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小胶质细胞动力学调节前庭病啮齿动物模型中的前庭代偿,并调节去传入前庭核中可塑性机制的表达。

Microglial Dynamics Modulate Vestibular Compensation in a Rodent Model of Vestibulopathy and Condition the Expression of Plasticity Mechanisms in the Deafferented Vestibular Nuclei.

机构信息

Aix-Marseille Université-Centre National de la Recherche Scientifique (CNRS), Laboratoire de Neurosciences Cognitives, LNC UMR 7291, Centre Saint-Charles, Case C, 3 Place Victor Hugo, CEDEX 03, 13331 Marseille, France.

Université de Caen (UNICAEN), INSERM, COMETE, Normandie Université, 14000 Caen, France.

出版信息

Cells. 2022 Aug 29;11(17):2693. doi: 10.3390/cells11172693.

Abstract

Unilateral vestibular loss (UVL) induces a vestibular syndrome composed of posturo-locomotor, oculomotor, vegetative, and perceptivo-cognitive symptoms. With time, these functional deficits progressively disappear due to a phenomenon called vestibular compensation, known to be supported by the expression in the deafferented vestibular nuclei (VNs) of various adaptative plasticity mechanisms. UVL is known to induce a neuroinflammatory response within the VNs, thought to be caused by the structural alteration of primary vestibular afferents. The acute inflammatory response, expressed in the deafferented VNs was recently proven to be crucial for the expression of the endogenous plasticity supporting functional recovery. Neuroinflammation is supported by reactive microglial cells, known to have various phenotypes with adverse effects on brain tissue. Here, we used markers of pro-inflammatory and anti-inflammatory phenotypes of reactive microglia to study microglial dynamics following a unilateral vestibular neurectomy (UVN) in the adult rat. In addition, to highlight the role of acute inflammation in vestibular compensation and its underlying mechanisms, we enhanced the inflammatory state of the deafferented VNs using systemic injections of lipopolysaccharide (LPS) during the acute phase after a UVN. We observed that the UVN induced the expression of both M1 proinflammatory and M2 anti-inflammatory microglial phenotypes in the deafferented VNs. The acute LPS treatment exacerbated the inflammatory reaction and increased the M1 phenotype while decreasing M2 expression. These effects were associated with impaired postlesional plasticity in the deafferented VNs and exacerbated functional deficits. These results highlight the importance of a homeostatic inflammatory level in the expression of the adaptative plasticity mechanisms underlying vestibular compensation. Understanding the rules that govern neuroinflammation would provide therapeutic leads in neuropathologies associated with these processes.

摘要

单侧前庭丧失(UVL)会引起前庭综合征,包括姿势运动、眼球运动、植物性和感知认知症状。随着时间的推移,由于称为前庭代偿的现象,这些功能缺陷会逐渐消失,该现象已知是由去传入前庭核(VN)中各种适应性可塑性机制的表达所支持的。已知 UVL 会在 VN 内引起神经炎症反应,据认为这是由初级前庭传入纤维的结构改变引起的。最近证明,去传入 VN 中表达的急性炎症反应对于表达支持功能恢复的内源性可塑性至关重要。神经炎症由反应性小胶质细胞支持,已知这些细胞具有各种表型,对脑组织有不良影响。在这里,我们使用反应性小胶质细胞的促炎和抗炎表型标志物来研究成年大鼠单侧前庭神经切断术后(UVN)小胶质细胞的动力学。此外,为了强调急性炎症在前庭代偿及其潜在机制中的作用,我们在 UVN 后急性阶段通过全身注射脂多糖(LPS)增强去传入 VN 的炎症状态。我们观察到 UVN 在去传入 VN 中诱导了 M1 促炎和 M2 抗炎小胶质细胞表型的表达。急性 LPS 处理加剧了炎症反应,增加了 M1 表型,同时降低了 M2 的表达。这些影响与去传入 VN 中的损伤后可塑性受损和功能缺陷加剧有关。这些结果强调了在表达前庭代偿潜在适应性可塑性机制中维持炎症反应的重要性。了解控制神经炎症的规则将为与这些过程相关的神经病理学提供治疗线索。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7c77/9454928/d8a494270a99/cells-11-02693-g001.jpg

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