低睾酮水平会通过增加大鼠阴茎海绵体内切酶的表达来损害勃起功能。

IF 4.3 3区 材料科学 Q1 ENGINEERING, ELECTRICAL & ELECTRONIC
Zhaoguo Chen, Jun Jiang, Rui Jiang
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引用次数: 0

摘要

背景:低睾酮状态导致勃起功能障碍(ED)的机制尚未确定。内切酶是内皮功能的一种新型标记物。目的:在这项研究中,我们试图确定低睾酮状态是否会通过调节大鼠阴茎海绵体内皮细胞的内皮素表达来抑制勃起功能:将 36 只年龄为 8 周的雄性 Sprague-Dawley 大鼠随机分为以下 6 组(每组 6 只):(1)对照组;(2)阉割组;(3)阉割+睾酮治疗组(每2天用3 mg/kg丙酸睾酮治疗);(4)对照组+转染组(阉割4周后,注射慢病毒载体(1 × 108转导单位/mL,10 μL));(5)阉割+转染组;或(6)阉割+空转染组。注射一周后,我们测量了大鼠阴茎海绵体的最大海绵体内压/平均动脉压(ICPmax/MAP)、血清睾酮和一氧化氮(NO)水平,以及内皮素、磷酸化内皮NO合酶(p-eNOS)、eNOS、磷酸化蛋白激酶B(p-AKT)和AKT的表达:结果:在低雄激素状态下,大鼠阴茎海绵体中内切酶的表达明显增加,从而抑制了AKT/eNOS/NO信号通路,导致ED:结果:阉割组大鼠阴茎海绵体中内切酶的表达明显高于对照组(P 临床意义:阉割组大鼠阴茎海绵体中内切酶的表达明显高于对照组(P 临床意义:阉割组大鼠阴茎海绵体中内切酶的表达明显高于对照组):下调阴茎海绵体内皮细胞内皮素的表达可能是治疗雄激素过低引起的ED的一种可行方法:这项研究的结果表明,内切酶可能会通过多种信号通路影响NO水平和勃起功能,但还需要进一步的实验来阐明内切酶与雄激素之间的关系:结论:低睾酮状态通过增加大鼠阴茎海绵体中内切酶的表达抑制 AKT/eNOS/NO 信号通路,并损害大鼠的勃起功能。降低阴茎海绵体中内切酶的表达可改善低睾酮水平大鼠的勃起功能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A low testosterone level impairs erectile function by increasing endocan expression in rat penile corpus cavernosum.

Background: The mechanism by which a state of low testosterone leads to erectile dysfunction (ED) has not been determined. Endocan is a novel marker of endothelial function. However, whether endocan is involved in the regulation of erectile function under low testosterone levels remains unclear.

Aim: In this study we sought to determine whether a low-testosterone state inhibits erectile function by regulating endocan expression in the endothelial cells of the rat penile corpus cavernosum.

Methods: Thirty-six male Sprague-Dawley rats aged 8 weeks were randomly assigned to 6 groups (n = 6 per group) as follows: (1) control, (2) castration, (3) castration + testosterone treatment (treated with 3 mg/kg testosterone propionate per 2 days), (4) control + transfection (4 weeks after castration, injected with lentiviral vector (1 × 108 transduction units/mL, 10 μL), (5) castration + transfection, or (6) castration + empty transfection. One week after the injection, we measured the maximal intracavernous pressure/mean arterial pressure (ICPmax/MAP), serum testosterone and nitric oxide (NO) levels, and the expression of endocan, phospho-endothelial NO synthase (p-eNOS), eNOS, phospho-protein kinase B (p-AKT), and AKT in the rat penile corpus cavernosum.

Outcomes: Under a low-androgen state, the expression of endocan in the rat penile corpus cavernosum was significantly increased, which inhibited the AKT/eNOS/NO signaling pathway and resulted in ED.

Results: In the castration group, the expression of endocan in the rat penile corpus cavernosum was significantly higher than that in the control group (P < .05). Additionally, the levels of p-AKT/AKT, p-eNOS/eNOS, and NO in the rat penile corpus cavernosum and ICPmax/MAP were significantly lower in the castration group than in the control group (P < .05). In the castration + transfection group compared with the castration group there was a significant decrease in the expression of endocan (P < .05) and an increase in the ratios of p-AKT/AKT, p-eNOS/eNOS, and ICPmax/MAP (P < .05) in the rat penile corpus cavernosum.

Clinical implications: Downregulating the expression of endocan in the penile corpus cavernosum may be a feasible approach for treating ED caused by hypoandrogenism.

Strengths and limitations: The results of this study indicte that endocan may affect NO levels and erectile function through multiple signaling pathways, but further experiments are needed to clarify the relationship between endocan and androgens.

Conclusion: A low-testosterone state inhibits the AKT/eNOS/NO signaling pathway by increasing the expression of endocan in the rat penile corpus cavernosum and impairing erectile function in rats. Decreasing the expression of endocan in the penile corpus cavernosum can improve erectile function in rats with low testosterone levels.

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CiteScore
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