水蒸发素-4-IgG 血清阳性神经脊髓炎谱系障碍:基于疾病发病机制的实验模型研究进展

Li Xu, Huiming Xu, Changyong Tang
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摘要

神经脊髓炎视网膜频谱疾病是一种神经炎性脱髓鞘疾病,可导致永久性视力丧失和运动功能障碍。迄今为止,由于确切的致病机制尚不清楚,还没有有效的治疗方法。因此,神经脊髓炎视网膜频谱疾病的实验模型对于探索其发病机制和筛选治疗靶点至关重要。由于大多数神经脊髓炎视网膜频谱紊乱症患者针对星形胶质细胞内膜上高度表达的水蒸发蛋白-4 的 IgG 自身抗体血清反应呈阳性,因此目前大多数实验模型都是基于最初针对星形胶质细胞的水蒸发蛋白-4-IgG。这些实验模型成功地模拟了神经脊髓炎视网膜频谱病变的许多病理特征,如水华素-4缺失、星形胶质细胞病变、粒细胞和巨噬细胞浸润、补体激活、脱髓鞘和神经元缺失等;但它们并不能完全捕捉人类神经脊髓炎视网膜频谱病变的病理过程。在这篇综述中,我们总结了目前已知的致病机制以及神经脊髓炎视网膜频谱疾病体外、体内和体外相关实验模型的发展情况,提出了有待进一步研究的潜在致病机制,并为实验模型的选择提供了指导。此外,本综述还总结了基于水肿素-4-IgG 血清阳性神经脊髓炎视谱系障碍实验模型的神经脊髓炎视谱系障碍病理和疗法的最新信息,为临床试验提供了进一步的治疗靶点和理论依据。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Aquaporin-4-IgG-seropositive neuromyelitis optica spectrum disorders: progress of experimental models based on disease pathogenesis
Neuromyelitis optica spectrum disorders are neuroinflammatory demyelinating disorders that lead to permanent visual loss and motor dysfunction. To date, no effective treatment exists as the exact causative mechanism remains unknown. Therefore, experimental models of neuromyelitis optica spectrum disorders are essential for exploring its pathogenesis and in screening for therapeutic targets. Since most patients with neuromyelitis optica spectrum disorders are seropositive for IgG autoantibodies against aquaporin-4, which is highly expressed on the membrane of astrocyte endfeet, most current experimental models are based on aquaporin-4-IgG that initially targets astrocytes. These experimental models have successfully simulated many pathological features of neuromyelitis optica spectrum disorders, such as aquaporin-4 loss, astrocytopathy, granulocyte and macrophage infiltration, complement activation, demyelination, and neuronal loss; however, they do not fully capture the pathological process of human neuromyelitis optica spectrum disorders. In this review, we summarize the currently known pathogenic mechanisms and the development of associated experimental models in vitro, ex vivo, and in vivo for neuromyelitis optica spectrum disorders, suggest potential pathogenic mechanisms for further investigation, and provide guidance on experimental model choices. In addition, this review summarizes the latest information on pathologies and therapies for neuromyelitis optica spectrum disorders based on experimental models of aquaporin-4-IgG-seropositive neuromyelitis optica spectrum disorders, offering further therapeutic targets and a theoretical basis for clinical trials.
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