ePoster

FUNCTIONAL, MORPHOLOGICAL, AND TRANSCRIPTOMIC CHARACTERIZATION OF FUSED PURKINJE CELLS IN THE EAE MOUSE MODEL OF MULTIPLE SCLEROSIS

David Diazand 9 co-authors

INCyL, Institute for Neuroscience of Castilla y León, Universidad de Salamanca

FENS Forum 2026 (2026)
Barcelona, Spain
Board PS07-10AM-121

Presentation

Date TBA

Board: PS07-10AM-121

Poster preview

FUNCTIONAL, MORPHOLOGICAL, AND TRANSCRIPTOMIC CHARACTERIZATION OF FUSED PURKINJE CELLS IN THE EAE MOUSE MODEL OF MULTIPLE SCLEROSIS poster preview

Event Information

Poster Board

PS07-10AM-121

Abstract

Neurodegenerative diseases are increasing, and cell therapy is one of the most promising treatments for their palliation. Bone marrow-derived cells (BMDCs) migrate into the brain, where they can fuse with neurons, such as Purkinje cells. Although fusion events are rare, their frequency increases in certain pathologies, including multiple sclerosis. In the Experimental Autoimmune Encephalomyelitis (EAE) model of multiple sclerosis, fused cells remain functional and retain two transcriptionally independent nuclei, suggesting that BMDCs could be used as vehicles for delivering therapeutic agents. However, mechanisms underlying fusion and properties of fused cells remain poorly understood.
We transplanted GFP-positive BMDCs to identify fused cells in EAE mice. We optimized timing between transplantation, EAE induction and tissue collection to detect fusion events as soon as possible. Using Patch-Seq technology, we compared individual fused and nearby non-fused Purkinje cells. We recorded cells’ electrophysiological activity, stained them for morphological analysis, and collected their cytoplasm for single-cell RNA sequencing. Finally, we analysed transcriptional activity and the epigenetic state of the two nuclei of fused cells.
Our results showed that the morphology of fused and non-fused cells is quite similar, while action potential frequency is lower in fused cells. Fused Purkinje cells also express typical BMDC genes that are absent in non-fused neurons.
These results will help us understand the nature of cells involved in fusion and its consequences, bringing us closer to using BMDCs as therapy for neurodegenerative diseases.
Funding: MICINN PID2022-140525NB-I00, PID2022-140456NB-I00; JCyL-FEDER SA112P24; Erasmus+ 2023-1-PL01-KA220-HED-000160284; programmes of excellence from JCyL CLU-2023-1-01.

Recommended posters

BONE MARROW-DERIVED CELLS FUSE WITH BERGMANN GLIA TO FORM HETEROKARYONS IN A MOUSE MODEL OF MULTIPLE SCLEROSIS

Pablo G. Téllez de Meneses, Sara Sánchez-Monreal, Carmelo A. Ávila-Zarza, José Ramón Alonso, Eduardo Weruaga, David Díaz, Jorge Valero

MULTIMODAL STUDY OF BRAIN RECONFIGURATIONS IN AN EXPERIMENTAL MODEL OF MULTIPLE SCLEROSIS

Giulia Vasirani, Giovanni Ferrara, Roberta Resaz, Rosella Tro', Paola Modesto, Simonetta Astigiano, Tiziana Vigo, Antonio Uccelli, Michele Cilli, Marco Fato, Caterina Montani

SPLEEN IMMUNE SYSTEM ALTERATIONS DURING MITRAL CELL DEGENERATION IN PCD MOUSE MODEL

Eva M. Baranda-Alonso, Isabel Pidal-Ladrón de Guevara, Yoan Reynaldo Torres-Cruz, Ericka Elescano-Delgado, Naiara Martin-Llorente Hamed, Carla Escudero-Solano, Eduardo Weruaga, Diego Clemente, David Díaz

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

SYNAPTIC RELATIONSHIP BETWEEN MICROGLIA CELLS AND NEURONS THROUGHOUT THE DEGENERATIVE PROCESSES OF A MODEL OF SELECTIVE NEURONAL DEATH, THE PCD MUTANT MOUSE

Jimena Pérez Arévalo, David Pérez-Boyero, Pablo G Téllez de Meneses, Carla Escudero-Solano, Jorge Valero, Eduardo Weruaga Prieto, David Díaz López

FUNCTIONAL AND MOLECULAR PROFILING OF IPSC-DERIVED CELL TYPES FROM BIPOLAR DISORDER PATIENTS IN SPANISH MULTIPLEX FAMILIES

Ankita Kumar Bhamidipati, Anne Hoffrichter, Malin Schmidt, Philipp Koch

Cookies

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