevier BV]
卷期号:213: 114684-114684 被引量:6
标识
DOI:10.1016/j.jpba.2022.114684
摘要

Biocatalytic processes have become more prevalent in the pharmaceutical industry, leading to analytical challenges not faced when characterizing more traditional synthetic routes. A novel one-pot biocatalytic process has been established for Islatravir, an HIV reverse transcriptase translocation inhibitor for the treatment and prevention of HIV-1. As a one-pot reaction, the Islatravir chemistry contains multiple intermediates that are not isolated. Additionally, these unisolated intermediates have no chromophores, making traditional LC-UV techniques ineffective for characterization. A hydrophilic interaction chromatography (HILIC) method with a charged aerosol detector (CAD) was initially developed, however numerous inorganic species present in the one-pot reaction were retained; this led to co-elution of compounds and poor peak shapes. An innovative ion-pairing LC method was developed in order to resolve inorganic species, intermediates, and the API, for use during in-process control of the Islatravir biocatalytic reaction. Aided by a volatile ion-pairing reagent compatible with the CAD, this method successfully retains and resolves the highly polar intermediates of interest and Islatravir API. This novel method was successfully validated and has allowed the Islatravir biocatalytic process to be fully characterized from the early intermediates through the final API within the one-pot reaction without the need for isolations. This novel ion-pairing HPLC-CAD technique lays the groundwork for method development on current and future biocatalytic-produced drug substances. • Islatravir biocatalytic cascade unable to be characterized by traditional methods. • Separation of mixture of non-chromophoric phosphorylated intermediates required. • HPLC coupled with charged aerosol detector used to detect compounds. • Ion-pairing reagents added to HPLC mobile phase to retain compounds. • Method successfully used for Islatravir in-process characterization and profiling.
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