...
首页> 外文期刊>Journal of Chemical Technology & Biotechnology >Dehydrogenation of 11 a-hydroxy-16a, 17-epoxyprogesterone by encapsulated Arthrobacter simplex cells in an aqueous/organic solvent two-liquid-phase system
【24h】

Dehydrogenation of 11 a-hydroxy-16a, 17-epoxyprogesterone by encapsulated Arthrobacter simplex cells in an aqueous/organic solvent two-liquid-phase system

机译:在水/有机溶剂两液相系统中,通过包裹的关节杆菌细胞将11 a-羟基-16a,17-环氧孕酮脱氢

获取原文
获取原文并翻译 | 示例
           

摘要

BACKGROUND: Arthrobacter simplex cells immobilised in sodium cellulose sulfate/poly-dimethyl-diallyl-ammonium chloride microcapsules were used for the microbial dehydrogenation of 11a-hydroxy-16a,17-epoxyprogesterone to 11a-hydroxy-16a,17a-epoxypregn-1,4-diene-3,20-dione in an aqueous/organic solvent two-liquid-phase system, which is a key reaction in the production of glucocorticoid pharmaceuticals. The aim of the study was to establish a suitable aqueous/organic solvent two-liquid-phase system for performing semi-continuous production in an airlift loop reactor by encapsulated A. simplex cells with the addition of suitable surfactants to achieve a higher yield of the product. RESULTS: n-Hexane was selected as the most suitable organic solvent. In optimised Tween-80 emulsion feed mode the conversion in the airlift loop reactor was as high as 97.54% when the time of reaction was 2 h, and the reaction time was greatly shortened. In semi-continuous production the cultivation with immobilised cells was carried out for five batches in total. The conversion in each batch was above 95% and the enzymatic activity still remained quite high after five batches of biotransformation. CONCLUSION: The results showed that performing the conversion by this method shortened the reaction time and increased the productivity, thus demonstrating the great potential of the method for the dehydrogenation of 11a-hydroxy-16a,17-epoxyprogesterone.
机译:背景:固定在硫酸钠纤维素/聚二甲基-二烯丙基-氯化铵微胶囊中的单节杆菌细胞用于将11a-羟基-16a,17-环氧孕酮微生物脱氢为11a-羟基-16a,17a-环氧孕烯-1,4 -二烯-3,20-二酮在水/有机溶剂两液相系统中的反应,这是糖皮质激素药物生产中的关键反应。该研究的目的是建立一种合适的水/有机溶剂两液相系统,用于在气举回路反应器中通过包囊的单核细胞加入适当的表面活性剂来实现半连续生产,以实现更高的收率。产品。结果:正己烷被选为最合适的有机溶剂。在优化的Tween-80乳液进料模式下,当反应时间为2 h时,气举回路反应器中的转化率高达97.54%,反应时间大大缩短。在半连续生产中,用固定细胞的培养总共进行了五批。每批次的转化率均高于95%,经过五批次的生物转化后,酶活性仍然保持很高。结论:该方法缩短了反应时间,提高了产率,证明了该方法对11a-羟基-16a,17-环氧孕酮脱氢的巨大潜力。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号