Capaldi Daniel C, Gaus Hans J, Carty Recaldo L, Moore Max N, Turney Brett J, Decottignies Stella D, McArdle James V, Scozzari Anthony N, Ravikumar Vasulinga T, Krotz Achim H
Isis Pharmaceuticals, Inc., 2292 Faraday Avenue, Carlsbad, CA 92008, USA.
Bioorg Med Chem Lett. 2004 Sep 20;14(18):4683-90. doi: 10.1016/j.bmcl.2004.06.088.
Incomplete sulfurization during solid-phase synthesis of phosphorothioate oligonucleotides using phosphoramidite chemistry was identified as the cause of formation of two new classes of process-related oligonucleotide impurities containing a DMTr-C-phosphonate (DMTr=4,4'-dimethoxytrityl) moiety. Phosphite triester intermediates that failed to oxidize (sulfurize) to the corresponding phosphorothioate triester react during the subsequent acid-induced (dichloroacetic acid) detritylation with the DMTr cation or its equivalent in an Arbuzov-type reaction. This leads to formation of DMTr-C-phosphonate mono- and diesters resulting in oligonucleotides modified with a DMTr-C-phosphonate moiety located internally or at the 5'terminal hydroxy group. DMTr-C-phosphonate derivatives are not detected when optimized sulfurization conditions are employed.
在使用亚磷酰胺化学方法固相合成硫代磷酸酯寡核苷酸的过程中,不完全硫化被确定为形成两类新的与工艺相关的寡核苷酸杂质的原因,这些杂质含有一个二甲氧基三苯甲基-C-膦酸酯(DMTr = 4,4'-二甲氧基三苯甲基)部分。未能氧化(硫化)为相应硫代磷酸三酯的亚磷酸三酯中间体,在随后酸诱导(二氯乙酸)脱三苯甲基反应过程中,会与DMTr阳离子或其等价物发生类似阿尔布佐夫反应类型的反应。这导致形成二甲氧基三苯甲基-C-膦酸酯单酯和二酯,从而产生在内部或5'末端羟基处被二甲氧基三苯甲基-C-膦酸酯部分修饰的寡核苷酸。当采用优化的硫化条件时,不会检测到二甲氧基三苯甲基-C-膦酸酯衍生物。