Urinary excretion of LH and testosterone from male rats during exposure to increased gravity: post-spaceflight and centrifugation.

R. Ortiz, C. Wade, E. Morey-Holton
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引用次数: 10

Abstract

A dissociation between plasma luteinizing hormone (LH) and testosterone (T) appears to exist during exposure to altered gravity. The pulsatile nature of LH release and the diurnal variability of T secretion may mask or bias the effects of altered gravity on the pituitary-gonadal axis when analyzing plasma concentrations. Therefore, we examined the relationship between the excretion of urinary LH and T in male Sprague-Dawley rats during exposure to increased gravity upon return to Earth following a 14-day spaceflight (n = 6) and by 12 days of centrifugation at 2g (n = 8). Excreted LH and T were elevated on the first 3 days postflight. Excreted T was elevated between Days 1 and 8 of centrifugation; however, excreted LH was reduced on Days 2 and 3 compared with control animals. Excreted LH and T were significantly correlated (R = 0.731 and 0.706, respectively) in postspaceflight and centrifuged animals. Correlation curves had similar slopes (0.0213 and 0.023, respectively), but different y-intercepts (-1.43 and 3.32, respectively). The sustained increase in excreted T during centrifugation suggests that the pituitary-gonadal axis in postspaceflight animals may adapt quicker to increased gravity. The upward shift in the correlation curve exhibited by the centrifuged animals suggests that the sensitivity of LH-induced T release is increased in these animals. The previous dissociation between plasma LH and T during altered gravity was not observed in the present study in which excreted LH and T were measured.
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暴露于重力增加时雄性大鼠尿中黄体生成素和睾酮的排泄:后太空飞行和离心。
血浆黄体生成素(LH)和睾酮(T)之间的分离似乎存在于暴露于重力改变期间。在分析血浆浓度时,LH释放的脉动性和T分泌的日变异性可能掩盖或偏倚重力改变对垂体-性腺轴的影响。因此,我们研究了雄性Sprague-Dawley大鼠在14天的太空飞行(n = 6)和12天的2g离心(n = 8)后返回地球时暴露于重力增加的情况下尿LH和T的排泄之间的关系。在飞行后的前3天,排泄的LH和T升高。离心后第1 ~ 8天,T分泌量升高;然而,与对照动物相比,第2天和第3天的LH排泄量减少。在航天飞行后和离心后的动物排泄物中,LH和T呈显著相关(R分别为0.731和0.706)。相关曲线斜率相似(分别为0.0213和0.023),但y轴截距不同(分别为-1.43和3.32)。离心过程中排泄T的持续增加表明,航天后动物的垂体-性腺轴可能更快地适应重力的增加。离心动物的相关曲线向上移动表明,这些动物对lh诱导的T释放的敏感性增加。先前在重力改变期间血浆LH和T之间的分离在本研究中没有观察到,在本研究中测量了排泄的LH和T。
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