(rel)-AM-6226
(rel)-AM-6226 is the relative stereoisomer of AM-6226 (HY-120493A). AM-6226 is a potent, orally active full agonist of G protein-coupled receptor 40 (GPR40) with an EC50 value of 0.12 μM. AM-6226 activates GPR40 receptors on pancreatic β-cells and enteroendocrine L-cells, promotes insulin secretion in a glucose-dependent manner, and increases the release of incretin hormones (GLP-1, GIP), thus avoiding the risk of hypoglycemia. AM-6226 can be used in the research of metabolic diseases such as diabetes.
For research use only. We do not sell to patients.
- CAS No.: 1142222-28-3
- Formula: C32H36F2O4
- Molecular Weight:522.62
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Storage:
Please store the product under the recommended conditions in the Certificate of Analysis.
Biological Activity
Description
Chemical Information
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CAS No. 1142222-28-3
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Molecular Weight 522.62
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Formula C32H36F2O4
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SMILES
CC1([C@@H](CCC1)C2=C(C3=CC(OC)=CC=C3F)C=CC(COC4=C(C([C@H](CC)CC(O)=O)=CC=C4)F)=C2)C
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Shipping
Room temperature in continental US; may vary elsewhere.
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Storage
Please store the product under the recommended conditions in the Certificate of Analysis.
Protocols
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Research Protocol for Endocrine Diseases
Endocrine diseases often arise from disrupted hormone production, hormone signaling, or target-tissue responsiveness; for diabetes-focused endocrine disease models, insulin signaling regulates glucose uptake, hepatic glucose output, lipid metabolism, and β-cell compensation. Type 2 diabetes develops through interacting defects in insulin resistance, β-cell dysfunction, adipose inflammation, hepatic glucose overproduction, altered incretin signaling, and ectopic lipid metabolism. A major unresolved question is whether endocrine dysfunction is driven primarily by target-tissue insulin resistance, intrinsic β-cell failure, immune/inflammatory stress, or combined multi-organ failure that differs by disease stage.
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Human Islet Cell Culture
The method of preserving islets in vitro, with purified reduced immunogenicity. The steps are islet isolation, islet cell purification, in vitro determination of islet function and islet cell culture.
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Research Protocol for Metabolic Diseases
AMP-activated protein kinase, AMPK, is a conserved cellular energy sensor that responds to reduced cellular energy status and coordinates metabolism by increasing ATP-generating catabolic pathways while suppressing ATP-consuming anabolic processes. In metabolic disease research, the AMPK pathway is experimentally relevant because it regulates hepatic lipid synthesis, fatty acid oxidation, glucose production, skeletal-muscle glucose disposal, mTORC1-linked biosynthesis, autophagy, mitochondrial homeostasis, and whole-body energy balance. The central pathway logic is that energy stress, metformin, exercise-like stimulation, or direct AMPK activators increase AMPKα Thr172 phosphorylation and downstream substrate phosphorylation, including ACC and RAPTOR. Phosphorylation of ACC suppresses lipogenesis and supports fatty acid oxidation, whereas phosphorylation of RAPTOR suppresses mTORC1 signaling and links cellular energy status to growth and protein synthesis control. The pathway is linked
Purity & Documentation
References
Calculators
Concentration (start) × Volume (start) = Concentration (final) × Volume (final)