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Size | Price | Stock |
---|---|---|
5mg | $110 | 3-6 Days |
10mg | $180 | 3-6 Days |
25mg | $290 | 3-6 Days |
50mg | $440 | 3-6 Days |
100mg | $620 | 3-6 Days |
250mg | $910 | 3-6 Days |
500mg | $1290 | 3-6 Days |
Cat #: V4593 CAS #: 1111556-37-6 Purity ≥ 99%
Description: Takinib is a novel, potent and selective TAK1 inhibitor with an IC50 of 9.5 nM. Takinib induces apoptosis following TNF-α stimulation in cell models of rheumatoid arthritis and metastatic breast cancer. Takinib is an inhibitor of autophosphorylated and non-phosphorylated TAK1 that binds within the ATP-binding pocket and inhibits by slowing down the rate-limiting step of TAK1 activation. Overall, Takinib is an attractive starting point for the development of inhibitors that sensitize cells to TNF-α-induced cell death, with general implications for cancer and autoimmune disease treatment. Tumor necrosis factor alpha (TNF-α) has both positive and negative roles in human disease. In certain cancers, TNF-α is infused locally to promote tumor regression, but dose-limiting inflammatory effects limit broader utility. In autoimmune disease, anti-TNF-α antibodies control inflammation in most patients, but these benefits are offset during chronic treatment. TAK1 acts as a key mediator between survival and cell death in TNF-α-mediated signaling.
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- Physicochemical and Storage Information
- Protocol
- Related Biological Data
- Stock Solution Preparation
- Quality Control Documentation
Molecular Weight (MW) | 322.3611 |
---|---|
Molecular Formula | C18H18N4O2 |
CAS No. | 1111556-37-6 |
Storage | Powder -20°C 3 years 4°C 2 years In solvent -80°C 6 months -20°C 1 month |
Synonyms | EDHS-206; EDHS 206; EDHS206 |
Solvent volume to be added | Mass (the weight of a compound) | |||
---|---|---|---|---|
Mother liquor concentration | 1mg | 5mg | 10mg | 20mg |
1mM | 3.1021 mL | 15.5106 mL | 31.0211 mL | 62.0422 mL |
5mM | 0.6204 mL | 3.1021 mL | 6.2042 mL | 12.4084 mL |
10mM | 0.3102 mL | 1.5511 mL | 3.1021 mL | 6.2042 mL |
20mM | 0.1551 mL | 0.7755 mL | 1.5511 mL | 3.1021 mL |
This equation is commonly abbreviated as: C1 V1 = C2 V2
- (1) Please be sure that the solution is clear before the addition of next solvent. Dissolution methods like vortex, ultrasound or warming and heat may be used to aid dissolving.
- (2) Be sure to add the solvent(s) in order.