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首页> 外文期刊>Theriogenology >Characterization of (beta-Nerve Growth Factor-TrkA system in male reproductive tract of rabbit and the relationship between beta-NGF and testosterone levels with seminal quality during sexual maturation
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Characterization of (beta-Nerve Growth Factor-TrkA system in male reproductive tract of rabbit and the relationship between beta-NGF and testosterone levels with seminal quality during sexual maturation

机译:(β-神经生长因子-Trka系统在兔子雄性生殖道中的表征及性成熟期间β-NGF与睾酮水平的关系

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beta-Nerve Growth Factor (beta-NGF) is a neurotrophin which acts through its receptors TrkA and p75, performing important actions in male reproductive physiology and its presence in seminal plasma (SP) has been related to male fertility. The aim of the present study was to evaluate the gene expression profile and the immunolocalization of beta-NGF and its high-affinity receptor TrkA in sex organs in rabbits during sexual maturation period. beta-NGF concentration for both SP and blood plasma (BP) and BP testosterone levels were determined as well as the seminal parameters during such period. Ten New Zealand White x California young rabbits were trained to semen collection since 20 weeks of age and routinely done once a week with two ejaculations per session. At 22 and 37 weeks of age, semen collection was carried out three times a week and seminal parameters were evaluated. Four males were randomly assigned and slaughtered in each age (n = 8); sex organs (prostate, bulbourethral glands and epididymis) were dissected and collected to determine beta-NGF and TrkA gene expression and immunolocalization. SP and BP were also taken at each semen collection session to evaluate beta-NGF concentration, and testosterone levels were also assessed in BP. The highest beta-NGF mRNA expression was observed in prostate compared to bulbourethral glands and epididymis. These two last tissues showed residual beta-NGF mRNA expression and limited localization of the neurotrophin. The prostate epithelial cells and lumen were strongly stained with regard to the other sex organs indicating that immunolocalization of beta-NGF rely mainly in the prostate. TrkA gene expression was lower but constant and differentially immunolocalized in the sex organ tissues. Finally, beta-NGF concentration in SP and BP remained unchanged in accordance to age, while some seminal characteristics such as sperm concentration, percentage of live sperm and mass and progressive motility were enhanced as endowed by BP testosterone variation. beta-NGF and its cognate TrkA receptor are expressed and immunolocalized in the male reproductive tract in the two ages studied, independently of the circulating levels of testosterone and beta-NGF. (C) 2018 Elsevier Inc. All rights reserved.
机译:β-神经生长因子(Beta-NGF)是一种神经营养蛋白,其通过其受体Trka和P75作用,在雄性生殖生理学中表现重要的作用,其在精液(SP)中的存在与男性生育有关。本研究的目的是评估生成期间兔子中β-NGF及其高亲和力受体Trka的基因表达谱和其高亲和力受体Trka的免疫悬垂性。 SP和血液血浆(BP)和BP睾酮水平的β-NGF浓度和BP睾酮水平均在此期间和精髓参数确定。十次新西兰白X加州幼兔患者培训到精液收集,自20周以来,每周两周期经常完成一次,每次会议两次射精。在22和37周龄时,精液收集每周进行三次,并评估精液参数。四个男性在每个年龄(n = 8)中随机分配并屠宰;解剖和收集性器官(前列腺,泡属,鳞状腺腺体和附睾)以确定β-NGF和TRKA基因表达和免疫循环化。在每个精液收集会议上也拍摄SP和BP以评估β-NGF浓度,并且还在BP中评估睾酮水平。与鳞状腺腺和附睾相比,在前列腺中观察到最高β-NGF mRNA表达。这两个上述两个组织显示残留的β-NGF mRNA表达和神经营养蛋白的有限定位。关于其他性器官强烈染色前列腺上皮细胞和腔,表明β-NGF的免疫循环化主要依赖于前列腺。 TRKA基因表达较低但恒定,在性器组织中差异和差异免疫悬垂。最后,根据年龄,SP和BP中的β-NGF浓度保持不变,而通过BP睾酮变化的赋予了一些精子浓度,活性精子的百分比和质量和渐进式动力的百分比。 β-NGF及其同源Trka受体在学习的两年龄段的雄性生殖道中表达和免疫循环化,独立于睾酮和β-NGF的循环水平。 (c)2018年Elsevier Inc.保留所有权利。

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