Developmental Therapeutics Program, Division of Cancer Treatment and Diagnosis, The National Cancer Institute, Rockville, MD, USA.
Frederick National Laboratory for Cancer Research, Frederick, MD, USA.
Nucleosides Nucleotides Nucleic Acids. 2021;40(1):68-95. doi: 10.1080/15257770.2020.1832694. Epub 2020 Oct 16.
The lack of effective methods to perform direct β-selective glycosylation reactions with 2-deoxy-1,4-dithio-D--pentofuranosides has long been a significant stumbling block for the multi-gram synthesis of 4'-thio-2'-deoxy nucleosides. In addition, previously reported methods for the preparation of appropriately substituted 2-deoxy-1,4-dithio-D--pentofuranosides have proven problematic for large scale synthesis. To address these issues, herein we describe the modification and optimization of previously reported methods to allow for the convenient large scale synthesis of benzyl substituted 2-deoxy-1,4-dithio-D--pentofuranosides. Furthermore, we describe the development of reaction conditions for β-selective glycosylation reactions of benzyl substituted 2-deoxy-1,4-dithio-D--pentofuranosides with both N4-benzoylcytosine and 5-aza-cytosine to enable the practical multi-gram syntheses of the clinical candidates 4'-thio-2'-deoxycytidine (T-dCyd) and 5-aza-4'-thio-2'-deoxycytidine (aza-T-dCyd). Taken together, these new synthetic developments have made possible the preclinical and early clinical development of these important anticancer agents at the National Cancer Institute.
长期以来,缺乏有效方法来实现 2-脱氧-1,4-二硫代-D--戊呋喃糖苷与 2-脱氧-1,4-二硫代-D--戊呋喃糖的直接β选择性糖苷化反应,这一直是 4'-硫代-2'-脱氧核苷多克规模合成的一个重大障碍。此外,以前报道的制备适当取代的 2-脱氧-1,4-二硫代-D--戊呋喃糖的方法在大规模合成方面也存在问题。为了解决这些问题,本文对以前报道的方法进行了修改和优化,以方便进行苄基取代的 2-脱氧-1,4-二硫代-D--戊呋喃糖的大规模合成。此外,本文还描述了苄基取代的 2-脱氧-1,4-二硫代-D--戊呋喃糖与 N4-苯甲酰胞嘧啶和 5-氮杂胞嘧啶的β选择性糖苷化反应条件的开发,以实现临床候选物 4'-硫代-2'-脱氧胞苷(T-dCyd)和 5-氮杂-4'-硫代-2'-脱氧胞苷(aza-T-dCyd)的实际多克规模合成。总之,这些新的合成进展使这些重要抗癌剂在国家癌症研究所进行临床前和早期临床开发成为可能。