Discover how Microfibrillar-associated protein 5 (MFAP5) could transform stroke treatment and brain recovery research.
Explore the molecular mechanisms behind memory persistence and forgetting, including cutting-edge research on IGF2 genes, K63 polyubiquitination, and CRISPR-based memory restoration.
Discover how Professors Yamashita and He's groundbreaking research on spinal cord regeneration earned them the 2005 Ameritec Prize and opened new pathways for paralysis treatment.
Explore the fascinating world of connexin and pannexin signaling pathways in the central nervous system and their role in brain function and disease.
Explore how ERK1/2 signaling pathways engage in cross-talk to shape neuronal communication and brain plasticity.
Discover the groundbreaking research revealing histamine's role in brain function, mood regulation, sleep cycles, and metabolism beyond its traditional allergy associations.
Explore the latest breakthroughs and challenges in axon regeneration research for the mammalian central nervous system, including spinal cord and optic nerve repair.
Discover how glial cells, once considered mere support cells, are now recognized as master conductors of brain function through myelin production and maintenance.
Exploring oxytocin's dual effects on social and non-social behavior and striatal protein expression in C57BL/6N mice
Explore Sigmund Freud's pioneering early work on the neuronal cytoskeleton, long before he developed psychoanalysis.