Excitatory and inhibitory neurochemical markers of anxiety in young females

IF 4.6 2区 医学 Q1 NEUROSCIENCES
Nicola Johnstone, Kathrin Cohen Kadosh
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引用次数: 0

Abstract

Between the ages of 10–25 years the maturing brain is sensitive to a multitude of changes, including neurochemical variations in metabolites. Of the different metabolites, gamma-aminobutyric acid (GABA) has long been linked neurobiologically to anxiety symptomology, which begins to manifest in adolescence. To prevent persistent anxiety difficulties into adulthood, we need to understand the maturational trajectories of neurochemicals and how these relate to anxiety levels during this sensitive period. We used magnetic resonance spectroscopy in a sample of younger (aged 10–11) and older (aged 18–25) females to estimate GABA and glutamate levels in brain regions linked to emotion regulation processing, as well as a conceptually distinct control region. Within the Bayesian framework, we found that GABA increased and glutamate decreased with age, negative associations between anxiety and glutamate and GABA ratios in the dorsolateral prefrontal cortex, and a positive relationship of GABA with anxiety levels. The results support the neural over-inhibition hypothesis of anxiety based on GABAergic activity.

年轻女性焦虑的兴奋性和抑制性神经化学标志物
在 10-25 岁之间,逐渐发育成熟的大脑对各种变化非常敏感,其中包括代谢物的神经化学变化。在各种代谢物中,γ-氨基丁酸(GABA)与焦虑症状的神经生物学联系由来已久,而焦虑症状在青春期就已开始显现。为了防止成年后出现持续的焦虑困难,我们需要了解神经化学物质的成熟轨迹,以及这些化学物质在这一敏感时期与焦虑水平之间的关系。我们利用磁共振波谱分析法对年龄较小(10-11 岁)和年龄较大(18-25 岁)的女性样本进行了研究,以估算与情绪调节处理有关的大脑区域以及概念上不同的控制区域的 GABA 和谷氨酸水平。在贝叶斯框架内,我们发现 GABA 随年龄增长而增加,谷氨酸随年龄增长而减少;焦虑与背外侧前额叶皮层中谷氨酸和 GABA 的比率呈负相关;GABA 与焦虑水平呈正相关。研究结果支持基于 GABA 能活动的焦虑神经过度抑制假说。
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来源期刊
CiteScore
7.60
自引率
10.60%
发文量
124
审稿时长
6-12 weeks
期刊介绍: The journal publishes theoretical and research papers on cognitive brain development, from infancy through childhood and adolescence and into adulthood. It covers neurocognitive development and neurocognitive processing in both typical and atypical development, including social and affective aspects. Appropriate methodologies for the journal include, but are not limited to, functional neuroimaging (fMRI and MEG), electrophysiology (EEG and ERP), NIRS and transcranial magnetic stimulation, as well as other basic neuroscience approaches using cellular and animal models that directly address cognitive brain development, patient studies, case studies, post-mortem studies and pharmacological studies.
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