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D2多巴胺受体缺陷小鼠垂体肿瘤发生对卵巢的依赖性。

Ovarian dependence for pituitary tumorigenesis in D2 dopamine receptor-deficient mice.

作者信息

Hentges Shane T, Low Malcolm J

机构信息

Vollum Institute, Oregon Health and Science University, Portland, Oregon 97201, USA.

出版信息

Endocrinology. 2002 Dec;143(12):4536-43. doi: 10.1210/en.2002-220421.

DOI:10.1210/en.2002-220421
PMID:12446580
Abstract

Hypophyseotropic dopamine exerts a tonic inhibitory tone on pituitary lactotrophs by the activation of dopamine D2 receptors (D2R). Ablation of D2R through gene knock-out approaches results in hyperprolactinemia and prolactinomas. This phenotype is more severe and develops more rapidly in female mice. We tested whether the female hypersensitivity is due solely to the loss of D2R inhibitory tone or concomitant stimulation by ovarian factors. C57BL/6J congenic D2R(-/-) mice were ovariectomized at 2 months of age and serum PRL levels were measured serially. Ovariectomy attenuated hyperprolactinemia and after 18 months, D2R(-/-) mice had average pituitary weights of 4 mg, compared with 60 mg in the intact group. 17beta-Estradiol did not restore PRL secretion or pituitary weight. Although the pharmacologic dose of estradiol slightly increased pituitary weight in wild-type and D2R(-/-) mice, it inhibited serum PRL in both intact and ovariectomized females and in castrated males. For comparison, we tested the estradiol response of wild-type 129S6/SvEv mice in the same paradigm and found the expected increase in pituitary weight and serum PRL. Our results demonstrate that the development of hyperprolactinemia and prolactinomas in mice lacking D2R is dependent on ovarian stimulation and likely involves a factor(s) in addition to estrogen. Furthermore, we showed that estradiol-induced proliferation and PRL secretion can be differentially regulated in a strain-specific manner. These findings illustrate the importance of genetic background when analyzing endocrine regulation in mutant mouse models.

摘要

促垂体多巴胺通过激活多巴胺 D2 受体(D2R)对垂体催乳素细胞发挥持续性抑制作用。通过基因敲除方法去除 D2R 会导致高催乳素血症和催乳素瘤。这种表型在雌性小鼠中更为严重且发展更快。我们测试了雌性小鼠的高敏感性是否仅归因于 D2R 抑制作用的丧失或卵巢因子的伴随刺激。2 月龄的 C57BL/6J 同基因 D2R(-/-)小鼠在 2 个月大时进行卵巢切除术,并连续测量血清 PRL 水平。卵巢切除术减轻了高催乳素血症,18 个月后,D2R(-/-)小鼠的垂体平均重量为 4 毫克,而完整组为 60 毫克。17β-雌二醇并未恢复 PRL 分泌或垂体重量。尽管药理剂量的雌二醇在野生型和 D2R(-/-)小鼠中略微增加了垂体重量,但它在完整和卵巢切除的雌性以及去势雄性中均抑制血清 PRL。为了进行比较,我们在相同范式中测试了野生型 129S6/SvEv 小鼠的雌二醇反应,发现垂体重量和血清 PRL 出现预期的增加。我们的结果表明,缺乏 D2R 的小鼠中高催乳素血症和催乳素瘤的发展依赖于卵巢刺激,并且可能涉及除雌激素之外的一种或多种因素。此外,我们表明雌二醇诱导的增殖和 PRL 分泌可以以品系特异性方式受到不同调节。这些发现说明了在分析突变小鼠模型中的内分泌调节时遗传背景的重要性。

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Front Endocrinol (Lausanne). 2024 Feb 2;15:1338345. doi: 10.3389/fendo.2024.1338345. eCollection 2024.
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60 YEARS OF NEUROENDOCRINOLOGY: The hypothalamo-prolactin axis.
神经内分泌学60年:下丘脑-催乳素轴
J Endocrinol. 2015 Aug;226(2):T101-22. doi: 10.1530/JOE-15-0213. Epub 2015 Jun 22.
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Enhanced LH action in transgenic female mice expressing hCGbeta-subunit induces pituitary prolactinomas; the role of high progesterone levels.转 hCGβ亚基基因雌性小鼠增强 LH 作用可诱导垂体催乳素瘤;孕激素水平高的作用。
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