Cagrilintide – High-Purity Research Peptide
Cagrilintide is an amylin-based analog studied for its potential influence on appetite regulation, metabolic balance, gastric emptying, and weight-related physiological pathways. GeoPeptides provides ≥99% purity Cagrilintide to support advanced academic and preclinical research requiring accurate, consistent peptide characterization.
Research Overview
Cagrilintide has gained major interest in metabolic and endocrine research due to its ability to mimic endogenous amylin-related signaling. Studies suggest involvement in satiety pathways, caloric intake models, and delayed gastric emptying. Because amylin-base peptides impact nutrient sensing and energy balance, Cagrilintide is widely used in research exploring weight modulation, appetite-related behaviors, and combination-mechanism metabolic studies.
Potential Research Benefits
- Satiety Signaling – researched for its influence on hunger perception and caloric intake patterns.
- Metabolic Balance – explored within models of nutrient sensing and energy regulation.
- Gastric Emptying – studied for delayed digestion and regulated gastric movement behaviors.
- Weight-Related Pathways – investigated for potential involvement in weight-management research.
- Endocrine & Appetite Research – used in studies of hormonal signaling and appetite dynamics.
Why Researchers Choose GeoPeptides
GeoPeptides is committed to delivering high-purity, U.S. manufactured research peptides backed by strict quality control. Each vial undergoes independent third-party testing to verify identity and purity. With fast, discreet shipping and reliable support, researchers trust GeoPeptides to deliver the accuracy their work depends on.
Product Details
- Compound: Cagrilintide
- Form: Lyophilized Powder
- Purity: ≥99%
- Appearance: White powder
- Packaging: 10mg vial
- Storage: Store at -20°C, protected from light and moisture
Scientific Applications
Cagrilintide is a versatile research peptide used in studies examining appetite control, energy expenditure, metabolic regulation, gastric motility, and weight-associated physiology. Its structural stability and hormonal relevance make it a valuable tool for ongoing research in metabolic science, endocrine signaling, and appetite regulation models.
CAS & Technical Data
- CAS: 2105043-22-4
- Molecular Formula: C₂₆₅H₄₄₀N₇₈O₇₉S₂
- Molecular Weight: 6097.3 g/mol
- Appearance: White to off-white powder