Zhou Xuan, Fillon Yannick, Shi Xianglin, Antia Firoz, Zhou Xiao, Lin Angela
Oligonucleotide Process Development, Biogen, Cambridge, Massachusetts 02142, United States.
Leal Therapeutics, Worcester, Massachusetts 01609, United States.
J Org Chem. 2024 Nov 1;89(21):15793-15807. doi: 10.1021/acs.joc.4c01885. Epub 2024 Oct 21.
Despite the availability of numerous -OH silyl protection and deprotection methods, the selective cleavage of silyl ethers in highly complex molecules can still be a challenge. In this article, we present results from a full investigation of a novel, efficient, and mild desilylation protocol using HF/imidazole. Imidazole significantly enhances the desilylation reaction efficiency of HF, allowing clean and complete deprotection of TBDPS ethers in substrates containing both acid and base sensitive groups. For example, four- and five-mer oligonucleotides were efficiently deprotected where all other conditions failed. HF/imidazole is also an effective reagent for the deprotection of TIPS and TBDMS ethers. The reagent prepared using commercially available HF and imidazole maintained the same reactivity even after 4 years of storage at 4 °C. Residual reagents and byproducts can be readily removed with a simple workup; consequently, deprotection of TBDPS was successfully implemented in a 2.5 kg scale synthesis of a five-mer oligonucleotide.
尽管有众多的羟基硅基保护和脱保护方法,但在高度复杂的分子中选择性裂解硅醚仍然是一项挑战。在本文中,我们展示了对一种使用HF/咪唑的新型、高效且温和的脱硅基方案进行全面研究的结果。咪唑显著提高了HF的脱硅基反应效率,能够在含有酸和碱敏感基团的底物中实现TBDPS醚的干净且完全脱保护。例如,在所有其他条件均失败的情况下,四聚体和五聚体寡核苷酸能被有效地脱保护。HF/咪唑也是用于TIPS和TBDMS醚脱保护的有效试剂。使用市售HF和咪唑制备的该试剂即使在4℃下储存4年后仍保持相同的反应活性。残留试剂和副产物可通过简单的后处理轻松去除;因此,在2.5千克规模的五聚体寡核苷酸合成中成功实现了TBDPS的脱保护。