EXOGENOUS PARACRINE EFFECTS OF DENTAL PULP STEM CELLS ON GLIA AND NEURONAL CIRCUITS: A NEW THERAPEUTIC STRATEGY FOR NEUROPROTECTION
University of the Basque Country
Presentation
Date TBA
Event Information
Poster Board
PS06-09PM-268
Poster
View posterAbstract
In this context, human dental pulp stem cells (hDPSCs) are of particular interest for brain-related therapies, especially for neuroimmunomodulation. hDPSCs, and consequently their secretome, exhibit strong neurotrophic, angiogenic, anti-inflammatory, and anti-apoptotic activities, as well as enhanced migratory capacity, neurite outgrowth, and immunomodulatory effects. However, it remains unclear to what extent the stem cell secretome is capable of regulating synaptic function and inflammatory and immunomodulatory responses, and whether its use could represent a valid therapeutic strategy to improve synaptic function in cognitive disorders, which impose a substantial economic and social burden on affected individuals and their families.
This work demonstrates that the DPSC-derived secretome, particularly its soluble fraction, is able to modulate microglial state in vitro in response to an inflammatory stimulus, shifting microglia from a reactive phenotype toward a more homeostatic one. Moreover, extracellular vesicles (EVs) derived from the secretome modulate synaptic function during inflammatory conditions, as they were shown to prevent synaptic plasticity impairment within the first 24 hours following an inflammatory event. This effect was demonstrated by assessing long-term potentiation (LTP) in the CA1 region ex vivo.
Recommended posters
HISTOLOGICAL AND ELECTROPHYSIOLOGICAL CHARACTERIZATION OF NEURAL-PRECONDITIONED HUMAN DENTAL PULP STEM CELLS AFTER THEIR GRAFT INTO C57BL/6J HIPPOCAMPUS
Beatriz Pardo Rodríguez, Irene Manero-Roig, Jone Salvador-Moya, Ruth Basanta-Torres, Daniel Martín-Aragón, Sandra Hernández-Sánchez, Jon Luzuriaga, Aurélie Lampin-Saint-Amaux, Frédéric Lanore, Fernando Unda, Gaskon Ibarretxe, José Ramón Pineda
INTRA-ARTERIAL ADMINISTRATION OF HUMAN DENTAL PULP STEM CELLS PROMOTES NEUROVASCULAR REPAIR AND FUNCTIONAL RECOVERY AFTER ISCHEMIC STROKE
Rita López-Barajas Anguiano, Jone Salvador-Moya, Daiana Efim, Maider Garbizu, Beatriz Pardo-Rodríguez, Laura Aguado, Jon Luzuriaga, JR Pineda, Abraham Martín, Gaskon Ibarretxe
HUMAN DENTAL PULP STEM CELL BIOPRINTING AS A PLATFORM FOR PERSONALIZED 3D NEUROGENIC TISSUE MODELS
Jon Luzuriaga, Marina Ozalla-Castro, Irene Diaz Aldama, Beatriz Pardo-Rodríguez, Jone Salvador-Moya, Daniel Martín-Aragón, Irene Manero-Roig, Sandra Hernández-Sánchez, Edurne Alonso, Jose Luis Pedraz, Laura Saenz-del-Burgo, Jose Ramón Pineda, Gaskon Ibarretxe, Denis Scaini
IPSC-DERIVED EXTRACELLULAR VESICLES RESCUE PARKINSON’S DISEASE–ASSOCIATED DEFICITS IN HUMAN AND MOUSE MODELS
Wote Amelo Rike, Utkarsh Tripathi, Yara Hussien, Ashwani Choudhary, Alexander Rajkovic, Omveer Sharma, Idan Rosh, Andreea Manole, Fred Gage, Henry Houlden, Claude Brodski, Shani Stern
DECIPHERING INFLAMMATORY MECHANISMS TO IMPROVE THE EFFICACY OF STEM CELL THERAPY
Marie Karam, Garrido santos Jose thomas, Tornero Daniel
EFFECT OF NEURAL EXTRACELLULAR VESICLES ON THE MODULATION OF CELL SURVIVAL DURING AGING
Raquel García Rodríguez, Sandra González de la Fuente, Irene Clares Pedrero, Carlos Cabañas, Ernest Palomer, Francesc Guix, Carlos Dotti