Targeting the GLP-1, GIP, and glucagon receptors, retatrutide (GLP-3 RT) 10mg is a triple-receptor agonist that is delivered as a high-purity research peptide in a lyophilized solid for stability. Verified at >99.1% purity (HPLC-tested) with COA documentation, it is investigated in models of metabolic health, glycaemic control, and weight management. solely for use in research.
Retatrutide (GLP-3 RT) is a novel research peptide investigated for its potential in weight management, glycaemic regulation, and metabolic health. Classified as a GLP-1/GIP/glucagon triple receptor agonist, it has attracted attention in preclinical studies for its ability to influence appetite suppression, energy balance, and glucose metabolism.
Supplied in lyophilised (freeze-dried) form to preserve stability, this compound is verified at >99.1% purity (HPLC-tested) and provided with full Certificates of Analysis (COAs).
Retatrutide is a synthetic peptide designed to act on three key metabolic pathways: GLP-1, GIP, and glucagon receptors. This mechanism is being explored for its potential role in regulating caloric intake, supporting glucose balance, and promoting efficient fat metabolism.
All Bluewell Peptides products are strictly intended for laboratory research use only and are supplied with full COA verification for transparency.
Product Name: Retatrutide (GLP-3 RT) 10mg
Catalogue Number: BWP-RETA-10
CAS Number: 2381089-83-2
Molecular Formula: C₂₂₁H₃₄₂N₄₆O₆₈
Molecular Weight: 4731.33 g/mol
Form: Lyophilised Solid
Purity: >99.1% (HPLC Verified)
Storage: Store at −20°C, protected from light
Unit Size: 10mg
Retatrutide is supplied as a lyophilised solid for long-term stability. For laboratory use, it may be reconstituted with bacteriostatic water or another suitable solvent according to research protocols. For detailed handling guidance, please refer to our peptide reconstitution page.
Also available in Retatrutide GLP-3 RT 30mg Peptide and Retatrutide GLP-3 RT 20mg Peptide
Retatrutide has been investigated in preclinical and laboratory studies for its potential influence on:
Weight Management – Explored for roles in appetite suppression, reduced caloric intake, and body fat composition.
Glycaemic Control – Studied for its effects on glucose regulation through incretin pathways.
Metabolic Health – Researched for its potential to enhance energy expenditure and improve metabolic efficiency.
References available on request or through our research archive.
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