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损失的分子神经生物学:外侧杏仁核细胞外基质的作用。

Molecular neurobiology of loss: a role for basolateral amygdala extracellular matrix.

机构信息

Department of Pharmacology and Systems Physiology, University of Cincinnati, Cincinnati, OH, USA.

Neuroscience Graduate Program, University of Cincinnati, Cincinnati, OH, USA.

出版信息

Mol Psychiatry. 2023 Nov;28(11):4729-4741. doi: 10.1038/s41380-023-02231-8. Epub 2023 Aug 29.

Abstract

Psychological loss is a common experience that erodes well-being and negatively impacts quality of life. The molecular underpinnings of loss are poorly understood. Here, we investigate the mechanisms of loss using an environmental enrichment removal (ER) paradigm in male rats. The basolateral amygdala (BLA) was identified as a region of interest, demonstrating differential Fos responsivity to ER and having an established role in stress processing and adaptation. A comprehensive multi-omics investigation of the BLA, spanning multiple cohorts, platforms, and analyses, revealed alterations in microglia and the extracellular matrix (ECM). Follow-up studies indicated that ER decreased microglia size, complexity, and phagocytosis, suggesting reduced immune surveillance. Loss also substantially increased ECM coverage, specifically targeting perineuronal nets surrounding parvalbumin interneurons, suggesting decreased plasticity and increased inhibition within the BLA following loss. Behavioral analyses suggest that these molecular effects are linked to impaired BLA salience evaluation, leading to a mismatch between stimulus and reaction intensity. These loss-like behaviors could be rescued by depleting BLA ECM during the removal period, helping us understand the mechanisms underlying loss and revealing novel molecular targets to ameliorate its impact.

摘要

心理损失是一种常见的经历,它会侵蚀幸福感并对生活质量产生负面影响。损失的分子基础还了解甚少。在这里,我们使用雄性大鼠的环境富集去除(ER)范式来研究损失的机制。基底外侧杏仁核(BLA)被确定为一个感兴趣的区域,其对 ER 的 Fos 反应性存在差异,并且在应激处理和适应中具有既定的作用。对 BLA 的全面多组学研究,跨越多个队列、平台和分析,揭示了小胶质细胞和细胞外基质(ECM)的改变。后续研究表明,ER 降低了小胶质细胞的大小、复杂性和吞噬作用,表明免疫监视减少。损失还大大增加了 ECM 的覆盖范围,特别是针对围绕 Parvalbumin 中间神经元的周围神经网,这表明 BLA 中的可塑性降低,抑制作用增加。行为分析表明,这些分子效应与 BLA 显着性评估受损有关,导致刺激与反应强度之间不匹配。在去除期间耗尽 BLA ECM 可以挽救这些类似损失的行为,这有助于我们理解损失的机制,并揭示改善其影响的新的分子靶点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2647/10914625/d480f5f8177a/41380_2023_2231_Fig1_HTML.jpg

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