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接种疫苗以保护视网膜神经节细胞免受谷氨酸细胞毒性和高眼压导致的死亡:对青光眼的影响。

Vaccination for protection of retinal ganglion cells against death from glutamate cytotoxicity and ocular hypertension: implications for glaucoma.

作者信息

Schori H, Kipnis J, Yoles E, WoldeMussie E, Ruiz G, Wheeler L A, Schwartz M

机构信息

Department of Neurobiology, The Weizmann Institute of Science, Rehovot 76100, Israel.

出版信息

Proc Natl Acad Sci U S A. 2001 Mar 13;98(6):3398-403. doi: 10.1073/pnas.041609498. Epub 2001 Mar 6.

Abstract

Our group recently demonstrated that autoimmune T cells directed against central nervous system-associated myelin antigens protect neurons from secondary degeneration. We further showed that the synthetic peptide copolymer 1 (Cop-1), known to suppress experimental autoimmune encephalomyelitis, can be safely substituted for the natural myelin antigen in both passive and active immunization for neuroprotection of the injured optic nerve. Here we attempted to determine whether similar immunizations are protective from retinal ganglion cell loss resulting from a direct biochemical insult caused, for example, by glutamate (a major mediator of degeneration in acute and chronic optic nerve insults) and in a rat model of ocular hypertension. Passive immunization with T cells reactive to myelin basic protein or active immunization with myelin oligodendrocyte glycoprotein-derived peptide, although neuroprotective after optic nerve injury, was ineffective against glutamate toxicity in mice and rats. In contrast, the number of surviving retinal ganglion cells per square millimeter in glutamate-injected retinas was significantly larger in mice immunized 10 days previously with Cop-1 emulsified in complete Freund's adjuvant than in mice injected with PBS in the same adjuvant (2,133 +/- 270 and 1,329 +/- 121, respectively, mean +/- SEM; P < 0.02). A similar pattern was observed when mice were immunized on the day of glutamate injection (1,777 +/- 101 compared with 1,414 +/- 36; P < 0.05), but not when they were immunized 48 h later. These findings suggest that protection from glutamate toxicity requires reinforcement of the immune system by antigens that are different from those associated with myelin. The use of Cop-1 apparently circumvents this antigen specificity barrier. In the rat ocular hypertension model, which simulates glaucoma, immunization with Cop-1 significantly reduced the retinal ganglion cell loss from 27.8% +/- 6.8% to 4.3% +/- 1.6%, without affecting the intraocular pressure. This study may point the way to a therapy for glaucoma, a neurodegenerative disease of the optic nerve often associated with increased intraocular pressure, as well as for acute and chronic degenerative disorders in which glutamate is a prominent participant.

摘要

我们的研究小组最近证明,针对中枢神经系统相关髓鞘抗原的自身免疫性T细胞可保护神经元免受继发性变性。我们进一步表明,已知能抑制实验性自身免疫性脑脊髓炎的合成肽共聚物1(Cop-1),在被动和主动免疫中均可安全替代天然髓鞘抗原,用于对受损视神经的神经保护。在此,我们试图确定类似的免疫接种是否能保护视网膜神经节细胞免于因例如谷氨酸(急性和慢性视神经损伤中变性的主要介质)引起的直接生化损伤以及在高眼压大鼠模型中的损失。用对髓鞘碱性蛋白有反应的T细胞进行被动免疫或用髓鞘少突胶质细胞糖蛋白衍生肽进行主动免疫,虽然在视神经损伤后具有神经保护作用,但对小鼠和大鼠的谷氨酸毒性无效。相比之下,在预先10天用完全弗氏佐剂乳化的Cop-1免疫的小鼠中,注射谷氨酸的视网膜每平方毫米存活的视网膜神经节细胞数量明显多于在相同佐剂中注射PBS的小鼠(分别为2133±270和1329±121,平均值±标准误;P<0.02)。当在注射谷氨酸当天对小鼠进行免疫时,观察到类似的模式(1777±101与1414±36相比;P<0.05),但在48小时后进行免疫时则未观察到。这些发现表明,免受谷氨酸毒性的保护需要用与髓鞘相关抗原不同的抗原增强免疫系统。Cop-1的使用显然规避了这种抗原特异性障碍。在模拟青光眼的大鼠高眼压模型中,用Cop-1免疫可显著减少视网膜神经节细胞损失,从27.8%±6.8%降至4.3%±1.6%,而不影响眼压。这项研究可能为青光眼(一种常与眼压升高相关的视神经神经退行性疾病)以及谷氨酸起重要作用的急性和慢性退行性疾病的治疗指明方向。

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