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首页> 外文期刊>American Journal of Physiology >Thymulin gene therapy prevents the reduction in circulating gonadotropins induced by thymulin deficiency in mice.
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Thymulin gene therapy prevents the reduction in circulating gonadotropins induced by thymulin deficiency in mice.

机译:胸腺素基因疗法可防止小鼠胸腺素缺乏引起的循环性促性腺激素减少。

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摘要

Integrity of the thymus during perinatal life is necessary for a proper maturation of the pituitary-gonadal axis in mice and other mammalian species. Thus congenitally athymic (nude) female mice show significantly reduced levels of circulating gonadotropins, a fact that seems to be causally related to a number of reproductive derangements described in these mutants. Interestingly, a number of in vitro studies suggest that the thymic peptide thymulin may be involved in thymus-pituitary communication. To determine the consequences of low serum thymulin in otherwise normal animals, we induced short (8 days)- and long (33 days)-term thymulin deficiency in C57BL/6 mice by neonatally injecting (intraperitoneally) an anti-thymulin serum and assessed their circulating gonadotropin levels at puberty and thereafter. Control mice received an irrelevant antiserum. Gonadotropins were measured by radioimmunoassay and thymulin by bioassay. Both long- and short-term serum thymulin immunoneutralization resulted in a significant reduction in the serum levels of gonadotropins at 33 and 45 days of age. Subsequently, we injected (intramuscularly) an adenoviral vector harboring a synthetic DNA sequence (5'-ATGCAAGCCAAATCTCAAGGTGGATCCAACTAGTAG-3') encoding a biologically active analog of thymulin, methionine-FTS, in newborn nude mice (which are thymulin deficient) and measured circulating gonadotropin levels when the animals reached 52 days of age. It was observed that neonatal thymulin gene therapy in the athymic mice restored their serum thymulin levels and prevented the reduction in circulating gonadotropin levels that typically emerges in these mutants after puberty. Our results indicate that thymulin plays a relevant physiological role in the thymus-pituitary-gonadal axis.
机译:围产期的胸腺完整性对于小鼠和其他哺乳动物的垂体-性腺轴的正确成熟是必要的。因此,先天性无胸腺(裸)雌性小鼠的循环性促性腺激素水平显着降低,这一事实似乎与这些突变体中描述的许多生殖紊乱有关。有趣的是,许多体外研究表明,胸腺肽胸腺肽可能参与胸腺-垂体的交流。为了确定低血清胸腺素对正常动物的后果,我们通过新生儿(腹膜内)注射抗胸腺素血清在C57BL / 6小鼠中诱导了短期(8天)和长期(33天)的胸腺素缺乏症,并对其进行了评估。青春期及其后的循环性促性腺激素水平。对照小鼠接受无关的抗血清。放射免疫法测定促性腺激素,生物测定法测定胸腺肽。长期和短期血清胸腺素免疫中和都导致33天和45天龄血清促性腺激素水平显着降低。随后,我们(肌肉注射)了一种腺病毒载体,该载体携带一个合成的DNA序列(5'-ATGCAAGCCAAATCTCAAGGTGGATCCAACTAGTAG-3'),该载体编码一种胸腺素的生物活性类似物蛋氨酸-FTS,在新生裸鼠(胸腺素缺陷型)中进行了测定,并测定了循环促性腺激素动物达到52天大时的水平。观察到,在无胸腺小鼠中进行的新生儿胸腺肽基因治疗可恢复其血清胸腺肽水平,并防止青春期后这些突变体中通常出现的循环促性腺激素水平降低。我们的结果表明,胸腺素在胸腺-垂体-性腺轴中起着相关的生理作用。

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