EXOSOME-MEDIATED TFEB DELIVERY ENHANCES AUTOPHAGY IN ALZHEIMER’S DISEASE
Sungkyunkwan University
Presentation
Date TBA
Event Information
Poster Board
PS05-09AM-200
Poster
View posterAbstract
Impaired autophagy-lysosomal function is a central feature of Alzheimer’s disease (AD), driving amyloid accumulation, neuroinflammation, and progressive synaptic dysfunction. Transcription factor EB (TFEB), a key regulator of autophagy and lysosomal biogenesis, represents a promising target to restore proteostasis in AD. Here, we developed TFEB-loaded exosomes, including an exosome-based photo-inducible TFEB delivery system, to enable targeted and temporally controllable TFEB release. TFEB-loaded exosomes enhanced autophagy flux in PTF-LC3/SH-SY5Y cells, demonstrating increased RFP signals and activation of lysosomal pathways. In vivo, intranasally administered TFEB-loaded exosomes reduced amyloid plaque burden in both 5xFAD and ApoE4 hAPP knock-in mouse models. In the ApoE4 hAPP model, treatment decreased microglial colocalization with amyloid plaques, enhanced astrocytic responses, and attenuated neuroinflammatory markers, accompanied by partial improvements in memory performance. In the 5xFAD model, TFEB-exosome treatment induced molecular signatures consistent with autophagy activation, although cognitive improvements did not reach statistical significance, indicating model-specific differences in therapeutic responsiveness. Across both models, plaque reduction was robust and consistent, supporting autophagy-mediated clearance mechanisms. These findings demonstrate that TFEB-loaded exosomes effectively restore autophagic function and mitigate amyloid pathology, highlighting their potential as a therapeutic platform for AD. Further refinement of dosing, delivery route, and temporal control will be essential to maximize translational applicability and define optimal therapeutic windows.
Recommended posters
ENGINEERED EXOSOMES WITH A PHOTOINDUCIBLE PROTEIN DELIVERY SYSTEM ENABLE CRISPR-CAS BASED EPIGENOME EDITING IN ALZHEIMER’S DISEASE
Jonghoon Jeong, Han Jihoon, Jo Dong-gyu
ASTROCYTE-DERIVED EXOSOMAL SIGNALLING INDUCES PATHOLOGICAL NEURONAL TRANSCRIPTIONAL RESPONSES IN ALZHEIMER’S DISEASE
Komal Bana, Manjari Tripathi, Faheem Arshad, Anant Chaudhary, Sachin Suresh Tiwari
EXOSOME-MEDIATED DELIVERY OF PARKIN RESCUES MITOCHONDRIAL DYSFUNCITON IN PARKINSON’S DISEASE
Chanhee Kim, Dong-Gyu Jo
BDNF RECEPTOR DYSREGULATION IN ALZHEIMER'S-DISEASE: EXTRACELLULAR VESICLE-MEDIATED TRANSPORT OF A SYNAPTOTOXIC TRKB FRAGMENT
Tiago Costa-Coelho, João Fonseca-Gomes, Mafalda Ferreira-Manso, Sara Inteiro-Oliveira, Catarina B Ferreira, Carolina de Almeida-Borlido, Juzoh Umemori, Tiago M Rodrigues, Sandra H Vaz, Eero Castrén, Ana M Sebastião, Alexandre de Mendonça, Dora Brites, Maria José Diógenes
E2F4-BASED GENE THERAPY RESTORES LONG-TERM POTENTIATION AND MEMORY FORMATION AND BLOCKS NEURONAL DEATH IN AN ALZHEIMER MOUSE MODEL
Cristina Sánchez-Puelles, Alicia Hernández-Vivanco, Alberto Fraj-Cebrián, Vanesa Cano-Daganzo, Gertrudis Perea, José María Frade
E2F4 IN ALZHEIMER’S DISEASE: A PROMISING THERAPEUTIC TARGET SHAPING SYNAPTIC AND COGNITIVE FUNCTION
Alberto Fraj Cebrián, Cristina Sánchez-Puelles, Alberto Garrido-García, Vanesa Cano-Daganzo, Lorena Valdés-Lora, José Mª Frade