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Testosterone replacement in transgenic sickle cell mice controls priapic activity and upregulates PDE5 expression and eNOS activity in the penis

机译:转基因镰刀细胞小鼠中的睾丸激素替代控制阴茎活动并增加阴茎中PDE5表达和eNOS活性

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摘要

Sickle cell disease (SCD)-associated priapism is characterized by decreased nitric oxide (NO) signaling and downregulated phosphodiesterase (PDE)5 protein expression and activity in the penis. Priapism is also associated with testosterone deficiency, but molecular mechanisms underlying testosterone effects in the penis in SCD are not known. Given the critical role of androgens in erection physiology and NO synthase (NOS)/PDE5 expression, we hypothesized that testosterone replacement to eugonadal testosterone levels reduces priapism by reversing impaired endothelial (e)NOS activity and molecular abnormalities involving PDE5. Adult male transgenic Berkeley sickle cell (Sickle) and wild type (WT) mice were implanted with testosterone pellets, which release 1.2 μg testosterone/day for 21 days, or vehicle. After 21 days, animals underwent erectile function assessment followed by collection of blood for serum testosterone measurements, penes for molecular analysis, and seminal vesicles as testosterone-responsive tissue. Serum testosterone levels were measured by radioimmunoassay; protein expressions of PDE5, α smooth muscle actin, eNOS and nNOS, and phosphorylation of PDE5 at Ser-92, eNOS at Ser-1177, neuronal (n)NOS at Ser-1412, and Akt at Ser-473, were measured by western blot in penile tissue. Testosterone treatment reversed downregulated serum testosterone levels and increased (P<0.05) the weight of seminal vesicles in Sickle mice to levels comparable to that of WT mice, indicating restored testosterone levels in Sickle mice. Testosterone treatment reduced (P<0.05) prolonged detumescence in Sickle mice, and normalized downregulated P-PDE5 (Ser-92), PDE5, P-eNOS (Ser-1177), and P-Akt (Ser-473) protein expressions in the Sickle mouse penis. Testosterone treatment did not affect P-nNOS (Ser-1412), eNOS, nNOS, or α smooth muscle actin protein expressions in the Sickle mouse penis. In conclusion, in the mouse model of human SCD, increasing testosterone to eugonadal levels reduced priapic activity and reversed impaired Akt/eNOS activity and PDE5 protein expression in the penis.
机译:镰状细胞病(SCD)相关的阴茎异常勃起的特征是阴茎中一氧化氮(NO)信号降低和磷酸二酯酶(PDE)5蛋白表达和活性下调。阴茎异常勃勃还与睾丸激素缺乏有关,但尚不清楚SCD阴茎中睾丸激素作用的分子机制。鉴于雄激素在勃起生理和一氧化氮合酶(NOS)/ PDE5表达中的关键作用,我们假设睾丸激素替代成性腺激素睾丸激素水平可以通过逆转受损的内皮(e)NOS活性和涉及PDE5的分子异常来减少阴茎异常勃起。将成年雄性转基因伯克利镰刀细胞(Sickle)和野生型(WT)小鼠植入睾丸激素小丸,每天释放1.2μg睾丸激素,持续21天,或赋形剂。 21天后,对动物进行勃起功能评估,然后收集血液以进行血清睾丸激素测量,阴茎进行分子分析,并以精囊作为睾丸激素反应组织。通过放射免疫测定法测定血清睾丸激素水平;用Western免疫印迹法检测PDE5的蛋白表达,α平滑肌肌动蛋白,eNOS和nNOS以及Ser-92处PDE5的磷酸化,ser-1177处eNOS,Ser-1412处神经元(n)NOS和Ser-473处Akt阴茎组织中的印迹。睾丸激素治疗可以逆转血清睾丸激素水平的下调,并使Sickle小鼠精囊重量增加(P <0.05)至与WT小鼠相当的水平,表明Sickle小鼠睾丸激素水平得以恢复。睾丸激素治疗可减少(P <0.05)Sickle小鼠的脱瘤时间延长,并使P-PDE5(Ser-92),PDE5,P-eNOS(Ser-1177)和P-Akt(Ser-473)蛋白表达下调。镰状老鼠的阴茎。睾丸激素治疗不影响镰刀鼠阴茎中的P-nNOS(Ser-1412),eNOS,nNOS或α平滑肌肌动蛋白蛋白表达。总之,在人SCD的小鼠模型中,将睾丸激素水平提高至真性腺激素水平可降低阴茎活动,并逆转阴茎中受损的Akt / eNOS活性和PDE5蛋白表达。

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