Neuro-signaling research
Selank
Lyophilized neuro-signaling research peptide
Selank is a tuftsin analog research peptide discussed in anxiety-model, immune-neuroendocrine, stress-response, and neurotransmission literature.
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Get catalog updatesAlleen voor laboratoriumonderzoek. Niet voor menselijk of diergeneeskundig gebruik. Niet bedoeld voor het diagnosticeren, behandelen, genezen, verzachten of voorkomen van ziekten.
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Verpakt voor stabiliteit tijdens het transport, met bestelondersteuning beschikbaar voor routes bij warm weer.
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Onderzoekscontext
Selank onderzoeksprofiel
Selank is a synthetic analog of the immunomodulatory peptide tuftsin. Experimental literature examines stress-response and behavioral models, GABAergic signaling hypotheses, gene expression, immune-neuroendocrine interaction, and selected neurotransmitter pathways. It is commonly compared with Semax, but the two compounds come from different parent sequences and should not be treated as interchangeable neuropeptides. Selank is most relevant to projects that specifically investigate tuftsin-derived signaling or the overlap between neural and immune responses. The evidence base includes preclinical work and limited regional human studies, so conclusions should remain tied to the original methods rather than translated into broad claims about anxiety, cognition, or personal use.
Molecular class
Seven-residue tuftsin analog
Sequence / composition
- T
- K
- P
- R
- P
- G
- P
Defined amino-acid chain, shown in standard one-letter notation.
Research design note
Its tuftsin lineage supports comparison with neuroimmune and stress-response systems rather than ACTH-derived peptides.
Voorgesteld mechanisme
A synthetic analog of the tuftsin sequence. Proposed mechanisms include modulation of GABAergic signaling and receptor expression, effects on monoamine systems, immune-neuroendocrine communication, inflammatory mediators, and transcriptional responses to stress.
In studies gerapporteerde effecten
- Animal studies report anxiolytic-like behavioral effects, changes in stress responses, and altered neurotransmitter or gene-expression markers.
- Preclinical work reports immune and inflammatory modulation consistent with its tuftsin-derived lineage.
- Human findings are limited and regionally concentrated, with insufficient independent evidence for broad clinical claims.
Veelgebruikte onderzoekseindpunten
GABA receptor and neurotransmitter markers, anxiety-related behavioral tests, stress hormones, cytokines, immune-cell measures, gene expression, cognition tasks, and pharmacokinetics.
Bewijs en beperkingen
Evidence is mainly preclinical with limited human studies. A defined primary receptor and broadly replicated human outcomes have not been established.
External reading
Literature for context—not product proof.
Third-party sources describe their own research materials and methods. They do not validate a specific Azure catalog batch.
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