Description
Cagri-Sema | Dual-Peptide Research Blend
We are proud to offer Cagri-Sema, a specialized research blend containing a precise combination of two advanced peptides: Cagrilintide (an amylin analogue) and Sema (a GLP-1 receptor agonist). This product is provided as a high-purity lyophilized powder, ensuring maximum stability and synergistic potential for sophisticated in-vitro metabolic research.
This dual-peptide blend is an invaluable tool for scientists investigating the complex interplay and synergistic effects on metabolic pathways. It is designed for laboratory studies focusing on cellular signaling related to glucose homeostasis, appetite regulation, and energy balance. By providing both compounds in a single vial, this product facilitates consistent and reproducible experiments exploring the combined actions of GLP-1 and amylin receptor agonism.
Important Notice & Disclaimer
This product is intended for laboratory research purposes only. It is not a food, drug, or cosmetic and is not intended for human or veterinary consumption. By purchasing this product, you agree that you are a qualified researcher or scientist and are purchasing it for in-vitro laboratory use. Any other use is strictly forbidden. Please handle this product in a properly equipped laboratory, using all necessary safety precautions.
Product Composition & Properties
This product is a blend of the following two peptides.
Cagrilintide Properties:
• Form: Lyophilized powder
• Unit size: 5mg/vial (Total peptides)
• Unit quantity: 1 vial
• Bottle: Vial – Flip top – Sealed
• Vial size: 3ml
• Molecular Formula: C_{163}H_{263}N_{47}O_{47}S_2
• Molecular Weight: 3671.2 g/mol
• CAS Number: 1391983-50-6
Sema Properties:
• Molecular Formula: C_{187}H_{291}N_{45}O_{59}
• Molecular Weight: 4113.6 g/mol
• CAS Number: 910463-68-2
Storage and Handling
For optimal integrity, it is recommended to store the lyophilized Cagri-Sema blend in a freezer at -20°C. Once reconstituted, the peptide solution should be stored in a refrigerator at 2-8°C and used within a short timeframe. Avoid repeated freeze-thaw cycles to maintain the stability of both components.

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