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雄激素通过非一氧化氮依赖途径维持大鼠勃起反应。

Androgenic maintenance of the rat erectile response via a non-nitric-oxide-dependent pathway.

作者信息

Reilly C M, Lewis R W, Stopper V S, Mills T M

机构信息

Department of Physiology and Endocrinology, Medical College of Georgia, Augusta 30912-3000, USA.

出版信息

J Androl. 1997 Nov-Dec;18(6):588-94.

PMID:9432131
Abstract

Prior studies have demonstrated that the erectile response in the rat penis is androgen dependent and is mediated by nitric oxide (NO), the neurotransmitter synthesized by the enzyme nitric oxide synthase (NOS). The present studies used L-nitro-L-arginine methyl ester (L-NAME), an inhibitor of NOS, to determine if androgens also regulate alternative pathways leading to the erectile response but not mediated by NO. Castrated rats that were treated with L-NAME (L-NAME CASTRATE) exhibited little or no increase in intracavernosal pressure in response to stimulation of the major pelvic ganglion. This ganglion controls blood flow into the penis and, when stimulated, normally leads to erection. However, when castrated animals were treated with testosterone along with L-NAME (L-NAME TESTO), the animals responded to the ganglionic stimulation with increased intracavernosal pressure. This finding suggests that there are other androgen-dependent pathways that lead to penile erection but are not mediated by NO. Erection occurred in both L-NAME CASTRATE and L-NAME TESTO rats in response to intracavernosal injection of sodium nitroprusside (an NO donor drug), proving that the NO responsive mechanisms were unaffected by the inhibition of NOS activity. To investigate further the nature of this NO independent pathway, L-NAME CASTRATE and L-NAME TESTO rats were treated with either zaprinast (a specific phosphodiesterase 5 inhibitor), which would block the breakdown of cGMP to 5'GMP, or methylene blue (an inhibitor of guanylate cyclase) to prevent the synthesis of cGMP. Zaprinast treatment led to increased erectile response in L-NAME TESTO rats but not in L-NAME CASTRATE rats, demonstrating that androgen-sensitive alternative pathways increased guanylate cyclase activity. Methylene blue inhibited the erectile response in all treatment groups, showing that cyclic GMP is critical to the NO-independent pathway as well as the NO-dependent pathway. Taken together, these results support the hypothesis that androgens maintain the erectile response by alternate pathways, including one that is independent of NO but involves the synthesis of cyclic GMP.

摘要

先前的研究表明,大鼠阴茎的勃起反应依赖雄激素,且由一氧化氮(NO)介导,NO是由一氧化氮合酶(NOS)合成的神经递质。本研究使用NOS抑制剂L-硝基-L-精氨酸甲酯(L-NAME)来确定雄激素是否也调节导致勃起反应但不由NO介导的其他途径。用L-NAME处理的去势大鼠(L-NAME去势组)在受到主要盆神经节刺激时,海绵体内压几乎没有增加或没有增加。该神经节控制阴茎的血流,受到刺激时通常会导致勃起。然而,当去势动物同时用睾酮和L-NAME处理时(L-NAME睾酮组),动物对神经节刺激的反应是海绵体内压增加。这一发现表明,存在其他依赖雄激素的途径可导致阴茎勃起,但不由NO介导。L-NAME去势组和L-NAME睾酮组大鼠在海绵体内注射硝普钠(一种NO供体药物)后均出现勃起,证明NO反应机制不受NOS活性抑制的影响。为了进一步研究这条不依赖NO的途径的性质,给L-NAME去势组和L-NAME睾酮组大鼠分别用扎普司特(一种特异性磷酸二酯酶5抑制剂)或亚甲蓝(一种鸟苷酸环化酶抑制剂)处理,扎普司特可阻止cGMP分解为5'-GMP,亚甲蓝可阻止cGMP的合成。扎普司特处理使L-NAME睾酮组大鼠的勃起反应增强,但L-NAME去势组大鼠无此现象,表明雄激素敏感的其他途径增加了鸟苷酸环化酶的活性。亚甲蓝抑制了所有处理组的勃起反应,表明环鸟苷酸对不依赖NO的途径以及依赖NO的途径都至关重要。综上所述,这些结果支持以下假说:雄激素通过其他途径维持勃起反应,包括一条不依赖NO但涉及环鸟苷酸合成的途径。

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