EFFECT OF NEURAL EXTRACELLULAR VESICLES ON THE MODULATION OF CELL SURVIVAL DURING AGING
Centro de Biología Molecular Severo Ochoa (CBM-CSIC)
Presentation
Date TBA
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Poster Board
PS04-08PM-055
Poster
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Proteomic analysis by mass spectrometry revealed that embryonic EVs are enriched in peptides associated with receptor tyrosine kinase (RTK) signaling, anti-inflammatory responses, and protein synthesis. Notably, among the neurotrophic factors identified, brain-derived neurotrophic factor (BDNF) and insulin were found to be stably associated with the external surface of the vesicles and displayed remarkable stability in activating their respective receptors. Phosphoproteomic profiling of EV-treated cells identified CaMKIIα as a central signaling node, with downstream targets involved in microtubule stabilization, synaptic plasticity, and membrane–cytoskeleton interactions.
Consistent with these molecular findings, embryonic cortex-derived EVs—but not EVs isolated from the cortex of aged mice—significantly enhanced microtubule stability and mitochondrial respiratory capacity in aged neurons. Collectively, these results demonstrate the robust neuroprotective properties of EVs derived from the embryonic mouse cortex and provide insight into the molecular mechanisms underlying their protective effects.
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