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Titel:NMOSD IgG Impact Retinal Cells in Murine Retinal Explants
Autor:Wolf, Hannah Nora
Weitere Verfasser:Ehinger, Veronika; Guempelein, Larissa; Banerjee, Pratiti; Kuempfel, Tania; Havla, Joachim; Pauly, Diana
Veröffentlicht:2023
URI:https://archiv.ub.uni-marburg.de/es/2024/0766
URN: urn:nbn:de:hebis:04-es2024-07664
DOI: https://doi.org/10.3390/cimb45090463
DDC:610 Medizin
Publikationsdatum:2024-01-22
Lizenz:https://creativecommons.org/licenses/by/4.0

Dokument

Schlagwörter:
autoantibodies, chemokine, mouse retinal explants, NMOSD, local, retina, complement, Müller cell

Summary:
Neuromyelitis optica spectrum disorders (NMOSD) are chronic inflammatory diseases of the central nervous system, characterized by autoantibodies against aquaporin-4. The symptoms primarily involve severe optic neuritis and longitudinally extensive transverse myelitis. Although the disease progression is typically relapse-dependent, recent studies revealed retinal neuroaxonal degeneration unrelated to relapse activity, potentially due to anti-aquaporin-4-positive antibodies interacting with retinal glial cells such as Müller cells. In this exploratory study, we analysed the response of mouse retinal explants to NMOSD immunoglobulins (IgG). Mouse retinal explants were treated with purified IgG from patient or control sera for one and three days. We characterized tissue response patterns through morphological changes, chemokine secretion, and complement expression. Mouse retinal explants exhibited a basic proinflammatory response ex vivo, modified by IgG addition. NMOSD IgG, unlike control IgG, increased gliosis and decreased chemokine release (CCL2, CCL3, CCL4, and CXCL-10). Complement component expression by retinal cells remained unaltered by either IgG fraction. We conclude that human NMOSD IgG can possibly bind in the mouse retina, altering the local cellular environment. This intraretinal stress may contribute to retinal degeneration independent of relapse activity in NMOSD, suggesting a primary retinopathy.


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