GLP3 Retatrutide 10mg

$150

Description

GLP3-RETA (LY-3437943) – 10 MG (Approximately 1 Month Supply)

GLP3-RETA (LY-3437943) is a research-use-only peptide analog designed to interact with GLP-1, GIP, and glucagon receptor pathways. This compound is under investigation in metabolic research settings focused on obesity, type 2 diabetes, and related metabolic disorders.

Key Features:

  • Triple-pathway incretin research analog for advanced metabolic studies
  • Lyophilized for stability and dosing accuracy
  • QC verified for sequence fidelity and batch purity

Product Details:

  • Contents: 10 MG GLP3-RETA research peptide
  • Appearance: White to off-white lyophilized powder
  • Formula: C221H342N46O68
  • M.W.: ~4731.3 g/mol
  • CAS #: 2381089-83-2
  • Storage: Store at −20 °C; protect from moisture and light
  • Intended Use: For laboratory research use only

Note: Not for human or veterinary use. For in-vitro research only.

In stock

Categories: ,

Retatrutide (GLP3-Reta) 10mg — Research Peptide (Multi-Receptor Agonist Analog)

Contains: Retatrutide

Class: Synthetic peptide studied as a multi-receptor agonist interacting with GLP-1, GIP, and glucagon receptor pathways


Research Focus (non-clinical):
• GLP-1, GIP, and glucagon receptor signaling interactions in metabolic models
• Energy balance and nutrient metabolism pathway markers
• Glucose regulation signaling and insulin-related pathway activity
• Appetite-regulation signaling and neuroendocrine pathway markers
• Multi-pathway receptor agonism and downstream metabolic effects


Notes for Investigators:
Retatrutide (GLP3-Reta) is a synthetic peptide investigated in experimental models for its activity across multiple metabolic receptor pathways, including GLP-1, GIP, and glucagon receptors. In laboratory settings, it is utilized to study the combined effects of multi-receptor agonism on metabolic signaling, energy regulation, and glucose-related pathways. Researchers examine its role in coordinating complex endocrine responses and its impact on interconnected metabolic systems within controlled research environments.


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