Selank 30mg Monthly Subscription

$130.00 / month

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

Compound: Selank (Tuftsin-Derived Heptapeptide)
Concentration: 10mg per vial
Format: Lyophilized Powder
Chemical Classification: Synthetic Heptapeptide / Tuftsin Analog

Chemical Profile: Selank is a synthetic seven-amino-acid peptide derived from tuftsin-associated peptide research. Its sequence, Thr-Lys-Pro-Arg-Pro-Gly-Pro (TKPRPGP), incorporates the tuftsin-derived tetrapeptide Thr-Lys-Pro-Arg followed by the tripeptide Pro-Gly-Pro. Experimental research has examined Selank in molecular systems involving neurotransmission-associated gene expression, GABAergic signaling, cytokine regulation, and peptide-mediated transcriptional responses. Its defined heptapeptide structure provides researchers with a molecular probe for studying interactions between short regulatory peptides and intracellular signaling networks under controlled experimental conditions.

  • Sequence: Thr-Lys-Pro-Arg-Pro-Gly-Pro (TKPRPGP)
  • Mechanism: Tuftsin-derived regulatory peptide investigated for modulation of neurotransmission-associated and immune-related gene-expression pathways
  • Molecular Weight: ~751.9 g/mol

Description

Research Applications & Mechanisms:

  1. GABAergic Signaling & Gene-Expression Research
    Selank has been investigated in experimental models examining genes associated with GABAergic neurotransmission. Research has evaluated changes involving GABA receptor-related genes, transporters, ion channels, and other components of neurotransmission pathways, providing a framework for studying how short regulatory peptides may influence GABA-associated molecular signaling.
  2. Neurotransmission-Associated Transcriptional Regulation
    Laboratory research has examined Selank in relation to broader gene-expression networks involved in neurotransmission. Cell-based assays may evaluate transcriptional changes across receptor, transporter, ion-channel, and signaling-protein genes to characterize peptide-associated modulation of neuronal signaling pathways under controlled conditions.
  3. GABA Receptor Interaction Models
    In-vitro research using cultured cell systems has explored whether Selank influences interactions involving GABA and GABA-associated receptor pathways. These models allow researchers to investigate receptor-associated signaling, ligand interactions, transcriptional responses, and downstream molecular changes without extending conclusions beyond the experimental system.
  4. Cytokine & Immune-Signaling Gene Expression
    Selank and related peptide fragments have been investigated in studies examining expression of genes associated with cytokines, chemokines, and their receptors. These findings make the peptide relevant to controlled research into transcriptional regulation within immune-signaling networks and the molecular relationship between short peptide sequences and cytokine-associated pathways.
  5. Peptide Fragment & Structure-Activity Research
    The Pro-Gly-Pro region of Selank has been examined alongside the full heptapeptide in comparative experimental models. Researchers may use these sequences to study how peptide length, individual residues, and structural fragments influence transcriptional activity, molecular stability, and signaling-associated responses.

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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