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◆ Organic Process Research & Development2025-12-11· Chemistry

Fully Liquid Phase Oligonucleotide Synthesis

Piers R. J. Gaffney, Charles Jarrett-Wilkins, Jet Yeo, Christina Nylander, Kinza Mansha, Aneesah Mukadam, Lekha Gupta, Sharmin Akbar, Builqis Jahan, Anna Li Volsi, Aaron Pember-Jones, Jerry So, Niall Murphy, Eligijus Rupsys, Adam Oxley, Maxime Pypec, Cristina Bertulli, Nicolas Felines, Dara M. O’Brien, Alfredo Di Silvestro, Bidisha Ray, Danilo Cuccato, Mohammad Aref Khalily, Guru S. Madugundu, Inês Pereira, Daniel N. Moore, Natalia Kleczewska, Marcus Cook, Louis J. Diorazio, Alex Telford, David Benstead, Roumen Radinov, Joshua Brooks, Lubomir V. Nechev, Catalina Parga, Francesco Venturoni, Julien Haber, Claire MacLeod, Barrie Cassey, Euan Sutherland, Heather P. Walton, Andrew G. Livingston

原始摘要(原文)
Representative oligonucleotides (oligos), a 21-mer siRNA strand and a 16-mer ASO-like gapmer, were synthesized by Nanostar Sieving, a membrane-assisted liquid phase oligo synthesis (LPOS) method, at a 10 mmol scale and 20 mM concentration in a single solvent. This process is the first total LPOS beyond 10-mer, i.e., the reagents and intermediates remain in the liquid phase from the very first reaction to isolation. At all times during the synthesis of the full-length product, the concentration of oligos within the Nanostar-10 reactor remained roughly constant. Both sequences were synthesized four times, twice using membrane sheets clamped flat in circular cells and twice using scalable spiral wound modules. Cleavage and deprotection continued to maintain the oligo in the liquid phase until the final lyophilization, when yields were calculated from the optical density, adjusting for chromatographic and mass spectral purity. Synthetic process mass intensities approaching those of solid phase oligo synthesis (SPOS) were achieved.
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Fully Liquid Phase Oligonucleotide Synthesis — 科研速览 Science Skim