首页> 外文期刊>Applied biochemistry and biotechnology, Part A. enzyme engineering and biotechnology >The Efficient Production of 3 beta,7 alpha,15 alpha-Trihydroxy-5-Androsten-17-One from Dehydroepiandrosterone by Gibberella intermedia
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The Efficient Production of 3 beta,7 alpha,15 alpha-Trihydroxy-5-Androsten-17-One from Dehydroepiandrosterone by Gibberella intermedia

机译:中间赤霉从脱氢表雄酮有效生产3β,7α,15α-三羟基-5-雄酮-17-一

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摘要

The biotransformation of dehydroepiandrosterone (DHEA) by Gibberella intermedia was investigated. The formation of the main products was monitored by high-performance liquid chromatography (HPLC). Products were purified and identified as 3 beta,7 alpha-dihydroxy-5-androsten-17-one (7 alpha-OH-DHEA) and 3 beta,7 alpha,15 alpha-trihydroxy-5-androsten-17-one (7 alpha,15 alpha-diOH-DHEA) using mass spectroscopy (MS) and nuclear magnetic resonance (NMR) analyses. 7 alpha,15 alpha-DiOH-DHEA is a key intermediate for the synthesis of pharmacologically active steroids. A biotransformation process was optimized to obtain a high concentration of 7 alpha,15 alpha-diOH-DHEA. The results showed the optimal biotransformation process under the following conditions: a culture medium containing 15 g/L glucose, 16 g/L yeast extract, 12 g/L corn steep liquor, and 0.15 g/L ferrous sulfate; an initial pH of 6.5; culture temperature of 30 A degrees C; inoculum size of 4 %; 40 mL volume of the culture medium in 250 mL flasks; the addition of 1 % Tween 80 as co-solvent; and the transformation period of 78 h. After optimization, the molar yield of 7 alpha,15 alpha-diOH-DHEA from 5 g/L substrate DHEA was 77.4 %, which was increased by 115 % than the yield obtained in the original bioconversion process.
机译:研究了中间赤霉菌对脱氢表雄酮(DHEA)的生物转化。通过高效液相色谱(HPLC)监控主要产物的形成。纯化产物,鉴定为3β,7α-二羟基-5-雄蕊-17-一(7 alpha-OH-DHEA)和3β,7α,15α-三羟基-5-雄蕊-17-一(7质谱(MS)和核磁共振(NMR)分析得出α,15 alpha-diOH-DHEA)。 7 alpha,15 alpha-DiOH-DHEA是合成药理活性类固醇的关键中间体。生物转化过程进行了优化,以获得高浓度的7 alpha,15 alpha-diOH-DHEA。结果表明在以下条件下最佳的生物转化过程:含有15 g / L葡萄糖,16 g / L酵母提取物,12 g / L玉米浆和0.15 g / L硫酸亚铁的培养基。初始pH值为6.5;培养温度为30 A摄氏度;接种量为4%;在250 mL烧瓶中加入40 mL体积的培养基;加入1%的吐温80作为助溶剂;转化期为78 h。优化后,由5 g / L底物DHEA产生的7 alpha,15 alpha-diOH-DHEA的摩尔产率为77.4%,比原始生物转化过程中获得的产率提高了115%。

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