首页> 外文期刊>The Journal of Immunology: Official Journal of the American Association of Immunologists >Functional consequences of neuromyelitis optica-IgG astrocyte interactions on blood-brain barrier permeability and granulocyte recruitment.
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Functional consequences of neuromyelitis optica-IgG astrocyte interactions on blood-brain barrier permeability and granulocyte recruitment.

机译:视神经脊髓炎-IgG星状细胞相互作用对血脑屏障通透性和粒细胞募集的功能后果。

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Autoantibody neuromyelitis optica-IgG (NMO-IgG) recognizing aquaporin-4 (AQP4) is implicated as playing a central role in the physiopathology of NMO. The aim of this in vitro-based study was to characterize functional consequences of interaction between NMO-IgG and cells of the neurovascular unit (astrocytes and brain endothelium) that would provide insight into recognized features of NMO, namely altered blood-brain barrier (BBB) permeability and granulocyte recruitment. We used sera from NMO and longitudinally extensive transverse myelitis cases shown to bind in a characteristic perivascular pattern to primate cerebellar slices. Using flow cytometry, we found that sera from NMO-IgG-positive patients reacted with CNS-derived human fetal astrocytes, whereas sera from multiple sclerosis patients did not. We demonstrated that NMO-IgG binding to astrocytes alters aquaporin-4 polarized expression and increases permeability of a human BBB endothelium/astrocyte barrier. We further demonstrated that NMO-IgG binding to human fetal astrocytes can result in NK cell degranulation, astrocyte killing by Ab-dependent cellular cytotoxicity and complement-dependent granulocyte attraction through the BBB model. Our study highlights important functional roles for NMO-IgG that could account for pathological lesions and BBB dysfunction observed in NMO.
机译:认识到水通道蛋白4(AQP4)的自身抗体视神经脊髓炎-IgG(NMO-IgG)在NMO的病理生理中起着核心作用。这项基于体外的研究的目的是表征NMO-IgG与神经血管单位细胞(星形细胞和脑内皮)之间相互作用的功能后果,这将有助于洞悉NMO的公认特征,即血脑屏障改变(BBB) )通透性和粒细胞募集。我们使用了来自NMO和纵向广泛性横贯性脊髓炎病例的血清,这些病例显示以特征性的血管周围模式结合至灵长类小脑切片。使用流式细胞仪,我们发现NMO-IgG阳性患者的血清与CNS衍生的人胎儿星形胶质细胞反应,而多发性硬化症患者的血清则没有。我们证明,与星形胶质细胞结合的NMO-IgG改变了Aquaporin-4极化表达并增加了人BBB内皮/星形胶质细胞屏障的通透性。我们进一步证明,与人胎儿星形胶质细胞结合的NMO-IgG可以导致NK细胞脱粒,通过Ab依赖性细胞毒性作用杀死星形胶质细胞,并通过BBB模型吸引补体依赖性粒细胞。我们的研究强调了NMO-IgG的重要功能作用,这可以解释NMO中观察到的病理性病变和BBB功能障碍。

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