Melanotan-2 10MG
$49.99
CAS Number:
121062-08-6
Formula:
C
14
H
22
N
4
O
9
Sequence:
Ac-Nle-cyclo [Asp-His-D-Phe-Arg-Trp-Lys]-NH2
Molar Mass:
1,024.18 g/mol
Class:
Peptide
Storage:
Keep refrigerated upon reconstitution.
Furthermore, researchers utilize Melanotan-2 10mg to investigate the complex signaling pathways of the melanocortin system. This 10mg lyophilized vial offers a stable format for studying how synthetic analogs interact with MC1, MC3, MC4, and MC5 receptors. Specifically, the peptide acts as a non-selective agonist that mimics the effects of alpha-melanocyte-stimulating hormone. Consequently, this provides a robust model for observing the regulation of pigmentation and energy homeostasis at a cellular level.
Metabolic and Photobiological Research
Moreover, this peptide serves as a primary tool for researchers exploring the pathways of photoprotection and metabolic regulation. Therefore, scientists can observe how the activation of MC4 receptors influences appetite suppression and fatty acid oxidation in laboratory models. Conversely, while natural hormones have a short half-life, this cyclic heptapeptide analog offers enhanced stability for longitudinal studies. Thus, it remains a fundamental focal point for research regarding skin cell resilience and systemic metabolic signaling.
EliteBiogenix Quality and Storage Standards
Finally, our laboratory ensures that every Melanotan-2 10mg batch undergoes rigorous independent testing to confirm a purity level of 99% or higher. Consequently, you can achieve reproducible experimental data without concerns regarding peptide degradation or chemical impurities.
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Purity: ≥99% verified through HPLC and Mass Spectrometry.
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Format: Lyophilized white powder for long-term stability.
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Storage: Store at -20°C and protect from light to maintain the integrity of the peptide bonds.
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Important Technical Specifications
Note on Reconstitution: This peptide is highly acidic. Consequently, it requires .1-1% Acetic Acid for proper reconstitution.
Please be aware that cloudiness or clumping may occur because the molecules are "intrinsically disordered." Furthermore, this physical characteristic is a natural property of the molecule.

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