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Cagrilintide Peptide
2 for 1 active nowCAS #: 1415456-99-3
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Research Use Only
All products are intended solely for laboratory research and are not for human or animal consumption. By purchasing, the buyer agrees to use these products in compliance with all applicable laws.
Cagrilintide Peptide Overview
Cagrilintide peptide is a synthetic, long-acting analog of the naturally occurring peptide amylin. Cagrilintide is studied in laboratory and preclinical models for its ability to activate target receptor pathways, contributing to the characterization of endocrine and neuroendocrine signaling. Research has examined its role in modulating downstream signaling cascades, receptor binding kinetics, and systemic pathway dynamics.
Related receptor-signaling research materials in the Medicina Labs catalog include GLP1-S and GLP3-R.
For identity and receptor pharmacology, see What Is Cagrilintide?
History
Research into amylin biology began in the late 20th century with its identification as a pancreatic peptide co-secreted with insulin. Native amylin was found to activate specific receptor pathways but was limited by rapid degradation. Cagrilintide was later developed as a stabilized analog with prolonged target activity, providing a research tool for studying calcitonin receptor family signaling and endocrine cross-talk in experimental systems.
Cagrilintide Structure
CAS #: 1415456-99-3
Molecular Formula: C194H312N54O59S2
Molecular Weight: 4409.0 g/mol
PubChem ID: 171397054
Research Findings
Cagrilintide has been studied in endocrine, signaling, and systemic models, with research highlighting its role in receptor binding pharmacology, downstream cascades, and pathway characterization. Studies also report activity in amylin receptor signaling, endocrine markers, and signaling homeostasis in preclinical and experimental settings.
Key Areas of Research:
- Signaling: Receptor binding, cascades, dynamics
- Endocrine: Amylin pathways, downstream markers
- Systemic: Signaling homeostasis, calcitonin receptor/RAMP complexes, viability
Together, these findings suggest broad experimental potential for Cagrilintide across signaling, endocrine, and systemic pathways. By engaging amylin receptor biology and influencing downstream signaling cascades, Cagrilintide provides a versatile platform for research into receptor pharmacology, pathway characterization, and systemic dynamics in laboratory settings.
Our Process
Precision Lyophilization
Each batch is freeze-dried and sealed for stability until reconstitution.
Verified Purity
Every batch is third-party tested with HPLC and mass spectrometry.
Careful Fulfillment
Orders ship within 24 hours from our U.S. facility.
