Venturi Luca, Bua Emanuela, Caputo Giulia, Mileo Valentina
Preclinical Analytics and Early Formulations Department, Chiesi Farmaceutici Spa, Largo Belloli 11/A, 43123, Parma, PR, Italy.
Food and Drug Department, University of Parma, Parco Area delle Scienze 27/A, 43124, Parma, PR, Italy.
Chempluschem. 2023 May;88(5):e202200391. doi: 10.1002/cplu.202200391. Epub 2023 Mar 15.
Residual dipolar couplings (RDCs) induced by anisotropic media have been proved as a powerful tool for the structure elucidation of organic molecules in solution in nuclear magnetic resonance (NMR) based analysis. The value of dipolar couplings to solve complex conformational and configurational problems represents indeed an appealing analytical tool for the pharmaceutical industry particularly focusing on the stereochemistry characterization of NCEs since the early phase of the drug development process. In our work, RDCs were used for the conformational and configurational study of synthetic steroids with multiple stereocenters - prednisone and beclomethasone dipropionate (BDP) -. For both molecules the correct relative configuration was identified among all the possible diastereoisomers (32 and 128 respectively) arising from the compounds stereogenic carbons. Only for prednisone the use of additional experimental data (i. e. rOes) was necessary to resolve the right stereochemical structure.
由各向异性介质诱导产生的剩余偶极耦合(RDCs)已被证明是核磁共振(NMR)分析中用于阐明溶液中有机分子结构的有力工具。偶极耦合在解决复杂的构象和构型问题方面的价值,对于制药行业而言确实是一种有吸引力的分析工具,尤其在药物研发过程的早期阶段,它专注于新化学实体(NCEs)的立体化学表征。在我们的工作中,RDCs被用于具有多个立体中心的合成甾体——泼尼松和二丙酸倍氯米松(BDP)——的构象和构型研究。对于这两种分子,在由化合物的立体中心产生的所有可能的非对映异构体(分别为32个和128个)中确定了正确的相对构型。仅对于泼尼松,需要使用额外的实验数据(即旋转异构体相关光谱,rOes)来解析正确的立体化学结构。