Available
Semax
- Synthetic research peptide for in-vitro structure & function studies
- Independently HPLC-tested and batch-verified
- Batch-specific Certificate of Analysis included with every order
Orders before 3:00 PM are dispatched same day, tracked next-day across the UK.
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Every vial is quality-checked to ensure purity and batch-to-batch consistency.
Verified lab quality
- HPLC-tested to ≥ 99% (HPLC) purity
- Batch-specific Certificate of Analysis
- Stored under controlled laboratory conditions
Research Use Only. Not for human or veterinary use. By purchasing you confirm you are a qualified researcher and accept responsibility for safe, lawful handling.
Introduction
The study of neuroactive peptides has grown significantly over the last ten years due to the increasing interest in the study of chemical signalling molecules associated with cellular communications and neuroscience. One of such peptides is Semax, which has gained considerable attention among scientists working in laboratory conditions due to its unique composition and numerous experiments being conducted.
In the UK, research facilities, analytical laboratories and academic organizations pay more and more attention to materials with documented properties, so scientists often require a high-purity peptide with full documentation including HPLC analysis, LC-MS analysis and batch-specific COA.
This article gives an educational insight into the compound based on scientific data. The following information deals with the molecular properties, experimental uses and laboratory work only. No information is related to clinical application. All information is provided for Research Use Only.
Semax
Semax is an artificial peptide engineered using the technique of peptide engineering to study signaling pathways of biological activity that have links to neurological studies. As opposed to being a structural protein, Semax is used as a biologically active peptide that interacts with biological processes within controlled laboratory conditions.
In a controlled experimental setting, researchers look at the stability and molecular interaction of this peptide within a specific biochemical pathway through established analysis techniques. Due to the importance of maintaining peptide integrity for reproducible results, purification is highly considered before experiments are conducted.
To researchers working within a laboratory ordering from a UK peptide supplier, batch consistency becomes quite important. This enables researchers to draw comparisons in different studies and keep analytical records throughout the experiment.
Peptide science continues to grow along with molecular biology, proteomics, and analytical chemistry as interests among UK researchers increase.
How It Is Studied
The study of the peptide involves a number of laboratory techniques other than a single scientific discipline. Scientists concentrate on understanding the molecular behavior instead of making conclusions about possible medicinal applications.
Popular laboratory techniques include:
- The study of peptide stability under controlled environmental conditions.
- The examination of molecular interactions through biochemical assay systems.
- The investigation of receptor binding in the experimental model.
- The comparative analysis of different peptide lots.
- The study of protein expression and signaling pathways.
- The confirmation of the structure through laboratory equipment.
Scientists tend to use chromatographic separation along with mass spectrometry to confirm the molecular identity prior to introducing the materials into the experiment protocol. Such analysis techniques help to increase the reliability of interpreting the results of the experiment.
With further progress in peptide science, researchers work on improving the experimental models to investigate more complicated biological processes.
Scientific Characteristics
This substance is an example of synthetically designed peptides for biochemical study from the molecular point of view. The short amino acid chain in the peptide makes it appropriate for many methods that can be used for peptide studies.
This peptide is attractive for laboratory study due to several features:
Molecular Precision
Synthetic construction gives scientists an opportunity to study peptides with the known molecular structure and thus avoid some possible problems with natural compounds.
Analytical Compatibility
The peptide can be studied with well-known methods of peptide analysis such as reverse phase chromatography and mass-spectrometry.
Stability Assessment
Laboratories commonly test the stability of peptides at different temperature regimes and other environmental conditions.
Batch Reproducibility
Modern methods of peptide synthesis focus on the need for consistent manufacturing of each batch of the product.
Scientific features of the material under consideration are the reasons for choosing substances with adequate scientific literature before carrying out experiments.
Current Research Areas
While designed purely for use in laboratory experiments, this peptide remains prevalent within a number of fields of scientific study.
Fields of current interest include:
Neurobiology
Studying peptide involvement in neuronal signaling and neurotransmitter modulation.
Cellular Signalling
Conducting research on intracellular signaling and reactions resulting from peptides within laboratory models.
Peptide Chemistry
Scientific research on synthesis process, stability and purification procedures which may increase production reliability.
Molecular Pharmacology
Experimental studies of peptide actions on receptors and biochemical activity without linking it to human use.
Biomarker Research
Some laboratory studies are carried out to determine the impact of peptides on molecular indicators.
As the peptide science evolves in the UK and worldwide, new means of analysis may become available.
Research Quality & Testing
Conducting scientific research with reliability is possible only when the substance is of good quality. That is why respectable providers use many different analyses before a peptide becomes available for the research.
HPLC independent testing is widely used as a method of analyzing chromatographic purity by estimating the percentage of the target substance in relation to all other detectable impurities. This method helps researchers in receiving additional information about sample components before any experiments are conducted.
Also, LC-MS analysis helps laboratories to identify the molecule and its correct mass. Both methods provide reliable information about the provided substance and its molecular structure.
Many researchers want every produced batch to have a batch COA containing:
- Batch identification
- Analytical method
- Chromatographic purity
- Molecular identity
- Manufacture information
- Test date
- Other relevant quality control information
Availability of this information helps laboratories in conducting research and makes comparison of results from various experiments much easier.
If researchers are looking for a research peptide UK, such analytical documentation is becoming essential for them.
Laboratory Storage
Appropriate laboratory storage assists in preserving the peptide integrity during the course of scientific research studies.
Some of the general laboratory guidelines include:
- Storing the reagent as per the laboratory specifications given with the reagent itself.
- Protecting the reagent from humidity and light exposure.
- Minimizing any frequent changes in temperature whenever possible.
- Samples should be kept in properly labeled storage reagents for proper batch identification.
- The date of opening needs to be logged in the laboratory records.
- Follow the laboratory handling guidelines while preparing and analyzing the reagent.
Conclusion
With further developments in the field of peptide sciences, Semax continues to be a crucial area of study in the fields of molecular biology and biochemical research. As opposed to previous years where focus was placed on clinical uses, current research studies are focused on molecular interactions, analysis and biological processes.
In all UK laboratories, reliability is founded on the use of scientifically validated research materials that have been independently tested using HPLC and LC-MS, and backed up by Certificates of Analysis.
Research Use Only. Not for human consumption or diagnostic/therapeutic purposes.
Frequently asked questions
Yes. This product is meant for Research Use Only. It is provided for scientific investigation purposes only and not for therapeutic or clinical use.
Independent HPLC testing of peptide analysis determines purity through the use of chromatography, enabling researchers to assess the quality of material prior to starting their experimentations.
LC-MS testing verifies molecular identity via comparison of actual molecular mass to that of the predicted peptide structure.
Batch COA offers documented analytical data, which include purity data, analytical method used, batch number, etc
A highly purified peptide may minimize the level of variation in the analysis process, assisting researchers to ensure consistency in their experiments.
Technical specifications
The Semax research peptide is for use in the laboratory environment under controlled scientific study conditions. Prior to using this product in experiments, researchers must carefully check both the product label and the relevant batch documents.
| Chemical name | Semax |
| CAS number | 80714-61-0 |
| Molecular formula | C37H51N9O10S |
| Molecular weight | 810.9 g/mol |
| Purity | ≥ 99% (HPLC) |
| Form | Lyophilised powder |
| Storage | 2°C to 8°C (refrigerated), protect from light |
All specifications, including purity values and analytical test results, should be checked against the Certificate of Analysis for the specific batch supplied.
Certificate of Analysis
Every batch of Semax is independently analysed by HPLC, with mass-spec for identity. A batch-specific Certificate of Analysis is supplied with your order, confirming the exact purity of the vial you receive.
Download Semax CoA (PDF)

