/ WHAT YOU WILL RECEIVE
Real photographs of your peptides, boxed, lot-labeled, and shipped in plain unmarked packaging from our partner research lab.
More batch photos and lab footage coming soon.
PEPTIDE SEQUENCE · STRUCTURE NOTE
Hexanoyl-Tyr-Ile-(6)-aminohexanoic-amide
Modified hexapeptide angiotensin-IV analog. BBB-permeable in published animal research.
⏱ HALF-LIFE · PHARMACOKINETIC PROFILE
Hexapeptide angiotensin-IV analog (subcutaneous)
Several hours (SC)
Subcutaneous injection. BBB-permeable in published research.
Nootropics · RESEARCH GRADE
Dihexa
10mg · Lyophilized Vial
Dihexa 10mg · hexapeptide angiotensin-IV analog. One of the most potent investigated nootropics for neurogenesis, memory consolidation, and synaptogenesis in animal models.
UNIT PRICE
$34 USD
≈ CA$47
Reconstitution required
This compound requires bacteriostatic water for reconstitution. Don't forget to add a 10mL vial of BAC water to your order, available in Lab Supplies.
HOW LONG WILL IT LAST YOU?
Enter your research protocol and vial quantity — see exactly how many weeks your order covers.
Each 10mg vial lasts
3.3 days
Your 10mg vial lasts
3.3days
≈ 3 days · 3.3 doses per vial
FOR RESEARCH USE ONLY
Not for human consumption. Intended for laboratory and in-vitro research applications./ RESEARCH DOSSIER
Everything we know
about Dihexa.
Direct from the research literature. Every section is sourced from peer-reviewed peptide studies and clearly labelled when effects come from animal or cell-line models.
/ 01 · WHAT WE KNOW
The background.
Dihexa (N-hexanoic-Tyr-Ile-(6) aminohexanoic amide) is a hexapeptide developed at Washington State University as a stable analog of angiotensin IV. In published research it has been reported to be roughly seven orders of magnitude more potent than BDNF at promoting new synapse formation in hippocampal neurons in animal models, making it one of the most potent investigated cognitive enhancers.
/ 02 · WHAT IT DOES FOR YOU
What researchers study it for.
Researchers investigate Dihexa for accelerated neurogenesis, dendritic spine formation, learning and memory consolidation, and recovery from traumatic brain injury and Parkinsonian models. It binds the HGF/c-Met receptor system rather than acting on classic neurotransmitter pathways, which explains its distinctive synaptogenic profile.
RESEARCH HIGHLIGHTS · published animal & cell-model studies
- ▸Memory consolidation enhancement in rodent maze models
- ▸Cognitive recovery after traumatic brain injury in animal models
- ▸Reversal of Parkinsonian-deficit-like cognitive impairment in rats
Sourced from peer-reviewed research literature. Effects described are from animal & cell-line models unless otherwise noted. For research use only.
/ 03 · HOW IT WORKS
Mechanism of action.
Biological pathways identified in the research literature for Dihexa.
Binds the HGF / c-Met receptor system
Promotes new dendritic spine and synapse formation in hippocampal neurons
Reported ~10⁷x more potent than BDNF at synaptogenesis in animal studies
/ 04 · OVERVIEW & CLASSIFICATION
Classification.
Dihexa. Hexapeptide angiotensin-IV analog. Investigated as one of the most potent known synaptogenic compounds in animal models.
TYPE
Modified hexapeptide (angiotensin IV analog)
DERIVATION
Synthetic, developed at Washington State University.
STRUCTURE
N-hexanoic-Tyr-Ile-(6) aminohexanoic amide. BBB-permeable in published research.
/ 05 · PHARMACOLOGICAL PROFILE
Pharmacology.
HALF-LIFE
Several hours (subcutaneous)
ABSORPTION
Subcutaneous injection. BBB-permeable.
DISTRIBUTION
Hippocampus and cortex primary
/ 06 · DOSAGE & RECONSTITUTION
Research dosing protocols.
/ 07 · PAIRS WELL WITH
Researched stacks.
Compounds explored alongside Dihexa in the published literature.
Dihexa + Cerebrolysin
Cerebrolysin supplies broad BDNF/NGF-mimetic peptide substrate while Dihexa drives c-Met-receptor-mediated synaptogenesis. A complementary mechanism in cognitive-recovery research.
/ 08 · SAFETY PROFILE
Safety notes.
- ▸Generally well-tolerated in published rodent literature
- ▸Very limited long-term human safety data
- ▸Investigative stage. Not approved for human consumption.
Research use only · not for human consumption · always consult published literature before designing any research protocol.