ePoster

OFF-TARGET COMPLEMENT-MEDIATED OLIGODENDROCYTE INJURY IN A MOUSE MODEL OF NMOSD

Selin Kenetand 7 co-authors

Technical University of Munich

FENS Forum 2026 (2026)
Barcelona, Spain
Board PS03-08AM-020

Presentation

Date TBA

Board: PS03-08AM-020

Poster preview

OFF-TARGET COMPLEMENT-MEDIATED OLIGODENDROCYTE INJURY IN A MOUSE MODEL OF NMOSD poster preview

Event Information

Poster Board

PS03-08AM-020

Abstract

The pathological features of neuromyelitis optica spectrum disorder (NMOSD) include astrocyte loss followed by demyelination, yet the mechanisms linking astrocyte injury to secondary oligodendrocyte pathology remain poorly understood. To investigate this, we performed in vivo spinal cord imaging in an acute mouse model of NMOSD, allowing observation of glial injury dynamics at single-cell resolution. Targeted astrocyte depletion induced by AQP4 antibodies led to robust oligodendrocyte injury, marked by early intracellular calcium dysregulation that preceded oligodendrocyte death. Notably, oligodendrocyte injury occurred after a temporal delay relative to astrocyte lysis and without overt membrane damage, indicating a distinct injury mechanism within this glial pair. Oligodendrocyte pathology was driven by soluble complement components released during antibody-mediated astrocyte targeting and was selective among glial cells; microglia and oligodendrocyte precursor cells were spared in NMOSD lesions. Oligodendrocyte-specific expression of the membrane attack complex (MAC) inhibitor CD59 preserved oligodendrocytes despite astrocyte loss, confirming that this is not solely due lack of astrocytic support. Together, these findings reveal a complement-mediated, cell-type-specific vulnerability within the astrocyte-oligodendrocyte glial pair as a key mechanism driving demyelination in NMOSD and suggesting a convergent pathway relevant to other demyelinating diseases.

Recommended posters

IMPACT OF COMPLEMENT OVER-ACTIVATION ON GLUTAMATE RELEASE IN THE CORTEX OF EAE MOUSE MODEL

Nicole Rosenwasser, Paride Saccani, Veronica Torre, Alice Taddeucci, Guendalina Olivero, Anna Maria Pittaluga

CHARACTERIZATION OF BRAIN INNATE IMMUNE INFILTRATES, ANTIBODY DYNAMICS AND FUNCTIONALITIES IN A MOUSE MODEL OF ANTI-NMDAR ENCEPHALITIS

Laura Marmolejo Alcaide, Mariona Perez, Afnaan AlSabbry, Claudia Papi, Chiara Milano, Ana Beatriz Serafim, Jesus Planagumà, Esther Aguilar, Lidia Sabater, Estibaliz Maudes, Josep Dalmau, Marianna Spatola

THE EFFECT OF OLIGODENDROGLIAL-ADAM10 DEFICIENCY UPON CHEMICAL- OR MECHANICAL-INDUCED CENTRAL NERVOUS SYSTEM DEMYELINATION IN MICE

Pilar Acebo

NOVEL THERAPIES TO HALT DEMYELINATION IN PROGRESSIVE MULTIPLE SCLEROSIS

Rocío Rojas Martín, Juan Carlos Chara Ventura, Mar Mendibe, Alfredo Rodríguez-Antigüedad, Alberto Pérez-Samartín, Carlos Matute

IPSC-BASED HUMANIZED MODELS REVEAL INTRINSIC OLIGODENDROGLIAL DYSFUNCTION ASSOCIATED WITH MULTIPLE SCLEROSIS SEVERITY

Elisa Marin, Gloria López, Rucsanda Pinteac, Luciana Midaglia, Juan Antonio García-León, Esteban Cordero, Carmen Espejo, Laura Cáceres-Palomo, Nicolás Fissolo, Yuk Kit Lor, Claudia Reche, Arnau Hervera, Mireia Castillo, Helena Bermejo, Clara Matute, Begoña Aran, Bernd Kuebler, Silvia Selvitella, Anna Veiga, Antonia Gutiérrez, Gonçalo Castelo-Branco, Ángel Raya, Xavier Montalban, Manuel Comabella, Andrés Miguez

SINGLE-CELL SPATIAL TRANSCRIPTOMIC PROFILING DEFINES A PATHOGENIC INFLAMMATORY NICHE IN CHRONIC ACTIVE MULTIPLE SCLEROSIS LESIONS

Ruoqing Feng

Cookies

We use essential cookies to run the site. Analytics cookies are optional and help us improve World Wide. Learn more.