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首页> 外文期刊>Clinical and experimental pharmacology & physiology >Strontium fructose 1,6-diphosphate rescues adenine-induced male hypogonadism and upregulates the testicular endothelin-1 system.
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Strontium fructose 1,6-diphosphate rescues adenine-induced male hypogonadism and upregulates the testicular endothelin-1 system.

机译:果糖1,6-二磷酸锶可挽救腺嘌呤引起的男性性腺功能减退,并上调睾丸内皮素1系统。

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1. Male hypogonadism is a major problem that starts to affect middle-aged men and has adversely effects on human sexual life. The aim of the present study was to investigate the effect of strontium fructose 1,6-diphosphate (FDP-Sr) on male hypogonadism in rats. 2. The pharmacological model of testis dysfunction was created by administration of adenine (200 mg/kg per day, i.g.) for 30 days. Three doses of FDP-Srs (200, 100 and 50 mg/kg per day, i.g.) were administered in parallel with adenine. Finally, mating behaviour index (the mounting latency and the number of mounting events), the total number of spermatozoa and sperm motility, related enzyme function and gene regulation and the mRNA levels of steroidogenic acute regulatory protein (StAR), cytochrome P450 side-chain cleavage enzyme (P450scc), 3beta-hydroxysteroid dehydrogenase (3beta-HSD), prepro-endothelin (ET)-1, endothelin-converting enzyme (ECE) and endothelin receptor A (ET(A)) were analysed. 3. The results showed that adenine significantly prolonged the mounting latency and decreased the number of mounting events, markedly reduced the total number of spermatozoa, slowed sperm motility and decreased testicular enzyme activity in the testes. At the mRNA level, adenine significantly downregulated serum testosterone, StAR, P450sc and 3beta-HSD. In parallel, adenine also targeted the ET-1 system, significantly downregulating mRNA levels of prepro-ET-1, ECE and ET(A). Administration of FDP-Sr dose-dependently reversed these effects. 4. In conclusion, adenine-induced testis dysfunction appears to be manifested as loss of sexual function in association with decreased spermatogenesis and reduced mRNA levels of steroidogenesis and the testicular ET-1 system. These abnormalities were significantly restored by FDP-Sr in a dose-dependent manner. These data indicate the possibility of using FDP-Sr to treat male hypogonadism.
机译:1.男性性腺功能低下是一个主要问题,开始影响中年男性,并对人类的性生活产生不利影响。本研究的目的是研究果糖1,6-二磷酸锶(FDP-Sr)对雄性性腺功能减退症的影响。 2.通过给予腺嘌呤(每天200mg / kg,例如30天)建立睾丸功能障碍的药理模型。与腺嘌呤平行施用三剂FDP-Srs(每天200、100和50 mg / kg,例如)。最后,交配行为指数(坐骑潜伏期和坐骑事件数量),精子总数和精子活动力,相关的酶功能和基因调节以及类固醇生成的急性调节蛋白(StAR)的mRNA水平,细胞色素P450侧链分析了裂解酶(P450scc),3β-羟类固醇脱氢酶(3β-HSD),内皮素原(ET)-1,内皮素转化酶(ECE)和内皮素A(ET(A))。 3.结果表明,腺嘌呤显着延长了镶嵌潜伏期,减少了镶嵌事件的次数,显着减少了精子的总数,减慢了精子的活力,并降低了睾丸中睾丸酶的活性。在mRNA水平上,腺嘌呤显着下调血清睾丸激素,StAR,P450sc和3beta-HSD。同时,腺嘌呤还靶向ET-1系统,从而显着下调了prepro-ET-1,ECE和ET(A)的mRNA水平。 FDP-Sr的给药剂量依赖性地逆转了这些作用。 4.总之,腺嘌呤诱导的睾丸功能障碍似乎表现为性功能丧失,伴有精子生成减少,类固醇生成和睾丸ET-1系统mRNA水平降低。 FDP-Sr以剂量依赖性方式显着恢复了这些异常。这些数据表明使用FDP-Sr治疗男性性腺功能减退的可能性。

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