SOMCL-863
SOMCL-863 is a selective and orally active c-Met inhibitor with antitumor activity in vitro and in vivo. SOMCL-863 can be utilized in cancer research.
Nur für Forschungszwecke. Wir verkaufen nicht an Patienten.
- CAS. Nr.: 1452310-87-0
- Formel: C23H24F3N5O3
- Molecular Weight:475.46
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Speicherung:
Please store the product under the recommended conditions in the Certificate of Analysis.
Biologische Aktivität
Beschreibung
Cellular Effect
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Cell Line
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Type | Value | Description | References |
|---|---|---|---|---|
| CHO | IC50 |
0.037 μM
Compound: 3
|
Displacement of [3H]dofetilide from human ERG expressed in CHO cells after 30 mins by FluxOR thallium assay
Displacement of [3H]dofetilide from human ERG expressed in CHO cells after 30 mins by FluxOR thallium assay
|
10.1039/C2MD20192E |
Chemical Information
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CAS. Nr. 1452310-87-0
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Molecular Weight 475.46
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Formel C23H24F3N5O3
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SMILES
OCCN1CCN(C2=CC3=C(NCC4=CC=CC([N+]([O-])=O)=C4)C=C(C(F)(F)F)C=C3N=C2)CC1
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Versand
Room temperature in continental US; may vary elsewhere.
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Speicherung
Please store the product under the recommended conditions in the Certificate of Analysis.
Protokoll
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Subcutaneous Cell-Line-Derived Xenograft
Subcutaneous cell-line-derived xenograft (CDX) models are established by implanting cultured human cancer cell lines into immunodeficient mice, where the injected cells form localized tumors that can be monitored in vivo as a measure of tumorigenic potential, growth kinetics, and treatment response. These models are widely used in oncology research because they allow reproducible tumor formation and enable comparative assessment of tumor growth between different cell lines or genetic manipulations in a controlled in vivo microenvironment. Subcutaneous implantation of cancer cells in immunodeficient mice is a standard approach for evaluating tumor growth behavior and therapeutic response across multiple cancer types, including prostate, esophageal, pancreatic, and colon cancer models.
Reinheit & Dokumentation
Verweise
Calculators
Konzentration (Stammlösung) × Volumen (Stammlösung) = Konzentration (Ziellösung) × Volumen (Ziellösung)