- Description
- Benefits
- Risks
- Additional information
- Research
Description
N-Acetyl Semax Amidate is a structurally modified analogue of Semax, engineered to enhance stability, bioavailability, and resistance to enzymatic degradation in research environments. It is studied in laboratory settings for its role in cognitive signalling, neuroprotection, and central nervous system (CNS) pathway research.
This modified version incorporates N-acetylation and amidation, which are commonly used peptide modifications to improve molecular stability and extend activity duration, making it suitable for longer-term experimental studies.
In controlled research settings, N-Acetyl Semax Amidate is investigated for its interaction with neurotransmitter systems, brain-derived neurotrophic factor (BDNF), and neuroendocrine signalling pathways, particularly in studies focused on cognitive performance, neural plasticity, and stress-response mechanisms.
Across Ireland and Europe, this peptide is commonly studied in areas such as:
- Cognitive function and memory research
- Neurotransmitter and CNS signalling pathways
- Neuroprotection and neural plasticity
- Neuroendocrine and stress-response research
This product is supplied as a high-purity research peptide, intended strictly for scientific and laboratory use.
Disclaimer: This product is strictly for research purposes only and is not for human consumption.
Technical Information – N-Acetyl Semax Amidate
| Specification | Details |
|---|---|
| Product Name | N-Acetyl Semax Amidate |
| Compound Type | Modified synthetic peptide (Semax analogue) |
| Functional Class | Neuroregulatory peptide |
| Modifications | N-acetylation and amidation |
| Mechanism of Action | Modulates neurotransmitter and neurotrophic signalling pathways |
| Biological Targets | CNS pathways, BDNF, neurotransmitter systems |
| Format | Lyophilised powder |
| Purity | Research-grade (high purity) |
| Storage | Refrigerated (2–8°C, protected from light) |
| Application | Laboratory research use only |
* Images for illustration purposes only
Researched Benefits & Focus Areas – N-Acetyl Semax Amidate
1. Enhanced Cognitive Signalling Research
N-Acetyl Semax Amidate has been studied for:
- Modulation of cognitive pathways related to learning and memory
- Investigation of neural processing and information retention mechanisms
- Analysis of brain signalling efficiency
Reference basis: Derived from neuropharmacology research examining Semax analogues and cognitive signalling pathways.
2. Neurotrophic Factors & Neural Plasticity
Research has explored:
- Interaction with brain-derived neurotrophic factor (BDNF) pathways
- Role in synaptic plasticity and neural adaptation
- Influence on neural growth and connectivity
Reference basis: Based on studies investigating neuropeptides and neurotrophic signalling systems.
3. Improved Stability & Extended Activity
This modified peptide is designed for:
- Increased resistance to enzymatic degradation
- Enhanced stability in experimental environments
- Support for extended-duration research models
Reference basis: Supported by pharmacological research into peptide modification techniques such as acetylation and amidation.
4. Neuroprotection & Stress Response Research
- Studied for its role in neural protection under stress conditions
- Explored in oxidative stress and resilience models
- Investigated for adaptation to neurological stressors
Reference basis: Derived from research into neuroprotective peptides and CNS stress-response pathways.
Disclaimer: These are research-based findings only. This product is not intended for human use or consumption.
Researched Benefits & Focus Areas – N-Acetyl Semax Amidate
1. Enhanced Cognitive Signalling Research
N-Acetyl Semax Amidate has been studied for:
- Modulation of cognitive pathways related to learning and memory
- Investigation of neural processing and information retention mechanisms
- Analysis of brain signalling efficiency
Reference basis: Derived from neuropharmacology research examining Semax analogues and cognitive signalling pathways.
2. Neurotrophic Factors & Neural Plasticity
Research has explored:
- Interaction with brain-derived neurotrophic factor (BDNF) pathways
- Role in synaptic plasticity and neural adaptation
- Influence on neural growth and connectivity
Reference basis: Based on studies investigating neuropeptides and neurotrophic signalling systems.
3. Improved Stability & Extended Activity
This modified peptide is designed for:
- Increased resistance to enzymatic degradation
- Enhanced stability in experimental environments
- Support for extended-duration research models
Reference basis: Supported by pharmacological research into peptide modification techniques such as acetylation and amidation.
4. Neuroprotection & Stress Response Research
- Studied for its role in neural protection under stress conditions
- Explored in oxidative stress and resilience models
- Investigated for adaptation to neurological stressors
Reference basis: Derived from research into neuroprotective peptides and CNS stress-response pathways.
Disclaimer: These are research-based findings only. This product is not intended for human use or consumption.
Additional information
| Weight | 23 kg |
|---|---|
| Dimensions | 12 × 23 × 56 cm |
| Quantity | 1 Vial, 1 Kit (10 Vials) |

