Adamax 984 is a supplier-designated synthetic Semax-related research peptide identified by a reported molecular mass of approximately 984 Da. It is supplied as a lyophilized powder in 5 mg and 10 mg vials, with 10 vials per kit. Because public naming and structural assignments for this form are not standardized, identity should be confirmed against the lot-specific COA and mass-spectrometry record. For laboratory research use only.
Adamax 984 does not yet have a directly established mechanism in peer-reviewed research. It is discussed as a Semax-related peptide, but structural similarity alone does not establish the same potency, stability, tissue distribution, or biological response.
The Semax peptide core has been studied in experimental models involving neurotrophic-gene expression, monoamine signaling, and stress-response pathways. Those findings provide assay context only. They should not be presented as confirmed Adamax 984 effects unless the tested material has been analytically identified and the response has been demonstrated in the relevant model.
The reported 984 Da mass is primarily an identity marker. Terminal chemistry, counter-ions, adducts, hydration, and the mass-reporting method can affect how a laboratory result is displayed, so comparisons should use deconvoluted neutral mass and a defined reference method.
This product is supplied as a lyophilized powder. Unopened vials can be stored at room temperature for up to 2 years when kept sealed, dry, and protected from light. Avoid excessive heat, moisture, and repeated temperature changes during storage.
After reconstitution, store the solution at 2-8°C, protected from light, and use it within 30 days. Label the vial with the reconstitution date. Use sterile handling, avoid vigorous shaking and repeated freeze-thaw cycles, and do not use the material if the seal is damaged or if persistent particles, unexpected cloudiness, or discoloration is present after dissolution.
They are supplier-designated forms with different reported molecular masses and should be treated as separate analytical materials. The number is not the amount of peptide in the vial. Do not substitute one for the other in a validated experiment without requalifying the method.
Check the lot-specific COA for an identity test based on mass spectrometry and a purity test based on HPLC or an equivalent validated method. Compare the deconvoluted neutral mass, not only a single charged ion or chromatogram peak.
Small amounts of lyophilized peptide can form a thin cake, film, or light residue on the vial wall or base. This appearance alone does not determine the labeled mass. Use the batch documentation and an appropriate quantitative method when mass confirmation is required.
Add the selected laboratory solvent slowly down the vial wall, then swirl gently and allow the vial to stand. Do not shake vigorously. If visible material remains after reasonable equilibration, document the solvent, volume, temperature, and lot number and contact support before using it in an assay.
Quarantine the vial and do not use it in an experiment. Confirm that the solvent and container were appropriate, then record photographs, lot number, preparation date, and handling conditions for review.
Divide the labeled mass in one vial by the added solvent volume. A 5 mg vial reconstituted with V mL has a nominal concentration of 5/V mg/mL; a 10 mg vial has a nominal concentration of 10/V mg/mL. Reconstitution volume does not confirm purity or recovered mass.
Not automatically. Their different molecular masses and possible structural differences can change retention time, ionization, fragmentation, and recovery. Validate identity, system suitability, and acceptance criteria separately for each form.
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