Publication | Open Access
Galectin-1 induces astrocyte differentiation, which leads to production of brain-derived neurotrophic factor
67
Citations
30
References
2003
Year
Cell DeathNeuroinflammationEpendymaAutophagyNew MechanismNeurologyNeuropathologyCell SignalingBrain-immune InteractionNeuroprotectionNeurodegenerationCell BiologyNeurodegenerative DiseasesBdnf ProductionNeuroscienceMolecular NeurobiologyMedicineBrain-derived Neurotrophic FactorNeural Stem Cell
Brain-derived neurotrophic factor (BDNF) is a neuroprotective polypeptide that is thought to be responsible for neuron proliferation, differentiation, and survival. An agent that enhances production of BDNF is expected to be useful for the treatment of neurodegenerative diseases. Here we report that galectin-1, a member of the family of beta-galactoside binding proteins, induces astrocyte differentiation and strongly inhibits astrocyte proliferation, and then the differentiated astrocytes greatly enhance their production of BDNF. Induction of astrocyte differentiation and BDNF production by an endogenous mammalian lectin may be a new mechanism for preventing neuronal loss after injury.
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