Toward a sustainable protection group approach for solid-phase oligonucleotide synthesis employing
Verneri Saari1, Mikko Ora1, Alejandro Gimenez Molina2
1Department of Chemistry, University of Turku, 20500 Turku, Finland. pamavi@utu.fi.
Abstract:
5'-O-(2-Methoxyisopropyl) (MIP)-protected nucleoside-3'-O-phosphoramidites were synthesized and evaluated as novel building blocks for automated solid-phase oligonucleotide synthesis (SPOS). Activators and additives were screened to establish the optimal conditions for the coupling of the 5'-O-MIP building blocks. Approximately half the amount of the deblocking reagent can be used to remove 5'-O-MIP compared to 5'-O-4,4'-dimethoxytrityl (DMT) with twice the rate for its deprotection. The faster 5'-O-deprotection rate reduced overall acid consumption, while the small-molecule benign byproducts (acetone and methanol) generated via MIP deprotection permit a lower PMI during SPOS. This work potentially leverages the improved design of sustainable strategies for the manufacturing of therapeutic oligonucleotides.
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