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母体甲状腺激素(TH)水平对下丘脑 - 垂体 - 甲状腺设定点的影响:在甲状腺激素受体β基因敲除小鼠中的研究

Effects of maternal levels of thyroid hormone (TH) on the hypothalamus-pituitary-thyroid set point: studies in TH receptor beta knockout mice.

作者信息

Alonso Manuela, Goodwin Charles, Liao XiaoHui, Page David, Refetoff Samuel, Weiss Roy E

机构信息

Department of Medicine, The University of Chicago, Chicago, IL 60637, USA.

出版信息

Endocrinology. 2007 Nov;148(11):5305-12. doi: 10.1210/en.2007-0677. Epub 2007 Aug 9.

Abstract

A level of thyroid hormone (TH) in agreement with the tissue requirements is essential for vertebrate embryogenesis and fetal maturation. In this study we evaluate the immediate and long-term effects of incongruent intrauterine TH levels between mother and fetus using the TH receptor (TR) beta(-/-) knockout mouse as a model. We took advantage of the fact that the TRbeta(-/-) females have elevated serum TH but are not thyrotoxic due to resistance to TH. We used crosses between heterozygotes with wild-type phenotype (TRbeta(+/-)) males and TRbeta(-/-) females, with a hyperiodothyroninemic (high T(4) and T(3) levels) intrauterine environment (TH congruent with the TRbeta(-/-) fetus and excessive for the TRbeta(+/-) fetus), and reciprocal crosses between TRbeta(-/-) males and TRbeta(+/-) females, providing a euiodothyroninemic intrauterine environment. We found that TRbeta(-/-) dams had reduced litter sizes and pups with lower birth weight but preserved the mendelian TRbeta(-/-) to TRbeta(+/-) ratio at birth, indicating that the incongruous TH levels did not decrease intrauterine survival of a specific genotype. The results of studies in newborns demonstrate that TRbeta(+/-) pups born to TRbeta(-/-) dams have persistent suppression of serum TSH without a peak. On the other hand, TRbeta(-/-) pups born to TRbeta(+/-) dams have lower serum TSH at birth and a tendency to peak higher, compared with TRbeta(-/-) pups born to TRbeta(-/-) dams. The studies in the adult progeny demonstrate that TRbeta(+/-) mice born to TRbeta(-/-) dams and, thus, exposed to higher intrauterine TH levels, have greater resistance to TH at the level of the pituitary when stimulated with TRH. On the other hand, TRbeta(-/-) mice born to TRbeta(+/-) dams and, thus, deprived of TH in uterine life, were more sensitive to TH when similarly stimulated with TRH. Thus, TH exposure in utero has an effect on the regulatory set point of the hypothalamus-pituitary-thyroid axis, which can be seen early in life and persists into adulthood.

摘要

甲状腺激素(TH)水平与组织需求相匹配对于脊椎动物胚胎发育和胎儿成熟至关重要。在本研究中,我们以甲状腺激素受体(TR)β(-/-)基因敲除小鼠为模型,评估母胎间子宫内TH水平不一致的即时和长期影响。我们利用了TRβ(-/-)雌性小鼠血清TH升高但因对TH有抗性而无甲状腺毒症这一事实。我们将具有野生型表型的杂合子(TRβ(+/-))雄性小鼠与TRβ(-/-)雌性小鼠杂交,营造出甲状腺素血症(高T4和T3水平)的子宫内环境(TH与TRβ(-/-)胎儿相符但对TRβ(+/-)胎儿过量),并将TRβ(-/-)雄性小鼠与TRβ(+/-)雌性小鼠进行反向杂交,营造出甲状腺素正常的子宫内环境。我们发现,TRβ(-/-)母鼠产仔数减少且幼崽出生体重较低,但出生时TRβ(-/-)与TRβ(+/-)的孟德尔比率保持不变,这表明不一致的TH水平并未降低特定基因型的子宫内存活率。对新生小鼠的研究结果表明,TRβ(-/-)母鼠所生的TRβ(+/-)幼崽血清TSH持续受到抑制且无峰值。另一方面,与TRβ(-/-)母鼠所生的TRβ(-/-)幼崽相比,TRβ(+/-)母鼠所生的TRβ(-/-)幼崽出生时血清TSH较低且有峰值更高的趋势。对成年后代的研究表明,TRβ(-/-)母鼠所生的TRβ(+/-)小鼠,因此暴露于较高的子宫内TH水平,在用TRH刺激时在垂体水平对TH具有更大的抗性。另一方面,TRβ(+/-)母鼠所生的TRβ(-/-)小鼠,因此在子宫内生活中缺乏TH,在用TRH进行类似刺激时对TH更敏感。因此,子宫内的TH暴露会影响下丘脑-垂体-甲状腺轴的调节设定点,这在生命早期即可观察到并持续到成年期。

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