Image 1 of 1
MT2 10mg - Melanotan - Lyophilized Powder (Research Grade)
MT2 10mg Lyophilized Powder (Research Grade)
This premium research-grade peptide formulation is prepared as a highly purified, sterile lyophilized powder designed exclusively for controlled in vitro laboratory evaluation. Each 10mg vial is manufactured to rigorous analytical standards, ensuring structural stability, chemical uniformity, and high reproducibility across sensitive experimental workflows.
Melanotan-2 (MT2) is a synthetic, cyclic heptapeptide analog of alpha-Melanocyte-Stimulating Hormone ($\alpha$-MSH). Engineered with a lactam ring bridge structure, it features a significantly enhanced metabolic half-life and distinct receptor affinity profiles compared to linear analogs. Within biochemistry, pharmacology, and neurobiology research settings, it serves as a specialized chemical tool for investigating multi-receptor cross-reactivity across melanocortin receptor subtypes (MC1R, MC3R, MC4R, and MC5R).
Key Research Applications:
Cyclic Peptide Structural Dynamics: Applied in structural biology assays to study how lactam-based conformational restriction alters peptide binding stability and enzymatic cleavage resistance in vitro.
Melanocortin Receptor Profiling: Frequently utilized in cell culture lines to evaluate competitive binding kinetics and signal transduction pathways across distinct melanocortin receptor subtypes simultaneously.
Downstream Metabolic Signaling: Investigated within laboratory metabolic models to monitor intracellular cyclic adenosine monophosphate (cAMP) accumulation and downstream signaling networks involved in central energy balance and cellular homeostatic mechanisms.
This product is structurally verified and vacuum-sealed under sterile conditions to preserve maximum chemical integrity during laboratory handling and storage.
Important Notice: For In-Vitro Laboratory Research Use Only. This product is a raw chemical reagent intended exclusively for evaluation by trained professionals. Not for human or animal consumption, therapeutic, or diagnostic use.
MT2 10mg Lyophilized Powder (Research Grade)
This premium research-grade peptide formulation is prepared as a highly purified, sterile lyophilized powder designed exclusively for controlled in vitro laboratory evaluation. Each 10mg vial is manufactured to rigorous analytical standards, ensuring structural stability, chemical uniformity, and high reproducibility across sensitive experimental workflows.
Melanotan-2 (MT2) is a synthetic, cyclic heptapeptide analog of alpha-Melanocyte-Stimulating Hormone ($\alpha$-MSH). Engineered with a lactam ring bridge structure, it features a significantly enhanced metabolic half-life and distinct receptor affinity profiles compared to linear analogs. Within biochemistry, pharmacology, and neurobiology research settings, it serves as a specialized chemical tool for investigating multi-receptor cross-reactivity across melanocortin receptor subtypes (MC1R, MC3R, MC4R, and MC5R).
Key Research Applications:
Cyclic Peptide Structural Dynamics: Applied in structural biology assays to study how lactam-based conformational restriction alters peptide binding stability and enzymatic cleavage resistance in vitro.
Melanocortin Receptor Profiling: Frequently utilized in cell culture lines to evaluate competitive binding kinetics and signal transduction pathways across distinct melanocortin receptor subtypes simultaneously.
Downstream Metabolic Signaling: Investigated within laboratory metabolic models to monitor intracellular cyclic adenosine monophosphate (cAMP) accumulation and downstream signaling networks involved in central energy balance and cellular homeostatic mechanisms.
This product is structurally verified and vacuum-sealed under sterile conditions to preserve maximum chemical integrity during laboratory handling and storage.
Important Notice: For In-Vitro Laboratory Research Use Only. This product is a raw chemical reagent intended exclusively for evaluation by trained professionals. Not for human or animal consumption, therapeutic, or diagnostic use.