Semax 30mg Monthly Subscription

Original price was: $165.00.Current price is: $130.00. / month

Subscription of 3 vials for a total of 30mg is now $130.

Compound: Semax (ACTH(4–7)-Pro-Gly-Pro)
Concentration: 10mg per vial
Format: Lyophilized Powder
Chemical Classification: Synthetic Heptapeptide / ACTH-Derived Neuropeptide Analog

Chemical Profile: Semax is a synthetic seven-amino-acid peptide derived from the ACTH(4–7) sequence Met-Glu-His-Phe and extended at the C-terminus with the tripeptide Pro-Gly-Pro (PGP). This structural modification produces a defined peptide reagent that has been investigated in experimental systems involving neurotrophin-associated gene expression, intracellular signaling, peptide degradation, and neuronal stress-response pathways. Research has examined Semax-associated modulation of molecular targets including brain-derived neurotrophic factor (BDNF), nerve growth factor (NGF), and tropomyosin receptor kinase (Trk) signaling components, making it a useful probe for studying peptide-mediated regulation of neurotrophin pathways under controlled laboratory conditions.

  • Sequence: Met-Glu-His-Phe-Pro-Gly-Pro (MEHFPGP)
  • Mechanism: ACTH-derived peptide investigated for modulation of neurotrophin-associated gene expression and intracellular signaling pathways
  • Molecular Weight: ~813.9 g/mol

 

Description

Research Applications & Mechanisms:

  1. Neurotrophin Gene-Expression Research
    Semax has been investigated in experimental models for its relationship with neurotrophin-associated transcriptional activity. Studies have reported changes involving BDNF and NGF gene expression, providing a basis for controlled research into peptide-mediated transcriptional responses and the molecular regulation of neurotrophic signaling pathways.
  2. BDNF & Trk Receptor Signaling
    BDNF signaling is closely associated with tropomyosin receptor kinase B (TrkB) and downstream intracellular cascades. Semax may be utilized as a molecular probe in assays examining BDNF-related transcription, Trk receptor expression, phosphorylation events, and signaling-network responses in appropriate cellular systems.
  3. NGF-Associated Molecular Pathways
    Experimental research has also examined Semax-associated changes in nerve growth factor and related receptor pathways. Laboratory models can use the peptide to investigate how short ACTH-derived sequences influence NGF-associated transcription, receptor signaling, and downstream molecular responses under defined conditions.
  4. Cellular Stress-Response Models
    Semax has been studied in experimental systems involving cellular and metabolic stress. In controlled laboratory settings, researchers may evaluate changes in gene expression, signaling-protein activity, oxidative-response markers, and other measurable endpoints associated with cellular adaptation to defined stress conditions.
  5. Peptide Structure & Proteolytic Stability Research
    The addition of the Pro-Gly-Pro sequence to the ACTH(4–7) fragment makes Semax relevant to comparative peptide-stability research. Analytical studies may examine degradation kinetics, proteolytic susceptibility, fragment persistence, and the relationship between sequence extension and measurable molecular activity.

Important Notices:

  • Research Use Only: This product is sold strictly for scientific research, analytical testing, and laboratory development purposes.
  • Handling: The product is supplied as a lyophilized powder and should be handled using appropriate laboratory protocols for peptide stability, solubility, contamination control, and analytical preparation.
  • Visuals: Vial appearance and cap color may vary from product photos; the label quantity refers to the total active content inside the vial.

Important Legal & Safety Notice: All compounds discussed are intended for in-vitro research and analytical use only. They are not approved for human or animal consumption. Researchers are solely responsible for ensuring their handling, reconstitution, and storage protocols meet all applicable institutional, ethical, and legal standards.

 

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