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产前激素塑造神经内分泌生殖系统的性别差异:对豚鼠和非人灵长类动物的观察

Prenatal hormones organize sex differences of the neuroendocrine reproductive system: observations on guinea pigs and nonhuman primates.

作者信息

Resko J A, Roselli C E

机构信息

Department of Physiology and Pharmacology, Oregon Health Sciences University, Portland 97202-3098, USA.

出版信息

Cell Mol Neurobiol. 1997 Dec;17(6):627-48. doi: 10.1023/a:1022534019718.

DOI:10.1023/a:1022534019718
PMID:9442350
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC11560241/
Abstract
  1. The central nervous systems (CNS) of males and females differ in the control mechanisms for the release of gonadotropins from the anterior pituitary gland as well as the capacity to display sex specific behaviors. 2. In guinea pigs and monkeys, these differences are organized through the actions of prenatal androgens secreted by the fetal testes. In both males and females androgen receptors have been identified within the brain during the period in development in which organization of the CNS occurs. Sex differences between the ratio of cytosolic and nuclear androgen receptors are due to the amount of endogenous androgen present in the circulation of the developing fetus. Thus, at least part of the biochemical machinery necessary for androgen action resides in the CNS during the period of sexual differentiation. 3. In addition to the physiological differences that have been observed, morphological differences that are androgen dependent have been found in the medial preoptic nucleus and the bed nucleus of the stria terminalis of the guinea pig. The location of these sex differences in brain morphology coincides roughly with the location of steroid binding neurons. 4. In some species the in situ conversion of testosterone to dihydrotestosterone (DHT) by the 5 alpha-reductases or to estradiol-17 beta by cytochrome P450 aromatase mediates testosterone's action. The gonadotropin surge mechanism of adult guinea pigs exposed to a 5a-reductase inhibitor in utero during the critical period for sexual differentiation was unaffected in either males or females even though the development of the external organs of reproduction of males was feminized by the treatment. Likewise, the gonadotropin surge mechanism of subjects exposed to an aromatase inhibitor in utero during the critical period for sexual differentiation was unaffected by this treatment. 5. The mechanism controlling negative feedback, however, was affected in both males and females. Subjects that were exposed to an aromatase inhibitor while developing in utero could not respond to the negative feedback actions of estrogen on gonadotropin release in adulthood. 6. The surge mechanism for the control of gonadotropin secretion in nonhuman primates is not sexually differentiated as it is in rodents. Castrated male monkeys release surge amounts of LH in response to an estrogen challenge. Both infant and adult dimorphic behaviors of rhesus monkeys are organized by the prenatal actions of androgen.
摘要
  1. 雄性和雌性的中枢神经系统(CNS)在促性腺激素从垂体前叶释放的控制机制以及表现出性别特异性行为的能力方面存在差异。2. 在豚鼠和猴子中,这些差异是通过胎儿睾丸分泌的产前雄激素的作用来组织的。在中枢神经系统发生组织化的发育时期,在雄性和雌性的大脑中都已鉴定出雄激素受体。胞质和核雄激素受体比例的性别差异是由于发育中胎儿循环中存在的内源性雄激素的量所致。因此,在性别分化时期,雄激素作用所需的至少部分生化机制存在于中枢神经系统中。3. 除了已观察到的生理差异外,在豚鼠的内侧视前核和终纹床核中还发现了雄激素依赖性的形态学差异。这些大脑形态学上的性别差异位置大致与类固醇结合神经元的位置一致。4. 在某些物种中,睾酮通过5α-还原酶原位转化为二氢睾酮(DHT)或通过细胞色素P450芳香化酶转化为雌二醇-17β介导睾酮的作用。在性分化关键期子宫内暴露于5α-还原酶抑制剂的成年豚鼠,其促性腺激素激增机制在雄性和雌性中均未受影响,尽管雄性生殖器官的发育因该处理而女性化。同样,在性分化关键期子宫内暴露于芳香化酶抑制剂的受试者,其促性腺激素激增机制也未受该处理影响。5. 然而,控制负反馈的机制在雄性和雌性中均受到影响。在子宫内发育时暴露于芳香化酶抑制剂的受试者在成年后无法对雌激素对促性腺激素释放的负反馈作用作出反应。6. 非人灵长类动物中控制促性腺激素分泌的激增机制不像在啮齿动物中那样具有性别分化。去势的雄性猴子在受到雌激素刺激时会释放激增量的促黄体生成素(LH)。恒河猴的婴儿期和成年期双态行为均由雄激素的产前作用所组织。

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Organizing action of prenatally administered testosterone propionate on the tissues mediating mating behavior in the female guinea pig.产前给予丙酸睾酮对雌性豚鼠中介导交配行为的组织的组织作用。
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