Temperature-controlled transition between non-denaturing and denaturing analysis of Patisiran on a mixed-mode SAX
Mirna Maalouf1, Niklas Carstensen1, Marc Wolter1
1Institute of Pharmaceutical Sciences, Pharmaceutical (Bio-)Analysis, University of Tübingen, Auf der Morgenstelle 8, 72076 Tübingen, Germany.
Abstract:
Oligonucleotides are emerging nucleic acid-based therapeutics with growing clinical interest and regulatory approvals. As their use expands, reliable analytical methods are needed for quality assessment. Amongst them siRNA are short RNA duplexes which require quality control in non-dissociated form under non-denaturing conditions. Size-exclusion chromatography, anion-exchange chromatography and ion-pair reversed-phase liquid chromatography have been mainly employed for duplex siRNA analysis. In this work, we demonstrate that the (type of) stationary phase affects the melting temperature of the siRNA Patisiran. A silica-based porous mixed-mode triphenylphosphonium-based SAX stationary phase enabled the separation of antisense and sense single strands at 10 °C under non-denaturing conditions with NaCl-gradient elution. In the presence of this stationary phase, on-column melting of Patisiran siRNA duplex was observed at around 60 °C. At around 80 °C, the injection of the duplex siRNA resulted in denaturing conditions allowing single strand analysis on the same column. Interestingly, employing the same elution conditions on a nonporous hydrophilic polymer particle-based quaternary trimethylammonium-SAX column no dissociation, i.e. no melting, of the siRNA duplex occurred in the temperature range up to 80 °C. Thermodynamic analysis exhibited a distinct retention mechanism on the triphenylphosphonium-SAX and quaternary trimethylammonium-SAX columns. Under salt-free ion-pair reversed-phase LC conditions with 25 mM dibutylammonium acetate, the duplex was stable only under 20 °C, while above denaturing conditions were obtained. A heart-cutting 2D-LC approach was finally suggested for simultaneous non-denaturing and denaturing LC analysis of Patisiran in one analytical run. Non-denaturing LC on triphenylphosphonium-SAX stationary phase at 20 °C column temperature was employed as the first dimension which allowed intact duplex analysis and single strand excess analysis. A heart cut of the duplex peak was transferred via loop interface into the second dimension where the single strands were analysed under denaturing conditions on triphenylphosphonium-SAX stationary phase at 80 °C with the same mobile phase.
More Related Videos
09:09Preparation of Human Tissues Embedded in Optimal Cutting Temperature Compound for Mass Spectrometry Analysis
Published on: April 27, 2021
08:56Detection of Regulated Ergot Alkaloids in Food Matrices by Liquid Chromatography-Trapped Ion Mobility Spectrometry-Time-of-Flight Mass Spectrometry
Published on: November 22, 2024
Related Concept Videos
Capillary Electrophoresis: Applications
Capillary zone electrophoresis (CZE) separates ionic components based on their electrophoretic mobility. It has been used to separate proteins, amino acids,...
High-Performance Liquid Chromatography: Introduction
In HPLC, two phases play a critical role in the separation process:
Gas Chromatography: Types of Columns and Stationary Phases
For an analyte to remain on the column for a sufficient amount of time, it must exhibit some level of compatibility (or...
High-Performance Liquid Chromatography: Elution Process
Analyte Adsorption and Distribution
High-Performance Liquid Chromatography: Instrumentation
