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Selank

Nootropic Compound

$39.00

Quantity

Research Use Only

These products are for laboratory research only and not intended for medical use. They are not FDA-approved to diagnose, treat, cure, or prevent any disease. By purchasing, you certify they will be used solely for research and not for human or animal consumption.

What is Selank?

Selank is a synthetic peptide analog of tuftsin studied for its influence on neurological signaling pathways. In laboratory research, it is examined for its interaction with cognitive processes, neuroplasticity mechanisms, and stress-related biomarkers, including neurotransmitter modulation and inflammatory signaling responses.

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Selank Overview
Selank is a synthetic heptapeptide analog of tuftsin, a naturally occurring immunomodulatory fragment derived from immunoglobulin G (IgG). In laboratory and preclinical models, it is investigated for its role in neurotransmitter regulation, stress-response pathways, and immune signaling systems. Research commonly examines its involvement in GABAergic activity, monoamine metabolism, and cytokine balance within experimental environments.

History
Selank was developed during the 1990s at the Institute of Molecular Genetics of the Russian Academy of Sciences as a stabilized analog of tuftsin designed to enhance biological stability and activity. Early research explored its immunomodulatory and stress-related biological effects, which later expanded into investigations involving neuropeptide signaling, cognitive function, and immune system regulation in laboratory models.

Selank Structure

CAS #: 129954-34-3
Molecular Formula: C₃₄H₅₇N₁₁O₉
Molecular Weight: 751.9 g/mol
PubChem ID: 56841944

Research Findings

Selank has been investigated in neurological, immune, and systemic research models, with studies examining its interaction with neuropeptide signaling pathways, stress-response mechanisms, and immune regulation systems. Research also explores its involvement in neurotransmitter modulation, cytokine activity balance, and protective cellular responses within preclinical experimental settings.

Key Areas of Research:

  • Neurological: Neurotransmitter activity, stress-response signaling, neural pathways
  • Immune: Cytokine regulation, immune signaling modulation
  • Systemic: Cellular protection, recovery processes, biological resilience

Together, these observations indicate broad experimental relevance for Selank across neurological, immune, and systemic biological systems. Through its interaction with neurotransmitter pathways and immune signaling mechanisms, Selank provides a useful framework for laboratory research investigating stress biology, immune balance, and systemic physiological stability.

Description

Selank Overview
Selank is a synthetic heptapeptide analog of tuftsin, a naturally occurring immunomodulatory fragment derived from immunoglobulin G (IgG). In laboratory and preclinical models, it is investigated for its role in neurotransmitter regulation, stress-response pathways, and immune signaling systems. Research commonly examines its involvement in GABAergic activity, monoamine metabolism, and cytokine balance within experimental environments.

History
Selank was developed during the 1990s at the Institute of Molecular Genetics of the Russian Academy of Sciences as a stabilized analog of tuftsin designed to enhance biological stability and activity. Early research explored its immunomodulatory and stress-related biological effects, which later expanded into investigations involving neuropeptide signaling, cognitive function, and immune system regulation in laboratory models.

Selank Structure

CAS #: 129954-34-3
Molecular Formula: C₃₄H₅₇N₁₁O₉
Molecular Weight: 751.9 g/mol
PubChem ID: 56841944

Research Findings

Selank has been investigated in neurological, immune, and systemic research models, with studies examining its interaction with neuropeptide signaling pathways, stress-response mechanisms, and immune regulation systems. Research also explores its involvement in neurotransmitter modulation, cytokine activity balance, and protective cellular responses within preclinical experimental settings.

Key Areas of Research:

  • Neurological: Neurotransmitter activity, stress-response signaling, neural pathways
  • Immune: Cytokine regulation, immune signaling modulation
  • Systemic: Cellular protection, recovery processes, biological resilience

Together, these observations indicate broad experimental relevance for Selank across neurological, immune, and systemic biological systems. Through its interaction with neurotransmitter pathways and immune signaling mechanisms, Selank provides a useful framework for laboratory research investigating stress biology, immune balance, and systemic physiological stability.

Additional information

Pcs

Pack of 10, Single Vial

Strength

10mg

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