Immune response after intermittent minimally invasive intraocular pressure elevations in an experimental animal model of glaucoma

Elevated intraocular pressure (IOP), as well as fluctuations in IOP, is a main risk factor for glaucoma, but its pathogenic effect has not yet been clarified. Beyond the multifactorial pathology of the disease, autoimmune mechanisms seem to be linked to retinal ganglion cell (RGC) death. This study...

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Veröffentlicht in:Journal of neuroinflammation 2016-04, Vol.13 (1), p.82-82, Article 82
Hauptverfasser: Gramlich, Oliver W, Teister, Julia, Neumann, Mareike, Tao, Xue, Beck, Sabine, von Pein, Harald D, Pfeiffer, Norbert, Grus, Franz H
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Sprache:eng
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Zusammenfassung:Elevated intraocular pressure (IOP), as well as fluctuations in IOP, is a main risk factor for glaucoma, but its pathogenic effect has not yet been clarified. Beyond the multifactorial pathology of the disease, autoimmune mechanisms seem to be linked to retinal ganglion cell (RGC) death. This study aimed to identify if intermittent IOP elevations in vivo (i) elicit neurodegeneration, (ii) provokes an immune response and (iii) whether progression of RGC loss can be attenuated by the B lymphocyte inhibitor Belimumab. Using an intermittent ocular hypertension model (iOHT), Long Evans rats (n = 21) underwent 27 unilateral simulations of a fluctuating pressure profile. Nine of these animals received Belimumab, and additional seven rats served as normotensive controls. Axonal density was analyzed in PPD-stained optic nerve cross-sections. Retinal cross-sections were immunostained against Brn3a, Iba1, and IgG autoantibody depositions. Serum IgG concentration and IgG reactivities were determined using ELISA and protein microarrays. Data was analyzed using ANOVA and Tukey HSD test (unequal N) or student's independent t test by groups. A wavelike IOP profile led to a significant neurodegeneration of optic nerve axons (-10.6 %, p 
ISSN:1742-2094
1742-2094
DOI:10.1186/s12974-016-0542-6