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HJB97

Katalog-Nr.GC33211

HJB97 ist ein hochaffiner BET-Inhibitor mit Kis von 0,9 nM (BRD2 BD1), 0,27 nM (BRD2 BD2), 0,18 nM (BRD3 BD1), 0,21 nM (BRD3 BD2), 0,5 nM (BRD4 BD1), 1,0 nM (BRD4 BD2), bzw. HJB97 wird fÜr das Design eines potenziellen PROTAC BET-Abbaumittels verwendet und hat AntitumoraktivitÄt.

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HJB97 Chemische Struktur

Cas No.: 2093391-24-1

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10mM (in 1mL DMSO)
297,00 $
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5mg
270,00 $
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10mg
495,00 $
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50mg
1.588,00 $
Auf Lager
100mg
2.367,00 $
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Sample solution is provided at 25 µL, 10mM.

Description Chemical Properties Product Documents Related Products

HJB97 is a high-affinity BET inhibitor with Kis of 0.9±0.2 nM (BRD2 BD1), 0.27±0.09 nM (BRD2 BD2), 0.18±0.01 nM (BRD3 BD1), 0.21±0.03 nM (BRD3 BD2), 0.5±0.2 nM (BRD4 BD1), 1.0±0.1 nM (BRD4 BD2), respectively. HJB97 is employed for the design of potential PROTAC BET degrader. Antitumor activity[1].

HJB97 is a highly potent and efficacious bomodomain and extra terminal (BET) inhibitor with IC50s of 3.1±0.7 nM (BRD2 BD1), 3.9±0.5 nM (BRD2 BD2), 6.6±0.2 nM (BRD3 BD1), 1.9±0.4 nM (BRD3 BD2), 7.0±0.6 nM (BRD4 BD1), 7.0±0.1 nM (BRD4 BD2)[1].HJB97 (10-1000 nM, 4 days) potently inhibits cell growth in RS4;11 and MOLM-13 acute leukemia cell lines with IC50s of 24.1±5.3 nM and 25.6±1.9 nM[1].HJB97 can effectively down-regulate the level of c-Myc at concentrations of 300-1000 nM in the RS4;11 cell line (treated for 24 h)[1].|| Cell Viability Assay[1]||Cell Line:|The human acute leukemia RS4;11 cell line; The human acute leukemia MOLM-13 cell line|Concentration:|10-1000 nM|Incubation Time:|4 days|Result:|Achieved IC50s value of 24.1±5.3 nM and 25.6±1.9 nM in inhibition of the RS4;11 cell and MOLM-13 cell growth.|| Western Blot Analysis[1]||Cell Line:|RS4;11 cells |Concentration:|30, 100, 300, 1000 nM|Incubation Time:|24 h|Result:|Down-regulated the level of c-Myc but at concentrations of 300-1000 nM in the RS4;11 cell line.

[1]. Zhou B, et al. Discovery of a Small-Molecule Degrader of Bromodomain and Extra-Terminal (BET) Proteins with Picomolar Cellular Potencies and Capable of Achieving Tumor Regression. J Med Chem. 2018 Jan 25;61(2):462-481.

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