Stress-induced dysfunction of neurovascular astrocytes in the prefrontal cortex contributes to sex-dependent deficits in cognition and behavior

IF 9.6 1区 医学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY
Justin L. Bollinger, Shobha Johnsamuel, Lauren L. Vollmer, Alexander M. Kuhn, Eric S. Wohleb
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Abstract

Astrocytes form an integral component of the neurovascular unit, ensheathing brain blood vessels with endfeet high in aquaporin-4 (AQP4) expression. These AQP4-rich endfeet facilitate interaction between the vascular endothelium, astrocytes, and neurons, and help stabilize vascular morphology. Studies using preclinical models of psychological stress and post-mortem tissue from patients with major depressive disorder (MDD) have reported reductions in AQP4, loss of astrocytic structures, and vascular impairment in the prefrontal cortex (PFC). Though compelling, the role of AQP4 in mediating stress-induced alterations in neurovascular function and behavior remains unclear. Here, we address this, alongside potential sex differences in chronic unpredictable stress (CUS) effects on astrocyte phenotype, blood-brain barrier integrity, and behavior. CUS led to more pronounced shifts in stress-coping behavior and working memory deficits in male- as compared to female mice. Following behavioral testing, astrocytes from the frontal cortex were isolated for gene expression analyses. We found that CUS increased transcripts associated with blood vessel maintenance in males, but either had no effect on- or decreased- these transcripts in females. Furthermore, CUS caused a reduction in vascular-localized AQP4 and elevated extravasation of a small fluorescent reporter (Dextran) in the PFC in males but not females. Studies showed that knockdown of AQP4 in the PFC is sufficient to disrupt astrocyte phenotype and increase behavioral susceptibility to a sub-chronic stressor in males yet has little effect on stress susceptibility in females. Our findings provide evidence that sex-specific alterations in astrocyte phenotype and neurovascular integrity in the PFC contribute to cognitive-behavioral consequences following stress.

Abstract Image

应激诱导的前额皮质神经血管星形胶质细胞功能障碍有助于认知和行为的性别依赖性缺陷
星形胶质细胞是神经血管单元不可分割的组成部分,包裹着水通道蛋白-4 (AQP4)表达高的终足脑血管。这些富含aqp4的终足促进了血管内皮、星形胶质细胞和神经元之间的相互作用,并有助于稳定血管形态。使用临床前心理应激模型和重度抑郁症(MDD)患者死后组织的研究报告了AQP4的减少,星形细胞结构的丧失和前额叶皮层(PFC)的血管损伤。虽然令人信服,但AQP4在介导应激诱导的神经血管功能和行为改变中的作用尚不清楚。在这里,我们讨论了这一点,以及慢性不可预测应激(CUS)对星形胶质细胞表型、血脑屏障完整性和行为的潜在性别差异。与雌性小鼠相比,CUS导致雄性小鼠在压力应对行为和工作记忆缺陷方面发生了更明显的变化。行为测试后,从额叶皮层分离星形胶质细胞进行基因表达分析。我们发现,在男性中,CUS增加了与血管维持相关的转录本,但在女性中,这些转录本要么没有影响,要么减少了。此外,在男性中,CUS导致血管定位的AQP4减少,PFC中一个小荧光报告因子(葡聚糖)外渗升高,而在女性中没有。研究表明,在PFC中敲低AQP4足以破坏星形细胞表型,增加男性对亚慢性应激源的行为易感性,但对女性的应激易感性影响很小。我们的研究结果提供了证据,表明PFC中星形胶质细胞表型和神经血管完整性的性别特异性改变有助于应激后的认知行为后果。
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来源期刊
Molecular Psychiatry
Molecular Psychiatry 医学-精神病学
CiteScore
20.50
自引率
4.50%
发文量
459
审稿时长
4-8 weeks
期刊介绍: Molecular Psychiatry focuses on publishing research that aims to uncover the biological mechanisms behind psychiatric disorders and their treatment. The journal emphasizes studies that bridge pre-clinical and clinical research, covering cellular, molecular, integrative, clinical, imaging, and psychopharmacology levels.
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