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Selank Peptide Vial Lyophilisate For Lab Research
Selank
Overview
Selank is a synthetic heptapeptide derived from tuftsin, a naturally occurring immunomodulatory peptide. Originally developed by researchers at the Institute of Molecular Genetics of the Russian Academy of Sciences, Selank has been extensively investigated for its effects on neurochemical signaling, stress response pathways, and cognitive function.
In research settings, Selank is primarily studied for its interactions with neurotransmitter systems, including GABAergic, serotonergic, and dopaminergic pathways. Experimental investigations suggest that the peptide may influence neural plasticity, emotional regulation, memory formation, and adaptive responses to stress.
Due to its unique mechanism and favorable safety profile observed in preclinical and clinical research, Selank remains an important compound in studies focused on neurobiology, cognition, and central nervous system regulation.
Mechanism of Action
Selank is believed to exert its effects through modulation of multiple neurotransmitter and neuroregulatory systems rather than acting as a direct receptor agonist.
Proposed Mechanisms
✓ Modulation of GABAergic neurotransmission
✓ Regulation of serotonin and dopamine signaling
✓ Influence on stress-response pathways
✓ Support of neuroplasticity and neural adaptation
✓ Modulation of inflammatory cytokine activity in experimental models
✓ Potential effects on brain-derived neurotrophic factor (BDNF) expression
Research suggests that Selank may help regulate the balance between excitatory and inhibitory neural activity, making it a valuable tool for studying anxiety-related behaviors, cognitive performance, and neurochemical homeostasis.
Important: Proposed mechanisms are based on published experimental and clinical research. Ongoing investigation continues to clarify the precise molecular pathways involved.
Research Applications
Selank is commonly studied in the following research areas:
Cognitive Research
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Learning and memory processes
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Information retention
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Attention and focus mechanisms
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Cognitive performance studies
Neurobiology
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Neurotransmitter regulation
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Neural signaling pathways
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Synaptic plasticity
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Brain adaptation mechanisms
Stress & Anxiety Research
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Stress-response regulation
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Behavioral adaptation models
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Emotional processing pathways
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Neuroendocrine signaling
Neuroprotection Studies
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Cellular resilience
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Oxidative stress response
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Neuroinflammatory pathways
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Brain health biomarkers
Immunomodulatory Research
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Cytokine regulation
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Immune-neural interactions
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Tuftsin-derived peptide mechanisms
Technical Specifications
| Property | Value |
|---|---|
| Peptide Name | Selank |
| Alternative Name | Tuftsin Analog |
| Molecular Weight | ~751.9 Da |
| Amino Acid Length | 7 amino acids |
| Sequence | Thr-Lys-Pro-Arg-Pro-Gly-Pro |
| Molecular Formula | C33H57N11O9 |
| Appearance | Lyophilized powder |
| Purity | ≥99% (batch dependent) |
| Research Grade | For laboratory research use only |
Stability & Storage
Lyophilized Peptide
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Store at -20°C for long-term stability
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Protect from light and moisture
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Avoid repeated freeze-thaw cycles
Reconstituted Solution
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Store at 2–8°C
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Use according to laboratory handling protocols
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Maintain sterile research conditions
Stability Notes
As a short-chain peptide, Selank may undergo gradual degradation when exposed to elevated temperatures, moisture, or repeated freeze-thaw cycles. Proper storage conditions are essential for maintaining peptide integrity and experimental consistency.
Reported Half-Life
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Approximately 5–10 minutes in plasma according to experimental pharmacokinetic studies
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Biological effects may persist beyond plasma clearance due to downstream neurochemical modulation
Selected Research References / PubMed Keywords
Researchers interested in exploring the scientific literature may use the following PubMed search terms:
Recommended Keywords
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Selank
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Selank peptide
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Selank anxiety research
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Selank cognitive function
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Selank GABA modulation
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Selank neurotransmitter regulation
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Tuftsin analog neurobiology
Areas Covered in Published Literature
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Anxiolytic peptide research
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Cognitive enhancement studies
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Neurotransmitter regulation
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GABAergic signaling
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Stress adaptation mechanisms
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Neuroimmune interactions
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Clinical and preclinical neurobiology research
Researchers should consult peer-reviewed literature and PubMed databases for the latest findings and experimental data.
Research Use Only Disclaimer
FOR RESEARCH USE ONLY
This product is intended exclusively for laboratory research by qualified professionals.
This product:
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Is not approved for human use
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Is not approved for veterinary use
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Is not intended to diagnose, treat, cure, or prevent any disease
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Is not a dietary supplement
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Must not be used in clinical applications
The information provided is for educational and research purposes only and reflects findings from published scientific literature. Experimental results obtained in vitro, animal models, or limited human research may not predict outcomes in broader populations.