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首页> 外文期刊>Applied biochemistry and microbiology >Biotransformation of cortexolone to hydrocortisone by molds using a rapid color-development assay
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Biotransformation of cortexolone to hydrocortisone by molds using a rapid color-development assay

机译:快速发色实验表明霉菌将皮质酮转化为氢化可的松

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The capacity of 22 molds for 11β-hydroxylation of cortexolone (Reichstein’s compound S) to hydrocortisone were assessed. The biotransformation capacity was compared for solid-state and submerged monocultures of molds that were otherwise under identical conditions. Thin-layer chromatography and a novel rapid color-development assay were used to qualitatively establish the ability of fungi to convert cortexolone to hydrocortisone. These assays were validated and supplemented with data from high-performance liquid chromatography to obtain quantitative information on biotransformation. Nearly all the fungi consumed a significant fraction of the cortexolone fed, but only four of them (i.e., two isolates of Cunninghamella blakesleeana, C. echinulata, and Curvularia lunata) yielded measurable quantities of hydrocortisone. Submerged cultures generally gave a significantly greater yield of hydrocortisone compared to equivalent solid-state cultures.
机译:评估了22种霉菌将皮质醇(Reichstein化合物S)的11β-羟基化为氢化可的松的能力。比较了在相同条件下霉菌的固态和浸没式单培养的生物转化能力。薄层色谱法和新颖的快速显色测定法用于定性确定真菌将皮质酮转化为氢化可的松的能力。对这些测定进行了验证,并补充了高效液相色谱数据,以获取有关生物转化的定量信息。几乎所有的真菌都消耗了喂食的皮质醇的很大一部分,但是只有其中的四种(即,两株坎宁哈姆氏菌,棘孢梭菌和弯孢弯曲菌)产生了可测量的氢化可的松量。与等效的固态培养物相比,淹没培养物通常可氢化可的松的产率要高得多。

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