急性切片中小胶质细胞驱动海马突触传递改变的时间依赖性表型变化。

IF 4.2 3区 医学 Q2 NEUROSCIENCES Frontiers in Cellular Neuroscience Pub Date : 2024-11-15 eCollection Date: 2024-01-01 DOI:10.3389/fncel.2024.1456974
Laura Ferrucci, Bernadette Basilico, Ingrid Reverte, Francesca Pagani, Giorgia Scaringi, Federica Cordella, Barbara Cortese, Gaia De Propris, Andrea Galeone, Letizia Mazzarella, Alessandro Mormino, Stefano Garofalo, Azka Khan, Valeria De Turris, Valentina Ferretti, Paola Bezzi, Cornelius Gross, Daniele Caprioli, Cristina Limatola, Silvia Di Angelantonio, Davide Ragozzino
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引用次数: 0

摘要

小胶质细胞积极调节脑内突触功能已被广泛认识。值得注意的是,我们对小胶质细胞在突触调节中的作用的理解大多来自急性脑切片的研究。然而,急性切片的制备和维持在多大程度上影响小胶质细胞的功能,以及小胶质细胞的改变是否会影响突触传递,目前尚不清楚。在这项研究中,我们通过在两个不同的时间间隔评估形态学和功能参数,研究了急性切片休息时间对海马CA1小胶质细胞的影响。我们报道,在切片4小时后,小胶质细胞发生形态、功能和转录变化,包括分支数量减少和运动速度减慢。此外,小胶质细胞获得反应性表型,其特征是向外校正K+电流的振幅增加,促炎细胞因子Tnfα的表达增加,小胶质细胞受体Cx3cr1和P2y12r的表达改变。我们还研究了急性海马切片CA1锥体神经元兴奋性突触传递的时间依赖性变化,报告了突触后电流(sEPSCs)的振幅和频率的时间依赖性降低,以及脊柱密度的降低。值得注意的是,在PLX5622小胶质细胞缺失小鼠制备的切片中没有sEPSCs振幅下降,这表明这种对突触传递的时间依赖性作用是小胶质细胞依赖性的。我们的研究结果强调了在切片制备后数小时内小胶质细胞表型变化与伴随的突触变化之间可能存在的因果关系,指出了急性突触调节的机制,这对于揭示小胶质细胞与神经元在自然界中的相互作用至关重要。此外,他们强调了在离体样品中与实验时间窗相关的潜在问题。
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Time-dependent phenotypical changes of microglia drive alterations in hippocampal synaptic transmission in acute slices.

It is widely acknowledged that microglia actively regulate synaptic function in the brain. Remarkably, much of our understanding regarding the role of microglia in synaptic regulation is derived from studies in acute brain slices. However, it is still uncertain to what extent the preparation and maintenance of acute slices can influence microglial function and whether microglial changes may affect synaptic transmission. In this study, we examined the impact of acute slice resting time on hippocampal CA1 microglia, by assessing morphological and functional parameters at two distinct time intervals. We report that after 4 h from slicing microglia undergo morphological, functional, and transcriptional changes, including a decrease in the number of branches and in their movement speed. Furthermore, microglia acquire a reactive phenotype, characterized by increased amplitude of outward rectifying K+ currents, increased expression of the pro-inflammatory cytokine Tnfα and altered expression of the microglial receptors Cx3cr1 and P2y12r. We also examined time-dependent changes of excitatory synaptic transmission in CA1 pyramidal neurons from acute hippocampal slices, reporting time-dependent decrease in both amplitude and frequency of postsynaptic currents (sEPSCs), along with a decrease in spine density. Noticeably, sEPSCs amplitude decrease was absent in slices prepared from PLX5622 microglia-depleted mice, suggesting that this time-dependent effect on synaptic transmission is microglia-dependent. Our findings highlight possible causal relation between microglia phenotypic changes in the hours following slice preparation and concomitant synaptic changes, pointing to the mechanisms of acute synaptic modulation, whose understanding is crucial for unraveling microglia-neurons interplay in nature. Furthermore, they emphasize the potential issues associated with experimental time windows in ex vivo samples.

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来源期刊
CiteScore
7.90
自引率
3.80%
发文量
627
审稿时长
6-12 weeks
期刊介绍: Frontiers in Cellular Neuroscience is a leading journal in its field, publishing rigorously peer-reviewed research that advances our understanding of the cellular mechanisms underlying cell function in the nervous system across all species. Specialty Chief Editors Egidio D‘Angelo at the University of Pavia and Christian Hansel at the University of Chicago are supported by an outstanding Editorial Board of international researchers. This multidisciplinary open-access journal is at the forefront of disseminating and communicating scientific knowledge and impactful discoveries to researchers, academics, clinicians and the public worldwide.
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The lactate metabolism and protein lactylation in epilepsy. Viral encephalitis and seizures cause rapid depletion of neuronal progenitor cells and alter neurogenesis in the adult mouse dentate gyrus. Cryopreservation of primary neonatal rat oligodendrocytes and recapitulation of in vitro oligodendrocyte characteristics. Editorial: Intersection between the biological and digital: synthetic biological intelligence and organoid intelligence. Gut mycobiome and neuropsychiatric disorders: insights and therapeutic potential.
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