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甲状腺激素与学习相关的神经可塑性。

Thyroid hormones and learning-associated neuroplasticity.

作者信息

Raymaekers Sander R, Darras Veerle M

机构信息

Laboratory of Comparative Endocrinology, Biology Department, KU Leuven, Naamsestraat 61, 3000 Leuven, Belgium.

Laboratory of Comparative Endocrinology, Biology Department, KU Leuven, Naamsestraat 61, 3000 Leuven, Belgium.

出版信息

Gen Comp Endocrinol. 2017 Jun 1;247:26-33. doi: 10.1016/j.ygcen.2017.04.001. Epub 2017 Apr 5.

Abstract

Thyroid hormones (THs) are crucial for brain development and maturation in all vertebrates. Especially during pre- and perinatal development, disruption of TH signaling leads to a multitude of neurological deficits. Many animal models provided insight in the role of THs in brain development, but specific data on how they affect the brain's ability to learn and adapt depending on environmental stimuli are rather limited. In this review, we focus on a number of learning processes like spatial learning, fear conditioning, vocal learning and imprinting behavior and on how abnormal TH signaling during development shapes subsequent performance. It is clear from multiple studies that TH deprivation leads to defects in learning on all fronts, and interestingly, changes in local expression of the TH activator deiodinase type 2 seem to have an important role. Taking into account that THs are regulated in a very space-specific manner, there is thus increasing pressure to investigate more local TH regulators as potential factors involved in neuroplasticity. As these learning processes are also important for proper adult human functioning, further elucidating the role of THs in developmental neuroplasticity in various animal models is an important field for advancing both fundamental and applied knowledge on human brain function.

摘要

甲状腺激素(THs)对所有脊椎动物的大脑发育和成熟至关重要。特别是在产前和围产期发育期间,TH信号的破坏会导致多种神经功能缺陷。许多动物模型为THs在大脑发育中的作用提供了见解,但关于它们如何根据环境刺激影响大脑学习和适应能力的具体数据相当有限。在这篇综述中,我们关注一些学习过程,如空间学习、恐惧条件反射、发声学习和印记行为,以及发育过程中异常的TH信号如何塑造随后的表现。多项研究清楚地表明,TH缺乏会导致各方面学习缺陷,有趣的是,TH激活剂2型脱碘酶的局部表达变化似乎起着重要作用。考虑到THs是以非常空间特异性的方式调节的,因此越来越迫切需要研究更多局部TH调节因子作为参与神经可塑性的潜在因素。由于这些学习过程对成年人的正常功能也很重要,进一步阐明THs在各种动物模型发育神经可塑性中的作用是推进关于人类大脑功能的基础和应用知识的一个重要领域。

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