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Size | Price | Stock |
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250mg | $450 | Check With Us |
500mg | $650 | Check With Us |
1g | $975 | Check With Us |
Cat #: V3788 CAS #: 1038915-64-8 Purity ≥ 98%
Description: Niraparib HCl (MK-4827; MK4827; Zejula), the hydrochloride salt of Niraparib, is a PARP1/2 inhibitor that has been approved by for for the maintenance treatment of recurrent epithelial ovarian, fallopian tube, or primary peritoneal cancer.
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Molecular Weight (MW) | 356.85 |
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Molecular Formula | C19H21ClN4O |
CAS No. | 1038915-64-8 |
Storage | -20℃ for 3 years in powder formr |
-80℃ for 2 years in solvent | |
Solubility In Vitro | DMSO: ~500mg/mLr |
Water: <1mg/mLr | |
Ethanol: <1mg/mL | |
Synonyms | Niraparib HCl; MK-4827 HCl; MK-4827; MK-4827; MK4827; MK4827 hydrochloride |
Protocol | In Vitro | Niraparib inhibits PARP activity with EC50=4 nM and EC90=45 nM in a whole cell assay. Niraparib inhibits proliferation of cancer cells with mutant BRCA-1 and BRCA-2 with CC50 in the 10−100 nM range. Niraparib displays excellent PARP 1 and 2 inhibition with IC50=3.8 and 2.1 nM, respectively, and in a whole cell assay |
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In Vivo | Niraparib is well tolerated and demonstrates efficacy as a single agent in a xenograft model of BRCA-1 deficient cancer. Niraparib is well tolerated in vivo and demonstrates efficacy as a single agent in a xenograft model of BRCA-1 deficient cancer. Niraparib is characterized by acceptable pharmacokinetics in rats with plasma clearance of 28 (mL/min)/kg, very high volume of distribution (Vdss=6.9 L/kg), long terminal half-life (t1/2=3.4 h), and excellent bioavailability, F = 65% |
Solvent volume to be added | Mass (the weight of a compound) | |||
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Mother liquor concentration | 1mg | 5mg | 10mg | 20mg |
1mM | 2.8023 mL | 14.0115 mL | 28.0230 mL | 56.0460 mL |
5mM | 0.5605 mL | 2.8023 mL | 5.6046 mL | 11.2092 mL |
10mM | 0.2802 mL | 1.4011 mL | 2.8023 mL | 5.6046 mL |
20mM | 0.1401 mL | 0.7006 mL | 1.4011 mL | 2.8023 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.