LCPM, CNRS, Université de Lorraine, F-54000 Nancy, France.
Vietnam Academy of Science and Technology, University of Science and Technology of Hanoi (USTH), Hanoi, Vietnam.
Chirality. 2021 Jul;33(7):324-336. doi: 10.1002/chir.23313. Epub 2021 Apr 27.
Racemic ethyl 3,4-dihydro-2H-1,4-benzoxazine-2-carboxylate is a key synthon for the design of promising therapeutic drugs. It is mainly synthesized from racemic ethyl 2,3-dibromopropionate and 2-aminophenol in presence of K CO in refluxed acetone. Unfortunately, synthesis of (R)- and (S)-enantiomers using the enantioselective version of this reaction, which should normally be performed with a double S 2 mechanism, is unsuitable due to a racemization process involving the dehydrobromination of enantiopure ethyl 2,3-dibromopropionate into ethyl 2-bromoacrylate. For the first time, the enantioselective version is studied (ee ≈ 55-66%), and the percentage of racemization process has estimated to around 34-46% after determination of the optimal experimental conditions for analytical HPLC enantioseparation of racemate. The influence of the experimental and purification conditions on the racemization rate is also studied. The results indicate that racemization occurs faster at the beginning of the reaction but the initiation of the double S 2 process takes place more faster to limit the racemization rate. The study of the influence of experimental conditions (reaction times, temperature, solvent or type of base, etc.) on the degree of racemization of the (R)- enantiomer is performed and shows that despite changes in the experimental conditions, the synthesis of the (R)- enantiomer is always accompanied by a racemization rate which is difficult in reducing. In parallel, (R)- and (S)-enantiomers are obtained in high enantiopurity (ee > 99.5%) by preparative HPLC enantioseparation of racemate on multigram scale and characterized by optical rotation measurements, ECD and UV spectra.
外消旋乙基 3,4-二氢-2H-1,4-苯并恶嗪-2-羧酸酯是设计有前途治疗药物的关键合成子。它主要是由外消旋乙基 2,3-二溴代丙酸酯和 2-氨基苯酚在 K2CO3 的存在下在回流的丙酮中合成的。不幸的是,由于涉及对映纯乙基 2,3-二溴代丙酸酯去溴化生成乙基 2-溴代丙烯酸酯的外消旋化过程,使用该反应的对映选择性版本合成 (R)-和 (S)-对映异构体是不合适的。首次研究了对映选择性版本(ee ≈ 55-66%),并通过确定分析 HPLC 对映体拆分外消旋体的最佳实验条件,估计外消旋化过程的百分比约为 34-46%。还研究了实验和纯化条件对消旋化速率的影响。结果表明,外消旋化在反应开始时更快发生,但双 S2 过程的启动更快,以限制消旋化速率。研究了实验条件(反应时间、温度、溶剂或碱的类型等)对(R)-对映体消旋化程度的影响,结果表明,尽管实验条件发生变化,(R)-对映体的合成总是伴随着难以降低的消旋化速率。同时,通过外消旋体在多克规模上的制备 HPLC 对映体拆分,以高对映体纯度(ee>99.5%)获得(R)-和(S)-对映异构体,并通过旋光测量、ECD 和 UV 光谱进行表征。