Semax
Semax is a synthetic regulatory peptide studied and used for its nootropic, neuroprotective, and neuro-restorative properties. It acts on the central nervous system without triggering unwanted hormonal side effects
$169.99
Dosage
Fast Free Shipping
Shipment Protection
10mg
Size
HPLC≥99%
Purity
Lyophilized Powder
Form


TECHNICAL SPECIFICATIONS
Protocol Information
Semax
CAS Number
Molecular Formula
Molecular Weight
80714-61-0
C₃₇H₅₁N₉O₁₀
813.9 g/mol
Stability Info
Lyophilized Powder
35° - 46° F
Reconstituted
35° - 46° F
KNOWLEDGE BASE
Lyophilized Powder
Lyophilized peptides are produced through a freeze-drying process that removes moisture to help maintain molecular stability during storage. Peptides may be supplied in either liquid or lyophilized powder form, depending on the formulation and intended use. Lyophilized presentations can offer superior structural preservation and higher potency by removing moisture that causes degradation.

Semax
Semax is investigated as a peptide-based research tool for examining neuropeptide signaling, transcriptional modulation, intracellular communication pathways, and regulatory peptide activity within central nervous system research models. In preclinical research environments, Semax has been studied for its influence on neurotrophic signaling pathways, transcription-associated regulatory mechanisms, and peptide-mediated intracellular communication networks. Its stabilized peptide structure allows researchers to investigate signaling specificity and molecular pathway interactions within controlled laboratory systems. Scientific interest in Semax continues to expand due to its utility in neuropeptide research and intracellular signaling investigations. Researchers frequently utilize Semax to examine regulatory peptide activity, transcriptional communication pathways, and central nervous system-associated molecular signaling networks within controlled laboratory environments. Current areas of scientific investigation include neuropeptide signaling pathway analysis, transcriptional regulation studies, intracellular peptide communication research, central nervous system signaling investigations, regulatory peptide pathway analysis, and molecular signaling network research.
Peptide products offered through this platform are provided for informational and research purposes or are made available only pursuant to evaluation and authorization by a licensed healthcare provider, where applicable. These products are not intended to diagnose, treat, cure, or prevent any disease. Individual results may vary. Use of any peptide product should be conducted under appropriate professional supervision. All content provided is for educational purposes only and should not be considered medical advice. Always consult with a qualified healthcare professional before beginning any new wellness or medical program.
