Ethanol-induced inhibition of testosterone biosynthesis in rat leydig cells: Role of l-glutamate and pyruvate

Arto K. Orpana , Mauri M. Orava , Reijo K. Vihko , Matti Härkönen , C.J.Peter Eriksson
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引用次数: 8

Abstract

The mechanisms by which ethanol (EtOH) inhibits testicular testosterone biosynthesis were studied with isolated rat Leydig cells in vitro comparing the effects of EtOH in six different culture media. The actual sites of inhibition by EtOH, identified by measuring the steroidogenic precursors, varied depending on the medium used. In Krebs-Ringer bicarbonate buffer, EtOH inhibited both the conversion of pregnenolone to progesterone and androstenedione to testosterone. In the pyruvate (Pyr) supplemented Dulbecco's Modified Eagle medium, the decreased progesterone concentrations in the presence of EtOH were reflected to all successive steroids 17-OH-progesterone, androstenedione and testerone. The presence of l-glutamate (Glu) in the medium elevated testosterone production, but EtOH still inhibited the conversion of pregnenolone to progesterone, and also the androstenedione/testosterone ratio was elevated because of the decreased testosterone concentrations. In the presence of both Glu and Pyr in the medium the EtOH-induced decreases in the steroid concentrations were fully recovered in isolated Leydig cells. These results demonstrate that both Pyr and Glu supplementations are essential for the maintenance of maximal rate of testosterone synthesis in vitro in the presence of EtOH.

乙醇诱导的大鼠间质细胞睾酮生物合成的抑制:l-谷氨酸和丙酮酸的作用
采用离体大鼠间质细胞,研究了乙醇(EtOH)抑制睾丸睾酮生物合成的机制,比较了乙醇在6种不同培养基中的作用。通过测量甾体生成前体确定的EtOH的实际抑制位点取决于所使用的培养基。在Krebs-Ringer碳酸氢盐缓冲液中,EtOH抑制孕烯醇酮向黄体酮和雄烯二酮向睾酮的转化。在pyruvate (Pyr)补充Dulbecco's Modified Eagle培养基中,EtOH存在时孕酮浓度的降低反映在所有连续类固醇17- oh -孕酮、雄烯二酮和睾酮上。培养基中l-谷氨酸(Glu)的存在提高了睾酮的产生,但EtOH仍然抑制孕烯醇酮向孕酮的转化,并且由于睾酮浓度降低,雄烯二酮/睾酮比值升高。在培养基中同时存在Glu和Pyr的情况下,etoh诱导的类固醇浓度下降在离体间质细胞中完全恢复。这些结果表明,在EtOH存在的情况下,Pyr和Glu的补充对于维持体外睾酮合成的最大速率是必不可少的。
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