Cortagen Alternatives
Explore peptides similar to Cortagen. Compare mechanisms, effects, and find the best alternative for your research.
Cortagen
Bioregulators
A tetrapeptide bioregulator (Ala-Glu-Asp-Pro) derived from cerebral cortex extracts. Studied for neuroprotection, neural differentiation, and cognitive support. Regulates neurotrophic signaling and synaptic stability.
Similar Peptides
Pinealon
Bioregulators
A synthetic tripeptide bioregulator targeting brain tissue. Part of Khavinson's peptide research, designed to support cognitive function and neuroprotection.
Livagen
Bioregulators
A tetrapeptide bioregulator (Lys-Glu-Asp-Ala) developed by Khavinson that modulates chromatin structure and gene expression. Research shows it can decondense heterochromatin and activate ribosomal genes, potentially restoring more youthful gene expression patterns in aging cells.
Ovagen
Bioregulators
A tripeptide bioregulator (Glu-Asp-Leu) targeting liver and gastrointestinal tissue. Derived from liver tissue extracts, Ovagen modulates gene expression related to detoxification, antioxidant defense, and hepatocellular repair.
Vesugen
Bioregulators
A tripeptide bioregulator (Lys-Glu-Asp) targeting vascular tissue. Promotes restoration of blood vessel tissues and normalization of vascular function. Stimulates endothelial cell proliferation markers.
Chonluten
Bioregulators
A tripeptide bioregulator targeting respiratory and lung tissue. Supports healthy lung function and stomach lining. Regulates inflammatory and proliferative processes in respiratory epithelium.
Crystagen
Bioregulators
A tripeptide bioregulator supporting immune system function. Demonstrates age-associated immunoprotective properties in spleen tissue. Part of the Khavinson synthesized peptide series.
All Bioregulators Peptides
Livagen
A tetrapeptide bioregulator (Lys-Glu-Asp-Ala) developed by Khavinson that modulates chromatin structure and gene expression. Research shows it can decondense heterochromatin and activate ribosomal genes, potentially restoring more youthful gene expression patterns in aging cells.