CHRONIC SENOLYTIC TREATMENT MODULATES COGNITIVE PERFORMANCE AND GLIAL RESPONSE IN MOUSE MODELS OF ALZHEIMER’S DISEASE AND ACCELERATED AGEING
Department of Cell Biology, Physiology and Immunology, Faculty of Biology, Institute of Neurosciences (UBneuro), Universitat de Barcelona
Presentation
Date TBA
Event Information
Poster Board
PS03-08AM-132
Poster
View posterAbstract
In this study, we investigated the effects of a senolytic treatment using two complementary mouse models: 5xFAD mice, a transgenic model of familial AD carrying five mutations in the amyloid precursor protein (APP) and presenilin-1 (PS1) genes, and SAMP8 mice, which exhibit accelerated ageing, cognitive impairment, and neuroinflammation. Five-month-old mice from both models received an intermittent senolytic treatment for two months. Cognitive performance was assessed using a battery of behavioural tests evaluating anxiety, working memory, and recognition memory. Senescence, plaque pathology and gliosis-related markers were analysed using immunohistochemistry and colorimetric imaging. Behavioural analyses revealed significant cognitive improvements in both models following the treatment. Neurochemically, senescence-associated β-galactosidase (SA-β-Gal) levels were unchanged, but a decrease of plaque burden and lysosomes were observed in 5xFAD mice specifically in the hippocampus dentate gyrus, as well as a modulation of microglial states. In the same brain area, the treatment modulated microglial and oligodendroglial phenotypes in SAMP8 mice.
These findings highlight the role of glial cells in response to AD and ageing, and support the potential of senolytic therapies in alleviating cognitive decline and mitigating neuroinflammation.
Recommended posters
CLEARANCE OF SENESCENT CELLS IMPROVES COGNITIVE FUNCTION AND PLAQUE-RELATED PATHOLOGY IN THE APPNL-G-F MOUSE MODEL OF ALZHEIMER’S DISEASE
Carolin Wüst, Iker Bengoetxea de Tena, Ana Guerrero
TELOMERE-INDUCED BRAIN SENESCENCE LOWERS AMYLOID BURDEN IN HUMANIZED APP-SAA KNOCK-IN MICE WHILE PROMOTING TAU PATHOLOGY AND NEURODEGENERATION IN PS19 TAUOPATHY MICE
Nuria Suelves Caballol, Debora Palomares, Pascal Kienlen-Campard
MOLECULAR MECHANISMS UNDERLYING CELLULAR SENESCENCE IN ALZHEIMER'S DISEASE MICE
Yang He, Xavier Fernández-Olalla, Ángel Deprada, C. A. Saura, Arnaldo Parra-Damas
TARGETING INTRACELLULAR A-ΒETA OLIGOMERS PROMOTES NEUROGENESIS-DEPENDENT RESCUE OF HIPPOCAMPAL FUNCTION AND MEMORY IN AN ALZHEIMER'S DISEASE MOUSE MODEL
Laura Coppola, Raffaella Scardigli, Elena Fiori, Sofia Mancini, Silvia Middei, Federico La Regina, Giovanni Meli, Antonino Cattaneo
POLYPHARMACOLOGICAL MODULATION OF AGE-RELATED COGNITIVE DECLINE IN SAMP8 MICE REVEALS SEX-SPECIFIC BEHAVIOURAL PROFILES
Martina Monaco, Alessandra Pinto, Melissa Schepers, Tim Vanmierlo, Ernesto Fedele, Massimo Grilli
IMPROVING MITOCHONDRIAL BIOENERGETICS MODULATES GLIAL STATES IN ALZHEIMER’S DISEASE
Christine Quach, Max Nabi, Harry Rossiter, Luis Perez de Sevilla