Semax
£19.50
| Quantity | Price | Discount |
|---|---|---|
| 2 | £18.53 | 5% |
| 3-4 | £17.55 | 10% |
| 5+ | £16.58 | 15% |
- Purity: ≥99% (HPLC)
- Batch-controlled manufacturing
- Secure packaging for laboratory handling
- Storage: Store lyophilised powder frozen for long-term stability.
- Following preparation in accordance with laboratory protocols, store solutions refrigerated (2– 8 °C).
- Research use only (not for human or veterinary use)
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- Purity: ≥99% (HPLC)
- Batch-controlled manufacturing
- Secure packaging for laboratory handling
- Storage: Store lyophilised powder frozen for long-term stability.
- Following preparation in accordance with laboratory protocols, store solutions refrigerated (2– 8 °C).
- Research use only (not for human or veterinary use)
The brain relies on an intricate network of signalling molecules to coordinate communication between billions of neurons. Semax has become a recognised laboratory research peptide within this field, appearing in studies exploring neuropeptide signalling, neuroplasticity and molecular neuroscience.
As researchers continue to investigate the biological mechanisms that regulate communication within the central nervous system, Semax remains an important subject of laboratory research across multiple areas of neuroscience.
Key Research Areas
- Neuropeptide signalling
- Neuroplasticity
- Neurotrophic factor biology
- Molecular neuroscience
Originally developed as a synthetic peptide derived from a fragment of adrenocorticotropic hormone (ACTH), Semax has attracted sustained scientific interest because of its relevance to laboratory investigations examining neuronal communication and molecular signalling. Its well-characterised structure has made it a recognised research peptide across a broad range of neuroscience studies.
Rather than being investigated within a single biological pathway, Semax has featured in experimental studies exploring neuropeptide biology, intracellular signalling and neurotrophic factor regulation. This multidisciplinary research profile has established Semax as a recognised laboratory research peptide within contemporary neuroscience.
One of the principal reasons Semax remains an important subject of scientific investigation is its association with neuropeptide signalling. Neuropeptides act as chemical messengers throughout the nervous system, influencing how neurons communicate and coordinate complex physiological processes.
Understanding these signalling pathways continues to be a major objective of neuroscience research. Experimental studies involving Semax have therefore explored the molecular mechanisms responsible for neuronal communication and peptide-mediated signalling.
Closely connected to this work is the study of neuroplasticity. The nervous system continually adapts in response to internal and external stimuli through changes in neuronal connections and signalling networks.
Researchers continue to investigate the biological processes that support these adaptive mechanisms, with Semax appearing in laboratory studies examining neuronal organisation, signalling pathways and cellular communication.
Scientific interest in Semax also extends to neurotrophic factor biology. Neurotrophic factors are proteins involved in supporting neuronal development, maintenance and communication, making them an important area of experimental neuroscience.
Understanding how these signalling molecules contribute to normal nervous system function remains an active area of laboratory research, with Semax continuing to feature in studies exploring molecular regulation and neuronal physiology.
What distinguishes Semax from many other laboratory research peptides is its close association with fundamental neuroscience. Rather than focusing on a single biological pathway, it has become relevant to investigations spanning neuropeptide biology, molecular signalling, neuroplasticity and neurotrophic factor research.
This broad scientific profile continues to make Semax a recognised laboratory research peptide for scientists seeking to better understand the biological systems that regulate communication within the nervous system.
This overview introduces Semax as a laboratory research peptide and highlights the scientific areas in which it continues to be investigated.
Chemical name: Semax (ACTH analogue; Met-Glu-His-Phe-Pro-Gly-Pro)
Synonyms: Semax; ACTH(4–7) Pro-Gly-Pro; MEHFPGP
Peptide length: 7 amino acids (heptapeptide)
Sequence (1-letter): MEHFPGP
Sequence (3-letter): Met-Glu-His-Phe-Pro-Gly-Pro
Molecular formula: C37H51N9O10S
Molecular weight: 813.92 g/mol
CAS: 80714-61-0
Form: Lyophilised (freeze-dried) powder
Appearance: White to off-white solid
This product is supplied strictly for laboratory research purposes. It is not intended for human consumption or veterinary use and is not marketed for the diagnosis, treatment, cure, mitigation, or prevention of any disease or medical condition. No directions for personal use are provided or implied. The purchaser is responsible for ensuring compliant handling, storage, and use in accordance with applicable laws and regulations.
Certificate of Analysis for Semax — verifying purity, identity, and quality.

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