1912422-56-0

1912422-56-0 structure
1912422-56-0 structure
  • Name: NFATc1-IN-1
  • Chemical Name: NFATc1-IN-1
  • CAS Number: 1912422-56-0
  • Molecular Formula: C13H8F2INO2
  • Molecular Weight: 375.11
  • Catalog: Research Areas Others
  • Create Date: 2022-09-30 00:03:47
  • Modify Date: 2026-08-23 23:28:16
  • NFATc1-IN-1 (compound A04) is a potent inhibitor of RANKL-induced osteoclast formation, with an IC50 of 1.57 μM. NFATc1-IN-1 shows anti-osteoclastogenic effects through reducing the RANKL-induced nuclear translocation of NFATc1. NFATc1-IN-1 can be used for osteoclastic diseases research[1].

Name NFATc1-IN-1
Description NFATc1-IN-1 (compound A04) is a potent inhibitor of RANKL-induced osteoclast formation, with an IC50 of 1.57 μM. NFATc1-IN-1 shows anti-osteoclastogenic effects through reducing the RANKL-induced nuclear translocation of NFATc1. NFATc1-IN-1 can be used for osteoclastic diseases research[1].
Related Catalog
In Vitro NFATc1-IN-1 (compound A04) (0-2.5 μM, 4 days) exhibits potent inhibitory activities on osteoclast formation and function, which eventually translates into decreased bone resorption[1]. NFATc1-IN-1 (1.5-2.5 μM, 24 h) blocks NFATc1 nuclear translocation and decreases the level of NFATc1[1]. Cell Viability Assay[1] Cell Line: Osteoclast precursor RAW 264.7 cells Concentration: 0, 0.5, 1.0, 1.5, 2.0 and 2.5 μM Incubation Time: 4 days Result: Markedly reduced the number and size of red TRAP-positive multinucleated osteoclasts at concentrations of 1.5, 2.0, and 2.5 μM. Significantly inhibited formation of osteoclasts in a dose-dependent manner (at 1.5, 2.0 and 2.5 μM), while showing no cytotoxic effects towards osteoclast precursor cells at concentrations of as high as 2.5 μM. Immunofluorescence[1] Cell Line: RAW264.7 cells Concentration: 1.5 or 2.5 μM Incubation Time: 24 h Result: Blocked NFATc1 nuclear translocation and decreased the level of NFATc1.
References

[1]. Chen CL, et al. Design, synthesis and SARs of novel salicylanilides as potent inhibitors of RANKL-induced osteoclastogenesis and bone resorption. Eur J Med Chem. 2016 Jul 19;117:70-84.

Molecular Formula C13H8F2INO2
Molecular Weight 375.11
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