Description
Product Classification: Research-Use-Only (RUO)
Total Content: 10 mg lyophilized powder per vial
Compound: Melanotan I (MT-1) research peptide
Form: Sterile lyophilized peptide compound
Purity: ≥99%
Storage: Store at −20 °C, protected from light
Packaging: Glass vial in protective sleeve
Description
MT-1 (Melanotan I) 10 mg is a melanocortin research peptide designed for laboratory investigation of melanocortin receptor signaling pathways, receptor-mediated communication systems, cellular-response mechanisms, and peptide-signaling activity. Melanotan I is frequently studied in preclinical research involving melanocortin pathway interactions, receptor signaling activity, neurobiological communication systems, and biological-response pathways. This pathway profile makes it useful for preclinical research into melanocortin biology, receptor activity, cellular communication, and peptide pathway modeling.
This compound is intended strictly for in vitro and preclinical laboratory research.
Applications
Intended for preclinical laboratory research only, including:
- Melanocortin receptor signaling studies
- Cellular communication research
- Receptor-signaling investigations
- Biological-response pathway analysis
- Peptide-signaling studies
- Neurobiological communication experiments
- Comparative melanocortin pathway research
WARNING: Not for human or animal use. For research purposes only.
SCIENTIFIC REPORT
Abstract
Melanotan I is a synthetic melanocortin research peptide investigated for its role in receptor-mediated signaling, cellular communication, peptide-signaling activity, and biological-response mechanisms. This pathway profile allows researchers to model melanocortin signaling systems in controlled experimental environments. MT-1 10 mg is designed for laboratory use in studies examining receptor activity, cellular communication, biological-response pathways, neurobiological signaling systems, and downstream cellular responses associated with melanocortin pathway activation.
Mechanistic Pathway
MT-1 is designed around melanocortin receptor pathway modeling.
- Melanocortin Receptor Pathway
- Supports research into melanocortin signaling mechanisms
- Used in receptor-signaling and biological-response pathway models
- Studied for effects on downstream signaling activity
Effect: Models melanocortin receptor activity in controlled research systems.
Cellular Communication Pathway
- Supports investigation of cellular communication mechanisms
- Used in peptide-signaling and biological-response pathway models
- Helps study pathway interactions within biological systems
Effect: Enables research into cellular communication pathway contribution to melanocortin signaling.
Biological Response Pathway
- Supports research into biological-response mechanisms
- Used in receptor-signaling and neurobiological pathway models
- Helps evaluate pathway activity within biological systems
Effect: Provides a model for biological-response pathway research.
Pharmacokinetics / Research Profile
- Compound
- Pathway
- Research Notes
- Melanotan I (MT-1)
- Melanocortin Receptor Pathways
- Synthetic melanocortin peptide model for receptor-signaling research
Dosing Models in Research
Used only in controlled in vitro and preclinical research models to study receptor signaling and biological pathway response. No human or animal-use instructions are provided.
Preclinical Research Highlights
- Studied as a melanocortin receptor signaling model involving biological-response pathways
- Used in cellular communication and peptide-signaling pathway research
- Supports comparative studies involving receptor-signaling and melanocortin pathway systems
- Relevant to cellular signaling, receptor activity, and pathway cross-talk studies
- Useful for evaluating downstream effects of melanocortin pathway activation
Conclusion
MT-1 (Melanotan I) 10 mg offers a research-use-only model for studying melanocortin receptor pathway activation. By engaging receptor-signaling, cellular communication, and biological-response pathway models, it supports advanced preclinical investigation into peptide-signaling systems, melanocortin biology, neurobiological communication, and receptor pathway research.







