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SELANK

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Selank

Selank is a high-purity synthetic heptapeptide derived from the natural immunomodulatory molecule tuftsin. It is widely used in molecular neuroscience and psychoneuroimmunology research to investigate GABAergic signaling, serotonin pathways, stress regulation, and immune-neural interactions.
Its stability, purity, and predictable activity make it a reliable reagent for academic laboratories and peptide research programs.

Selank (Synthetic Tuftsin Analog): Neuropeptide & Neuroimmune Research Peptide

 

Product Specifications

 

  • Sequence: Thr-Lys-Pro-Arg-Pro-Gly-Pro Untitled document (11)
  • Molecular Weight: ~863 Da
  • Purity: ≥99% (HPLC verified) Untitled document (11)
  • Solubility: Sterile water or PBS
  • Storage: −20°C, protected from light and moisture
  • Use: For Research Use Only. Not for human or veterinary use

 

Description

 

Selank is a synthetic heptapeptide engineered from the naturally occurring immunomodulatory molecule tuftsin, a fragment derived from the IgG heavy chain. As a research compound, it occupies a unique position in modern neuroscience because it sits at the intersection of neurotransmitter regulation, gene-expression dynamics, and immune-system signaling, making it one of the most versatile neuropeptides available to laboratories.

 

Structurally simple, just seven amino acids, yet functionally far-reaching, Selank offers researchers a consistent and highly reproducible model for studying neurochemical balance, stress adaptation, and psychoneuroimmunology. Its high purity (≥99%, HPLC verified) and stability make it well-suited for controlled in-vitro and in-vivo laboratory systems.

 

What distinguishes Selank from many classical neuropeptides is its dual-domain mechanism: it simultaneously affects both neural and immune pathways. In neurobiological systems, it modulates GABAergic transmission, stabilizing inhibitory tone and altering receptor response patterns. This is complemented by its influence on serotonergic circuits, where studies have documented shifts in gene transcription associated with serotonin synthesis and receptor regulation. Such dual modulation gives this peptide an important role in research on emotional regulation, inhibitory control, and behavioral neuroadaptation, areas where both neurotransmitters operate in synchrony.

 

Selank also exerts measurable effects on neurotrophic factors such as BDNF, along with transcription markers that relate to synaptic plasticity and cognitive processing. These gene-level shifts allow researchers to examine how small peptides can modulate the nervous system without directly interacting with classical receptor sites, an emerging trend in peptide neurobiology.

 

On the immune side, Selank is equally intriguing. Multiple studies have shown that the peptide modulates key cytokines including IL-6, IL-10, and TNF-α, placing it at the center of research into the stress–immune axis. This positions it as a valuable tool for psychoneuroimmunology, enabling investigations into how psychological stress, infection, or inflammation influences neural function. In many experiments, it provides a bridge between immune signaling and neurochemical adaptation, allowing researchers to observe the two systems in tandem.

 

Comparison: Selank vs Semax

 

Although Selank and Semax are often grouped as “regulatory neuropeptides,” they originate from entirely different biological families and therefore behave differently in research settings. It’s a tuftsin analog, inherited from immune-system signaling, while Semax is an ACTH(4-10) analog, originating from endocrine stress pathways.

This peptide primarily influences GABA/serotonin balance and cytokine regulation, whereas Semax focuses more on BDNF expression, neuroprotection, and metabolic resilience. Both inhibit certain enkephalin-degrading enzymes, but through distinct structural domains. The two peptides complement each other but are not interchangeable.

 

Comparison: Standard Selank vs N-Acetyl / C-Amidated Selank

 

Modern laboratories now work with two major Selank variants: the standard acetate form, which preserves natural terminal charges, and the N-acetyl/C-amidated form, which neutralizes these charges. The capped form is more resistant to exopeptidases and displays higher lipophilicity, making it useful for membrane-crossing and stability studies. However, the unmodified form remains the reference standard used in most published literature.

 

Overall, it’’s multi-pathway activity, stability, and predictable performance make it a cornerstone reagent for laboratories studying inhibitory neurotransmission, gene expression, immune regulation, and neurobehavioral adaptation.

DISCLAIMER:

  • Products sold on our website are meant for scientific research purposes only, designed for in vitro testing and lab experimentation exclusively. These products are not intended to be used as foods, drugs or cosmetics, any sort of bodily introduction of the products into humans or animals is strictly prohibited.
  • All the products you see on the website are being sold as a freeze dried powder, in a sealed sterile vial; and should be reconstituted.
    The product’s label clearly states the amount of product a vial contains; some products are offered in different variations.
  • The products we are selling come in a sealed vial but require additional lab equipment for proper testing.
  • Though we make sure packaging, label, seals and writing does not differ from the product photos you see on our website, there is a chance for a minimal deviation.

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IMPORTANT LEGAL NOTICE – PLEASE READ

The products on this website are for legitimate research use only. They are not intended to prevent, treat, or cure any illness or disease and are not intended for human consumption. By accessing this site, you acknowledge that you are at least 21 years of age, understand these terms, and have a legitimate research basis for buying these products **NOTE: All of our compounds are sold individually, and DO NOT include research supplies such as bacteriostatic water or syringes. Most are sold in powder form and require reconstitution with a suitable diluent solution prior to research.

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