Semax 10MG

$50.00

Semax 10 mg is a synthetic heptapeptide research peptide supplied exclusively for controlled laboratory, analytical, and scientific investigation. Semax has the sequence Met-Glu-His-Phe-Pro-Gly-Pro (MEHFPGP) and is derived from the ACTH(4-7) peptide region with an added Pro-Gly-Pro sequence. Within peptide research, Semax is studied in experimental models involving neuropeptide signaling, gene-expression pathways, BDNF-associated molecular mechanisms, cellular stress responses, and peptide structure-function characterization. This laboratory research peptide is intended strictly for research use only.

Description

Semax 10 mg is a synthetic heptapeptide research material designed for controlled laboratory and analytical investigation. Structurally, Semax consists of the amino acid sequence Met-Glu-His-Phe-Pro-Gly-Pro and is commonly described as an ACTH(4-7)-derived peptide analog extended with a Pro-Gly-Pro sequence. This defined molecular structure makes Semax relevant to peptide research examining neuropeptide signaling, peptide stability, molecular interactions, and structure-function relationships under controlled experimental conditions.

Within structured laboratory peptide research, Semax 10 mg may be evaluated in experimental models involving neurotrophin-associated signaling, BDNF-related molecular pathways, gene-expression responses, cellular stress signaling, oxidative-stress research models, peptide-mediated cellular communication, comparative neuropeptide characterization, and analytical method development. Research literature has examined Semax in a range of preclinical molecular and cellular systems, but such research applications should not be interpreted as evidence of therapeutic, clinical, cognitive, or consumer-use outcomes.

NexBio supplies Semax 10 mg as part of its peptide research supply catalog with an emphasis on clear product identification, batch traceability, research-only designation, and available analytical documentation. Researchers should review the applicable product label, batch identifier, stated specifications, and Certificate of Analysis where available before incorporating this laboratory research peptide into an established experimental protocol. Any reported purity, sequence, molecular identity, or analytical specification should be confirmed against documentation associated with the applicable batch.

Research Applications

Semax 10 mg may be utilized in laboratory peptide research activities including:

  • Neuropeptide signaling research
  • ACTH-derived peptide characterization
  • BDNF-associated pathway investigation
  • Neurotrophin signaling studies
  • Gene-expression research models
  • Cellular stress-response investigation
  • Oxidative-stress research models
  • Peptide structure-function analysis
  • Comparative neuropeptide characterization
  • Molecular interaction studies
  • Analytical method development
  • Controlled laboratory peptide research

Research applications may vary according to experimental design, analytical methodology, laboratory protocols, institutional requirements, research model, and individual study objectives.

Storage & Handling

To help maintain research material integrity:

  • Store according to the conditions stated on the product label or applicable batch documentation.
  • Keep Semax 10 mg in its original labeled container until required for laboratory research.
  • Protect from excessive heat, direct light, moisture, contamination, and unnecessary environmental exposure.
  • Minimize repeated or unnecessary handling that could affect peptide integrity.
  • Use appropriate laboratory techniques to reduce contamination risk.
  • Maintain clear sample and batch identification throughout research workflows.
  • Follow institutional safety procedures and product-specific documentation during storage and handling.

Quality Assurance

Semax 10 mg is supplied under quality-focused procedures designed to support peptide identification, specification consistency, batch traceability, and research transparency. Applicable analytical review may include identity assessment, purity evaluation, sequence or molecular characterization where documented, batch verification, and supporting laboratory records. A Certificate of Analysis (COA) or related batch-specific analytical record may be available for the applicable lot.

Any statement regarding purity percentage, peptide sequence, molecular identity, analytical methodology, or other testing specifications should be verified using the corresponding batch documentation.

Additional Information

Specification Details
Product Name Semax 10 mg
Compound Name Semax
Peptide Sequence Met-Glu-His-Phe-Pro-Gly-Pro (MEHFPGP)
Peptide Length 7 Amino Acids
Chemical Formula C₃₇H₅₁N₉O₁₀S
Molecular Weight Approximately 813.9 g/mol
Product Type Synthetic Heptapeptide Research Material
Presentation 10 mg
Peptide Classification ACTH(4-7)-Derived Research Peptide Analog
Research Classification Research Use Only (RUO)
Research Category Neuropeptide and Molecular Signaling Research
Research Focus Neuropeptide Signaling, Gene Expression, Neurotrophin-Associated Pathways, and Molecular Characterization
Related Research Entities ACTH(4-7), BDNF, Neurotrophin Signaling, Cellular Stress Response
Research Environment Controlled Peptide Laboratory Research
Intended Use Laboratory Research and Analytical Testing
Documentation Batch Analytical Documentation Where Available

Research Use Disclaimer

FOR RESEARCH USE ONLY (RUO).

Semax 10 mg is supplied exclusively for laboratory research, analytical testing, and scientific investigation purposes.

This product is not intended for human or veterinary administration, clinical use, therapeutic use, diagnosis, treatment, cure, mitigation, or prevention of any disease or medical condition.

This research material is not offered or represented by NexBio as a finished drug product, therapeutic treatment, cognitive-enhancement product, dietary supplement, or consumer-use product. By purchasing this material, the buyer acknowledges that it is intended solely for appropriately controlled research environments and must be handled in accordance with applicable laboratory procedures, institutional requirements, product documentation, and laws.

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