
Key Benefits
Identified in ResearchPromotes Synaptogenesis: It stimulates the physical creation of new brain synapses and dendritic spines. This builds a denser network for cellular communication.
Improves Learning and Memory: Animal testing indicates it aids in memory consolidation, acquisition, and retrieval. It has successfully reversed cognitive deficits in damaged rat models.
Potent Neuroregeneration: In lab assays, it exhibits neurotrophic activity. It performs seven orders of magnitude more potently than Brain-Derived Neurotrophic Factor (BDNF).
Crosses the Blood-Brain Barrier: Its specific chemical structure allows it to effectively pass from the bloodstream into the central nervous system. This gives it high biological availability.
Crosses the Blood-Brain Barrier: Its specific chemical structure allows it to effectively pass from the bloodstream into the central nervous system. This gives it high biological availability.
Fights Neuroinflammation: Studies indicate it helps lower pro-inflammatory cytokines like IL-1β and TNF-α. Simultaneously, it boosts anti-inflammatory markers like IL-10.
How It Works
Unlike traditional brain stimulants that briefly manipulate neurotransmitter amounts, Dihexa acts as a HGF (Hepatocyte Growth Factor) mimetic. According to scientific reports from groups like the Alzheimer’s Drug Discovery Foundation, it binds with high affinity to c-Met receptors on neurons. This action kicks off a cascade of signaling pathways that repair neural tissue, prompt cell division, and establish structural updates to your neural architecture.