High-Purity Selank Peptide (CAS 129954-34-3) for Nootropic and Anxiolytic Use
Discover the advanced properties of Selank, a synthetic peptide for enhanced cognitive function and anxiety relief.
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Selank Peptide
Selank is a synthetic heptapeptide that serves as a potent nootropic and anxiolytic agent. Developed by Russian scientists, it is a synthetic analogue of the human tetrapeptide tuftsin, renowned for its therapeutic potential in improving cognitive functions and alleviating anxiety symptoms. This product is characterized by its high purity, supplied as a white powder, making it a key compound in pharmaceutical research and development.
- Explore the benefits of a synthetic analogue of tuftsin for potential cognitive enhancement and anxiety reduction.
- Learn about the high purity Selank powder, crucial for reliable research outcomes in the pharmaceutical sector.
- Understand the development of this anxiolytic peptide drug by leading Russian research institutions.
- Investigate the applications of Selank peptide for anxiety, a compound with promising neuroprotective effects.
Advantages Offered by the Product
Exceptional Purity
Ensuring the highest standards with Selank peptide for anxiety, achieving purity levels of over 99% for dependable research and application.
Advanced Nootropic Properties
Experience the cognitive benefits of this peptide with sequence Thr-Lys-Pro-Arg-Pro-Gly-Pro, supporting mental clarity and focus.
Anxiolytic Efficacy
Utilize Selank as a powerful anxiolytic peptide drug, helping to manage stress and promote a sense of calm.
Key Applications
Nootropic Enhancement
Leverage Selank peptide for its nootropic capabilities, aiding in memory, learning, and concentration for a competitive edge.
Anxiety Management
Employ Selank for its anxiolytic effects, providing a natural approach to reduce feelings of worry and nervousness.
Pharmaceutical Research
Utilize this high purity Selank powder as a critical pharmaceutical intermediate in the development of new therapeutic agents.
Neuroscience Studies
Incorporate the peptide with sequence Thr-Lys-Pro-Arg-Pro-Gly-Pro into neuroscience studies to understand its impact on brain function.