化学
废止
亲核细胞
产量(工程)
Stille反应
催化作用
组合化学
水解
全合成
醋酸酐
有机化学
叠氮化物
键裂
喹喔啉
异硫氰酸盐
残留物(化学)
异硫氰酸苯酯
级联反应
氯化物
苯并呋喃
电泳剂
劈理(地质)
微型反应器
化学合成
流动化学
试剂
立体化学
立体中心
胺化
酰化
作者
Yuxi Wu,Chunling Zeng,Shitang Xu,Bingting Yao,Xirong Liu,Chao Sun,Zetao Jiang,Xinhua Xu,Lifen Peng
标识
DOI:10.1021/acs.oprd.6c00047
摘要
The recombinant 3-ketosteroid Δ1-dehydrogenase from Rhodococcus erythropolis PR4 (KstD-Re1) catalyzed the Δ1-dehydrogenation of ester (1a) to access vamorolone-21-ester (2a). After modification of the structure and examination of the reaction carefully, the recombinase (KstD-Re1) with position 194 changing from Val to Gly and 318 changing from Tyr to tryptophan (Trp, W) was screened as the best catalyst. Other steroids like androstenedione, progesterone, testosterone, hydroxyprogesterone, and hydrocortisone acetate were also tolerated well in this Δ1-dehydrogenation. The molecular docking of 1a with KstD-Re1 was also disclosed. We found that the dual base (NaOH/K2CO3)-mediated hydrolysis of 2a formed vamorolone in 94.0% yield and 99.6% purity, meeting the International Conference Harmonization of Technical Requirements for Pharmaceuticals for Human Use (ICH) quality standards. Staring from the readily available and inexpensive 16α-methyl-4,9-androstadiene-3,17-dione (3), ester 1a could be generated in 80.5% total yield through cyanidation/silyl etherification, in situ silicon nucleophile annelation process (SNAP)/desilylation, and substitution. Notably, a continuous-flow in situ SNAP/desilylation in a microchannel reactor was developed to produce chloride (5) in 91.7% yield, which not only improved the yield dramatically but also avoided the harsh reaction conditions and side reactions such as desilylation, C–Cl bond cleavage and flipping of 16-CH3. Compared to previously reported synthetic routes to vamorolone, our approach offers advantages like low cost, higher yield, mild reaction conditions, excellent product quality, and gram-scale synthesis.
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