Zanardi María M, Biglione Franco A, Sortino Maximiliano A, Sarotti Ariel M
Área Farmacognosia, Facultad de Ciencias Bioquímicas y Farmacéuticas , Universidad Nacional de Rosario , Suipacha 531 , Rosario 2000 , Argentina.
Facultad de Química e Ingeniería del Rosario , Pontificia Universidad Católica Argentina , Av. Pellegrini 3314 , Rosario 2000 , Argentina.
J Org Chem. 2018 Oct 5;83(19):11839-11849. doi: 10.1021/acs.joc.8b01749. Epub 2018 Sep 13.
The determination of the absolute configuration of chiral alcohols and amines is typically carried out with modified Mosher methods involving a double-derivatization strategy. On the other hand, the number of robust and reliable methods to accomplish that goal using a single derivatization approach is much less abundant and mainly limited to secondary alcohols or primary amines. Herein, we report a conceptually novel strategy to settle the most likely absolute configuration of a wide variety of substrates and chiral derivatizing agents following a single-derivatization experiment coupled with quantum calculations of NMR shifts and DP4+ analysis. Using an ambitious set of 114 examples, our methodology succeeded in setting the correct absolute configuration of the substrates in 96% of the cases. The classification achieved with secondary alcohols, secondary amines, and primary amines herein studied was excellent (100%), whereas more modest results (89%) were observed for primary and tertiary alcohols. Moreover, a new DP4+ integrated probability was built to strengthen the analysis when the NMR data of the two possible diastereoisomers are available. The suitability of these methods in solving the absolute configuration of two relevant cases of stereochemical misassignment ((+)- erythro-mefloquine and angiopterlactone B) is also provided.
手性醇和胺的绝对构型测定通常采用改进的莫舍尔方法,涉及双衍生化策略。另一方面,使用单衍生化方法实现该目标的稳健可靠方法数量要少得多,主要限于仲醇或伯胺。在此,我们报告了一种概念上新颖的策略,通过单衍生化实验结合核磁共振位移的量子计算和DP4 +分析,确定各种底物和手性衍生化试剂最可能的绝对构型。使用一组多达114个示例,我们的方法在96%的情况下成功确定了底物的正确绝对构型。本文研究的仲醇、仲胺和伯胺的分类结果极佳(100%),而伯醇和叔醇的结果则相对一般(89%)。此外,当两种可能的非对映异构体的核磁共振数据可用时,构建了一种新的DP4 +综合概率以加强分析。还提供了这些方法在解决两个相关立体化学错误归属案例((+)- 赤藓甲氟喹和血管蕨内酯B)的绝对构型方面的适用性。