Semax

Price range: $43.00 through $53.00

Semax is a synthetic peptide studied for its interaction with neuropeptide signaling pathways and is examined in research focused on central nervous system activity and cognitive-related signaling mechanisms. It’s used in research to study neuronal communication, receptor signaling, and cellular response within controlled experimental models. Semax is third-party tested for purity, product level, and correct compound identity. It’s for research purposes only and not for human or veterinary use. It’s designed for researchers, laboratories, and educators requiring a consistent peptide for their controlled neuro and signaling studies. Semax is used in structured models involving neuronal signaling, receptor pathways, cellular communication, and central nervous system response. Not intended to diagnose, treat, cure, or prevent any disease.

SKU: ESP-SMX Category: Tags: , , ,

Additional information

Weight 0.02 lbs
Strength

5mg, 10mg

Compound

Form

Lyophilized powder

Storage

• Avoid repeated freeze–thaw cycles during laboratory handling, • For extended storage, sub-zero laboratory conditions may be utilized prior to reconstitution, • In research environments, refrigerated conditions (2–8°C / 36–46°F) are commonly used after reconstitution

Compliance

For laboratory, analytical, and educational research only

Notice

Not intended to diagnose, treat, cure, or prevent any disease

Key Features

● For research use only – Only intended for laboratory, analytical, and educational research. Not a drug, supplement, or medical product.

 ● Third-party tested – Each batch is checked by an independent lab 3x to confirm (1) purity, (2) the labeled amount (mass), and (3) the correct compound (identity).

 ● Studied in neuropeptide and neuronal signaling models – Appears in research examining how cells respond to signaling pathways within central nervous system models under controlled conditions.

 ● Studied in receptor activation and signaling pathways – Research explores how Semax interacts with receptor-mediated mechanisms in experimental models.

 ● Studied in cellular communication and response models – Used in controlled research settings to observe changes in signaling pathways related to neuronal activity and cellular response.

 ● Studied in central nervous system signaling models – Included in studies examining how signaling pathways respond within neuro-related systems.

 ● Referenced in neuro-signaling and cellular communication research – Appears in experimental research focused on how cellular systems respond to changes in signaling activity within the nervous system.

 ● Free shipping on orders over $150

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