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司坦唑醇在丝状真菌中的生物转化及其代谢产物的β-葡萄糖醛酸酶抑制活性。

Biotransformation of dianabol with the filamentous fungi and β-glucuronidase inhibitory activity of resulting metabolites.

作者信息

Khan Naik T, Zafar Salman, Noreen Shagufta, Al Majid Abdullah M, Al Othman Zeid A, Al-Resayes Saud Ibrahim, Choudhary M Iqbal

机构信息

H.E.J. Research Institute of Chemistry, International Center for Chemical and Biological Sciences, University of Karachi, Karachi 75270, Pakistan.

Department of Chemistry, College of Science, King Saud University, Riyadh 11451, Saudi Arabia.

出版信息

Steroids. 2014 Jul;85:65-72. doi: 10.1016/j.steroids.2014.04.004. Epub 2014 Apr 19.

Abstract

Biotransformation of the anabolic steroid dianabol (1) by suspended-cell cultures of the filamentous fungi Cunninghamella elegans and Macrophomina phaseolina was studied. Incubation of 1 with C. elegans yielded five hydroxylated metabolites 2-6, while M. phaseolina transformed compound 1 into polar metabolites 7-11. These metabolites were identified as 6β,17β-dihydroxy-17α-methylandrost-1,4-dien-3-one (2), 15α,17β-dihydroxy-17α-methylandrost-1,4-dien-3-one (3), 11α,17β-dihydroxy-17α-methylandrost-1,4-dien-3-one (4), 6β,12β,17β-trihydroxy-17α-methylandrost-1,4-dien-3-one (5), 6β,15α,17β-trihydroxy-17α-methylandrost-1,4-dien-3-one (6), 17β-hydroxy-17α-methylandrost-1,4-dien-3,6-dione (7), 7β,17β,-dihydroxy-17α-methylandrost-1,4-dien-3-one (8), 15β,17β-dihydroxy-17α-methylandrost-1,4-dien-3-one (9), 17β-hydroxy-17α-methylandrost-1,4-dien-3,11-dione (10), and 11β,17β-dihydroxy-17α-methylandrost-1,4-dien-3-one (11). Metabolite 3 was also transformed chemically into diketone 12 and oximes 13, and 14. Compounds 6 and 12-14 were identified as new derivatives of dianabol (1). The structures of all transformed products were deduced on the basis of spectral analyses. Compounds 1-14 were evaluated for β-glucuronidase enzyme inhibitory activity. Compounds 7, 13, and 14 showed a strong inhibition of β-glucuronidase enzyme, with IC50 values between 49.0 and 84.9 μM.

摘要

研究了丝状真菌雅致小克银汉霉(Cunninghamella elegans)和菜豆壳球孢(Macrophomina phaseolina)的悬浮细胞培养物对合成代谢类固醇大力补(1)的生物转化。将1与雅致小克银汉霉一起培养产生了五种羟基化代谢物2 - 6,而菜豆壳球孢将化合物1转化为极性代谢物7 - 11。这些代谢物被鉴定为6β,17β - 二羟基 - 17α - 甲基雄甾 - 1,4 - 二烯 - 3 - 酮(2)、15α,17β - 二羟基 - 17α - 甲基雄甾 - 1,4 - 二烯 - 3 - 酮(3)、11α,17β - 二羟基 - 17α - 甲基雄甾 - 1,4 - 二烯 - 3 - 酮(4)、6β,12β,17β - 三羟基 - 17α - 甲基雄甾 - 1,4 - 二烯 - 3 - 酮(5)、6β,15α,17β - 三羟基 - 17α - 甲基雄甾 - 1,4 - 二烯 - 3 - 酮(6)、17β - 羟基 - 17α - 甲基雄甾 - 1,4 - 二烯 - 3,6 - 二酮(7)、7β,17β - 二羟基 - 17α - 甲基雄甾 - 1,4 - 二烯 - 3 - 酮(8)、15β,17β - 二羟基 - 17α - 甲基雄甾 - 1,4 - 二烯 - 3 - 酮(9)、17β - 羟基 - 17α - 甲基雄甾 - 1,4 - 二烯 - 3,11 - 二酮(10)和11β,17β - 二羟基 - 17α - 甲基雄甾 - 1,4 - 二烯 - 3 - 酮(11)。代谢物3也被化学转化为二酮12和肟13以及14。化合物6和12 - 14被鉴定为大力补(1)的新衍生物。所有转化产物的结构均通过光谱分析推导得出。评估了化合物1 - 14对β - 葡萄糖醛酸酶的抑制活性。化合物7、13和14对β - 葡萄糖醛酸酶表现出强烈抑制作用,IC50值在49.0至84.9μM之间。

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