CAS NO: | 1346546-69-7 |
规格: | ≥98% |
包装 | 价格(元) |
5mg | 电议 |
10mg | 电议 |
25mg | 电议 |
50mg | 电议 |
100mg | 电议 |
250mg | 电议 |
Molecular Weight (MW) | 383.49 |
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Formula | C19H17N3O2S2 |
CAS No. | 1346546-69-7 |
Storage | -20℃ for 3 years in powder form |
-80℃ for 2 years in solvent | |
Solubility (In vitro) | DMSO: 76 mg/mL (198.17 mM) |
Water: <1 mg/mL | |
Ethanol: 40 mg/mL (104.3 mM) | |
SMILES Code | O=S(C1=CC=C2N=CC=C(NC3=CC=C(SC=N4)C4=C3)C2=C1)(C(C)C)=O |
Synonyms | GSK2399872A; GSK872; GSK-872; GSK 872; GSK2399872-A; GSK2399872 A; GSK-2399872A; GSK-2399872 A; Chemical Name: N-5-benzothiazolyl-6-[(1-methylethyl)sulfonyl]-4-quinolinamine Exact Mass: 383.0762 |
In Vitro | In vitro activity: When assayed at 1 μM, GSK'872 fails to inhibit most of 300 human protein kinases tested. It fails to inhibit RIP1 kinase when tested directly. GSK'872 blocks TNF-induced necroptosis in a concentration-dependent manner in HT-29 cells. In cell-based assays, there is a 100- to 1000-fold shift in the IC50 compared to the cell-free biochemical assays. GSK'872 also blocks necroptosis in primary human neutrophils isolated from whole blood. GSK'872 inhibits TLR3- or DAI-induced death, two RIP1-independent pathways of necroptosis. It induces caspase activation followed by apoptotic cell death Kinase Assay: GSK'872 (also known as GSK2399872A, GSK872, or GSK-872) is a potent and selective RIPK3 (receptor interacting protein kinase-3) inhibitor. It has a high binding affinity to the RIP3 kinase domain with IC50 value of 1.8 nM, and it inhibits the kinase activity with an IC50 of 1.3 nM. Cell Assay: Viability of 3T3-SA cells at 18 h after treatment with TNF in the presence of Z-VAD-fmk in vehicle control (DMSO) or treated with the indicated concentrations of RIP3 kinase inhibitors, GSK'843 or GSK'872 are assayed. |
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In Vivo | GSK'872 treatment significantly decreases HIF-1α expression compared with no treatment after ischemia injury in vivo |
Animal model | C57BL/6 mice |
Formulation & Dosage | Dissolved in DMSO (<0.1%) and diluted in saline; 1.9 mmol/kg; i.p. |
References | Biochem Biophys Res Commun. 2016 Oct 14;479(2):217-223;Sci Rep. 2017 Jul 19;7(1):5818. |