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Selank

Selank
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Certificate of Analysis

Each batch is tested by an independent third-party laboratory. Certificate of Analysis is available upon request.

What is Selank?

What is Selank?

Selank is a synthetic peptide analog of tuftsin, studied for its effects on neurological pathways. Research focuses on its role in cognitive function, neuroplasticity, and stress-related biomarkers, including neurotransmitter modulation and inflammatory response regulation.

Frequently asked questions

Are your products tested?
Yes, all products are tested by third-party laboratories to ensure purity and potency.

What is the shipping time?
Orders ship same day from our facility and typically arrive within 5–10 business days.

Do you offer bulk pricing?
Please contact us for bulk order inquiries.

Made in China

Peptides are precision-synthesized and lyophilized at state-of-the-art laboratories.

Made in China

Selank Overview

Selank is a synthetic heptapeptide analog of tuftsin, a natural immunomodulatory fragment of IgG. It is studied in preclinical and laboratory models for its influence on neurotransmitter regulation, stress response pathways, and immune signaling. Research has examined Selank’s role in modulating GABAergic activity, monoamine metabolism, and cytokine balance.

Ashmarin I.P. et al. (1998).

History

Selank was developed at the Institute of Molecular Genetics of the Russian Academy of Sciences in the 1990s as a synthetic analog of tuftsin, modified for improved stability and activity. Early studies explored its immunomodulatory and anxiolytic properties, leading to broader investigations of its effects on neuropeptide signaling, cognitive processes, and systemic immune regulation in preclinical models.

Zozulya A.A. et al. (2008).

Selank Structure

CAS #: 129954-34-3

Molecular Formula: C₃₄H₅₇N₁₁O₉

Molecular Weight: 751.9 g/mol

PubChem ID: 56841944

Research Findings

Selank has been studied in neurological, immune, and systemic models, with research highlighting its role in neuropeptide signaling, stress response, and immune regulation. Studies also report activity in neurotransmitter modulation, cytokine balance, and protective responses in preclinical settings.

Key Areas of Research:

• Neurological: neurotransmitters, stress response, signaling

• Immune: cytokine balance, regulation, modulation

• Systemic: protection, recovery, resilience

Together, these findings suggest broad experimental potential for Selank across neurological, immune, and systemic pathways. By modulating neurotransmitter activity and supporting immune balance, Selank provides a versatile platform for research into stress biology, immune regulation, and systemic resilience in laboratory models.

Inozemtsev A.N. et al., 2008