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糖皮质激素对大脑的影响:从适应性发育可塑性到适应负荷过重。

Glucocorticoid effects on the brain: from adaptive developmental plasticity to allostatic overload.

机构信息

Living Systems Institute & Department of Clinical and Biomedical Sciences, University of Exeter, Stocker Road, Exeter EX4 4QD, UK.

出版信息

J Exp Biol. 2024 Mar 7;227(Suppl_1). doi: 10.1242/jeb.246128.

Abstract

Exposure to stress during early life may alter the developmental trajectory of an animal by a mechanism known as adaptive plasticity. For example, to enhance reproductive success in an adverse environment, it is known that animals accelerate their growth during development. However, these short-term fitness benefits are often associated with reduced longevity, a phenomenon known as the growth rate-lifespan trade-off. In humans, early life stress exposure compromises health later in life and increases disease susceptibility. Glucocorticoids (GCs) are major stress hormones implicated in these processes. This Review discusses the evidence for GC-mediated adaptive plasticity in development, leading to allostatic overload in later life. We focus on GC-induced effects on brain structure and function, including neurogenesis; highlight the need for longitudinal studies; and discuss approaches to identify molecular mechanisms mediating GC-induced alteration of the brain developmental trajectory leading to adult dysfunctions. Further understanding of how stress and GC exposure can alter developmental trajectories at the molecular and cellular level is of critical importance to reduce the burden of mental and physical ill health across the life course.

摘要

早期生活中的压力暴露可能通过一种称为适应性可塑性的机制改变动物的发育轨迹。例如,为了在不利环境中提高繁殖成功率,人们知道动物在发育过程中会加速生长。然而,这些短期的适应度收益往往与寿命缩短有关,这种现象被称为生长速度-寿命权衡。在人类中,早期生活中的压力暴露会损害晚年的健康并增加患病易感性。糖皮质激素(GCs)是涉及这些过程的主要应激激素。这篇综述讨论了 GC 介导的发育过程中的适应性可塑性的证据,导致晚年的适应不良。我们重点关注 GC 对大脑结构和功能的影响,包括神经发生;强调需要进行纵向研究;并讨论确定介导 GC 诱导的大脑发育轨迹改变导致成年功能障碍的分子机制的方法。进一步了解压力和 GC 暴露如何在分子和细胞水平上改变发育轨迹,对于减轻整个生命周期中精神和身体健康不良的负担至关重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/18ac/10949071/3e2525ad2c91/jexbio-227-246128-g1.jpg

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