Niraparib


CAS No. : 1038915-60-4

(Synonyms: MK-4827)

1038915-60-4
Price and Availability of CAS No. : 1038915-60-4
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5mg $70 In-stock
10mg $100 In-stock
25mg $140 In-stock
50mg $180 In-stock
100mg $280 In-stock
500mg $680 In-stock
1g $1080 In-stock
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Cat. No. : HY-10619
M.Wt: 320.39
Formula: C19H20N4O
Purity: >98 %
Solubility: H2O : < 0.1 mg/mL (ultrasonic;warming;heat to 80°C);DMSO : 50 mg/mL (ultrasonic;warming;heat to 60°C)
Introduction of 1038915-60-4 :

Niraparib (MK-4827) is a highly potent and orally bioavailable PARP1 and PARP2 inhibitor with IC50s of 3.8 and 2.1 nM, respectively. Niraparib leads to inhibition of repair of DNA damage, activates apoptosis and shows anti-tumor activity[1][2][3]. IC50 & Target: IC50: 3.8 nM (PARP1), 2.1 nM (PARP2)[1] In Vitro: Niraparib (MK-4827) inhibits PARP activity with EC50=4 nM and EC90=45 nM in a whole cell assay. MK-4827 inhibits proliferation of cancer cells with mutant BRCA-1 and BRCA-2 with CC50 in the 10-100 nM range. MK-4827 displays excellent PARP 1 and 2 inhibition with IC50=3.8 and 2.1 nM, respectively, and in a whole cell assay[1]. To validate that Niraparib (MK-4827) inhibits PARP in these cell lines, A549 and H1299 cells are treated with 1 μM MK-4827 for various times and measured PARP enzymatic activity using a chemiluminescent assay. The results show that Niraparib (MK-4827) inhibits PARP within 15 minutes of treatment reaching about 85% inhibition in the A549 cells at 1 h and about 55% inhibition at 1 h for the H1299 cells[2]. In Vivo: Niraparib (MK-4827) is well tolerated and demonstrates efficacy as a single agent in a xenograft model of BRCA-1 deficient cancer. Niraparib (MK-4827) is well tolerated in vivo and demonstrates efficacy as a single agent in a xenograft model of BRCA-1 deficient cancer. Niraparib (MK-4827) 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%[1]. Niraparib (MK-4827) enhances radiation response of p53 mutant Calu-6 tumor in both cases, with the single daily dose of 50 mg/kg being more effective than 25 mg/kg given twice daily[3].

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