Use of Fast HPLC Multiple Reaction Monitoring Cubed
for Endogenous Retinoic Acid Quantification in Complex Matrices
Posted on 2015-03-17 - 00:00
Retinoic
acid (RA), an essential active metabolite of vitamin A, controls numerous
physiological processes. In addition to the analytical challenges
owing to its geometric isomers, low endogenous abundance, and often
localized occurrence, nonspecific interferences observed during liquid
chromatography (LC) multiple reaction monitoring (MRM) quantification
methods have necessitated lengthy chromatography to obtain accurate
quantification free of interferences. We report the development and
validation of a fast high performance liquid chromatography (HPLC)
multiplexing multiple reaction monitoring cubed (MRM3)
assay for selective and sensitive quantification of endogenous RA
from complex matrices. The fast HPLC separation was achieved using
an embedded amide C18 column packed with 2.7 μm fused-core particles
which provided baseline resolution of endogenous RA isomers (all-trans-RA,
9-cis-RA, 13-cis-RA, and 9,13-di-cis-RA) and demonstrated significant improvements in chromatographic
efficiency compared to porous particle stationary phases. Multiplexing
technology further enhanced sample throughput by a factor of 2 by
synchronizing parallel HPLC systems to a single mass spectrometer.
The fast HPLC multiplexing MRM3 assay demonstrated enhanced
selectivity for endogenous RA quantification in complex matrices and
had comparable analytical performance to robust, validated LC-MRM
methodology for RA quantification. The quantification of endogenous
RA using the described assay was validated on a number of mouse tissues,
nonhuman primate tissues, and human plasma samples. The combined integration
of fast HPLC, MRM3, and multiplexing yields an analysis
workflow for essential low-abundance endogenous metabolites that has
enhanced selectivity in complex matrices and increased throughput
that will be useful in efficiently interrogating the biological role
of RA in larger study populations.
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Jones, Jace W.; Pierzchalski, Keely; Yu, Jianshi; Kane, Maureen A. (2016). Use of Fast HPLC Multiple Reaction Monitoring Cubed
for Endogenous Retinoic Acid Quantification in Complex Matrices. ACS Publications. Collection. https://doi.org/10.1021/ac504597q