一种人抗聚唾液酸抗体作为改善多发性硬化症患者功能的潜在治疗方法。

Journal of nature and science Pub Date : 2015-08-01
Jens O Watzlawik, Meghan M Painter, Bharath Wootla, Moses Rodriguez
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引用次数: 0

摘要

我们之前发现了一种称为HIgM12的人单克隆抗体,可以刺激多发性硬化症慢性脱髓鞘小鼠模型的自发运动活动。当作为分子底物进行测试时,HIgM12刺激了体外神经突的生长。我们最近报道了神经细胞粘附分子(NCAM)上的聚唾液酸(PSA)是HIgM12的细胞抗原之一。利用HIgM12和市售抗psa抗体对星形胶质细胞进行荧光双标记,显示出明显的共定位。缺乏NCAM三种主要剪接变体NCAM180、NCAM140和NCAM120 (NCAM KO)的小鼠的神经组织匀浆和原代中枢神经系统培养物不再能够结合HIgM12。此外,酶解PSA在野生型(WT)胶质细胞上可以消除higm12的结合。此外,在神经突生长试验中,来自NCAM KO动物的神经元和胶质细胞没有附着在higm12包被的硝化纤维素上。我们在体外实验中得出结论,HIgM12靶向附着在NCAM上的PSA,并且PSA部分介导神经元和胶质的粘附以及随后的神经突生长。因此,这种抗psa抗体可能作为一种未来的治疗方法,刺激多发性硬化症患者和其他神经退行性疾病的功能改善。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A human anti-polysialic acid antibody as a potential treatment to improve function in multiple sclerosis patients.

We previously identified a human monoclonal antibody, termed HIgM12 that stimulates spontaneous locomotor activity in a chronically demyelinating mouse model of multiple sclerosis. When tested as a molecular substrate, HIgM12 stimulated neurite outgrowth in vitro. We recently reported that polysialic acid (PSA) attached to the neural cell adhesion molecule (NCAM) is one of the cellular antigens for HIgM12. Fluorescent double-labeling of astrocytes using HIgM12 and commercially available anti-PSA antibody showed dramatic co-localization. Neural tissue homogenates and primary CNS cultures from mice lacking the three major NCAM splice variants NCAM180, NCAM140 and NCAM120 (NCAM KO) were no longer able to bind HIgM12. Furthermore, enzymatic digestion of PSA on wild type (WT) glia abolished HIgM12-binding. Moreover, neurons and glia from NCAM KO animals did not attach to HIgM12-coated nitrocellulose in neurite outgrowth assays. We conclude that HIgM12 targets PSA attached to NCAM, and that the PSA moiety mediates neuronal and glial adhesion and subsequent neurite outgrowth in our in vitro assay. Therefore, this anti-PSA antibody may serve as a future therapeutic to stimulate functional improvement in multiple sclerosis patients and other neurodegenerative diseases.

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