DIHEXA
$ 70
Synaptogenic Cognitive Research Peptide
Dihexa is a peptide-derived compound studied for its role in synaptic formation, cognitive signaling, and neuronal repair pathways. Developed as a metabolically stabilized analog of angiotensin IV, Dihexa has become a major focus in laboratory environments examining memory formation, neuroplasticity, and age-related cognitive decline.
Because of its interaction with the hepatocyte growth factor HGF and c-Met signaling system, Dihexa is frequently investigated in research models related to Alzheimer’s disease, dementia, impaired memory, and the loss of neuronal connectivity associated with neurodegenerative conditions.
This compound is supplied at >99% purity and is independently third-party lab tested to verify identity and analytical standards.
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Description
Scientific Background
Dihexa has been evaluated in preclinical and experimental settings for its interaction with HGF/c-Met signaling and synaptic repair pathways. Research models have examined its potential influence on:
- Synaptogenesis and the formation of new neuronal connections
- Hippocampal dendritic spine development
- Learning, memory, and cognitive performance models
- HGF/c-Met pathway activation research
- Neuronal repair and neuroplasticity signaling
- Age-related cognitive decline and dementia research
- Alzheimer’s disease-related loss of synaptic connectivity
In controlled environments, Dihexa has been explored for its potential role in restoring synaptic connectivity and supporting cognitive function in models of neurological impairment. Its ability to penetrate the blood-brain barrier and promote synaptogenic activity has made it an especially promising research compound for investigating Alzheimer’s disease, dementia, memory loss, and other conditions involving progressive cognitive decline.
Peer-reviewed publications indexed through the National Library of Medicine include investigations into Dihexa and related angiotensin IV analogs for their influence on synaptogenesis, neuronal connectivity, learning, memory, and cognitive recovery under laboratory conditions.
References available upon request for laboratory review.
Why Researchers Select DIHEXA
- Studied for synaptogenesis and neuronal connectivity models
- Investigated for memory and cognitive performance research
- Explored for Alzheimer’s disease and dementia-related pathways
- Evaluated for neuroplasticity and neuronal repair signaling
- Designed for blood-brain barrier penetration
- Compatible with structured laboratory protocols
Product Specifications
- 99% purity – independently lab tested
- Supplied as high-quality lyophilized powder
- Requires reconstitution prior to laboratory use
- Bacteriostatic water required for mixing (sold separately)
- Swirl gently to dissolve — do not shake
- Ensure full dissolution before handling
Storage Guidelines
- Store lyophilized vial in freezer conditions until use
- Maintain 2–8°C and protect from light
- Refrigerate after reconstitution
- Use within standard laboratory handling timeframes
Research Use Notice
For laboratory research purposes only. Not for human consumption, therapeutic, or veterinary use.
Additional information
| Dosage | 10MG |
|---|
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