BAY-6672 free base · Synonyms: BAY 6672 · BAY6672
BAY-6672 is a selective human prostaglandin F receptor antagonist.
For research use only. Not for human or veterinary use.
BAY-6672 structure
CAS No.: 2247517-53-7
Pack sizes & pricing
| Size | Price | SKU | Stock | |
|---|---|---|---|---|
| 5 mg | USD 378.00 | BP-01995-5mg | In stock | Get quote |
| 10 mg | USD 548.00 | BP-01995-10mg | In stock | Get quote |
| 25 mg | USD 849.00 | BP-01995-25mg | In stock | Get quote |
| 50 mg | USD 1,235.00 | BP-01995-50mg | In stock | Get quote |
| 100 mg | USD 1,795.00 | BP-01995-100mg | In stock | Get quote |
| 250 mg | Inquire | BP-01995-250mg | In stock | Inquire |
| 1 g | Inquire | BP-01995-1g | In stock | Inquire |
Need another size or custom synthesis? Request a quote.
Description
BAY-6672 is a selective human prostaglandin F (FP) receptor antagonist that is highly potent (IC50=11 nM), orally available and well permeable. It exerts antifibrotic effects by inhibiting prostaglandin F2α (PGF₂α) activity through antagonizing the FP receptor, and has in vivo efficacy in animal models of idiopathic pulmonary fibrosis (IPF).
Biological activity
In vivo Anti-fibrotic activity of BAY-6672 (3, 10, 30 mg/kg, twice daily) in a 10-day silica-induced pulmonary fibrosis model in mice. Significant reductions in relevant profibrotic and inflammatory biomarkers, including the cytokines IL-1 and MCP-1, and the ECM protein osteopontin (OPN), were observed.
Identifiers
- SMILES
-
BrC(C=C1)=CC2=C1N=C(N3CCCC3)C(C)=C2C(NC[C@H](CCC(O)=O)C4=CC=CC=C4Cl)=O - InChIKey
-
YQOLEILXOBUDMU-KRWDZBQOSA-N
Specifications
- MW (average)
- 544.8680
- Formula
- C26H27BrClN3O3
- CAS No.
- 2247517-53-7
- Physical state
- Solid
- Color
- White to off-white
- Shipping
- Shipped under ambient temperature as non-hazardous chemical. This product is stable enough for a few weeks during ordinary shipping and time spent in Customs.
- Storage
- Please store the product under the recommended conditions in the Certificate of Analysis.
Documents
References
Same target
Search Prostaglandin ReceptorSame research area
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