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Microbial transformation of anti-cancer steroid exemestane and cytotoxicity of its metabolites against cancer cell lines

机译:抗癌类固醇依西美坦的微生物转化及其代谢产物对癌细胞系的细胞毒性

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Background Microbial transformation of steroids has been extensively used for the synthesis of steroidal drugs, that often yield novel analogues, not easy to obtain by chemical synthesis. We report here fungal transformation of a synthetic steroidal drug, exemestane, used for the treatment of breast cancer and function through inhibition of aromatase enzyme. Results Microbial transformation of anti-cancer steroid, exemestane (1), was investigated by using two filamentous fungi. Incubation of 1 with fungi Macrophomina phaseolina, and Fusarium lini afforded three new, 11α-hydroxy-6-methylene-androsta-1, 4-diene-3,17-dione (2), 16β, 17β-dihydroxy-6-methylene-androsta-1, 4-diene-3-one (3), and 17β-hydroxy-6-methylene-androsta-1, 4-diene-3, 16-dione (4), and one known metabolites, 17β-hydroxy-6-methylene-androsta-1, 4-diene-3-one (5). Their structures were deduced spectroscopically. Compared to 1 (steroidal aromatase inactivator), the transformed metabolites were also evaluated for cytotoxic activity by using a cell viability assay against cancer cell lines (HeLa and PC3). Metabolite 2 was found to be moderately active against both the cell lines. Conclusions Biotransformation of exemestane (1) provides an efficient method for the synthesis of new analogues of 1. The metabolites were obtained as a result of reduction of double bond and hydroxylation. The transformed product 2 exhibited a moderate activity against cancer cell lines (HeLa and PC3). These transformed products can be studied for their potential as drug candidates.
机译:背景技术类固醇的微生物转化已被广泛用于类固醇药物的合成,该类固醇药物通常产生新的类似物,不易通过化学合成获得。我们在这里报告了合成甾体药物exemestane的真菌转化,该药物用于治疗乳腺癌并通过抑制芳香化酶来发挥功能。结果使用两种丝状真菌研究了抗癌类固醇依西美坦(1)的微生物转化。将1与真菌Macrophomina phaseolina和镰刀镰刀菌(Fusarium lini)一起孵育可得到三个新的11α-羟基-6-亚甲基-雄激素-1、4-二烯-3,17-二酮(2),16β,17β-二羟基-6-亚甲基androsta-1、4-diene-3-one(3)和17β-羟基-6-亚甲基-androsta-1、4-diene-3、16-dione(4)和一种已知的代谢物17β-hydroxy- 6-亚甲基-雄烷-1,4-二烯-3-一(5)。它们的结构是通过光谱推断的。与1(类固醇芳香化酶灭活剂)相比,还通过使用针对癌细胞系(HeLa和PC3)的细胞活力测定法评估了转化的代谢物的细胞毒活性。发现代谢物2对两种细胞系均具有中等活性。结论依西美坦(1)的生物转化为1的新类似物的合成提供了一种有效的方法。代谢物的产生是由于双键和羟基化作用的减少。转化产物2表现出对癌细胞系(HeLa和PC3)的中等活性。可以研究这些转化产品作为候选药物的潜力。

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