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Erismodegib diphosphate

CAT: 0013-GTR19156740-02Size: 500 mgDry Ice: NoHazardous: No
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CAT#:0013-GTR19156740-02Size:500 mg
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Description
Erismodegib diphosphate is an effective and selective Smo antagonist (IC50: 1.3 nM and 2.5 nM for mouse and human Smo in a binding assay, respectively) . Erismodegib diphosphate is used alone and in combination with Nilotinib, inhibits the Hh pathway in CD34+ chronic phase (CP) -chronic myeloid leukemia (CML) cells, reducing the number and self-renewal capacity of CML leukemia stem cell (LSC) . In a similar fashion to cyclopamine, Erismodegib interacts directly with SMO, to reduce the expression of downstream Hh signaling targets. The IC50 values for Erismodegib diphosphate for the major human CYP450 drug-metabolizing enzymes are greater than 10 μM. Primary CD34+ CP-CML cells are cultured in serum-free media (SFM) ±Erismodegib for 6, 24, and 72 hours (h) . At 72 h, while there is variability between the biological samples, GLI1 is obviously downregulated following exposure to Erismodegib (10 nM; 0.78-fold and 100 nM; 0.73-fold, respectively (p<0.01) .Erismodegib diphosphate is a weak base with a measured pKa of 4.2 and exhibits relatively poor aqueous solubility. Erismodegib diphosphate demonstrates dose-related antitumor activity after 10 days of oral administration of a suspension of the diphosphate salt, in the subcutaneous Ptch+/-p53-/- medulloblastoma allograft mouse model. Bone marrow cells and spleen cells from a subset of treated mice are transplanted into secondary recipient mice. Erismodegib diphosphate (5 mg/kg/day; once daily) obviously inhibits tumor growth, corresponding to a T/C value of 33% (p<0.05 as compared to vehicle controls) . Erismodegib affords 51 and 83% regression respectively when dosed at 10 and 20 mg/kg/day qd. Transplantation of either bone marrow (BM) or spleen cells from mice treated with Erismodegib diphosphate+ Nilotinib results in reduced white cell count (WCC) and reduces leukemia development in secondary recipients compared to Erismodegib or Nilotinib alone. (In Vitro) :The IC50 values for Sonidegib (NVP-LDE225) for the major human CYP450 drug metabolizing enzymes is greater than 10 μM. Sonidegib (LDE225), a small molecule, clinically investigated SMO inhibitor, used alone and in combination with Nilotinib, inhibits the Hh pathway in CD34+ chronic phase (CP) -chronic myeloid leukaemia (CML) cells, reducing the number and self-renewal capacity of CML leukaemia stem cell (LSC) . Sonidegib interacts directly with SMO, in a similar fashion to cyclopamine, to reduce expression of downstream Hh signaling targets. Primary CD34+ CP-CML cells are cultured in serum free media (SFM) ±Sonidegib for 6, 24 and 72 hours (h) . At 72 h, while there is variability between the biological samples, GLI1 is significantly downregulated following exposure to Sonidegib (10 nM; 0.78-fold and 100 nM; 0.73-fold, respectively (p<0.01) . (In Vivo) :Sonidegib (NVP-LDE225) is a weak base with a measured pKa of 4.2 and exhibits relatively poor aqueous solubility. In the subcutaneous Ptch+/-p53-/- medulloblastoma allograft mouse model, Sonidegib demonstrates dose-related antitumor activity after 10 days of oral administration of a suspension of the diphosphate salt. At a dose of 5 mg/kg/day qd, Sonidegib significantly inhibits tumor growth, corresponding to a T/C value of 33% (p<0.05 as compared to vehicle controls) . When dosed at 10 and 20 mg/kg/day qd, Sonidegib affords 51 and 83% regression, respectively. Bone marrow cells and spleen cells from a subset of treated mice are transplanted into secondary recipient mice. Transplantation of either bone marrow (BM) or spleen cells from mice treated with Sonidegib (LDE225) +Nilotinib results in reduced white cell count (WCC) and reduces leukaemia development in secondary recipients compared to Sonidegib or Nilotinib alone.
CAS Number
1218778-77-8
Product Name Alternative
Sonidegib diphosphate, LDE225 diphosphate, NVP-LDE 225 diphosphate
Purity
>98% (HPLC)
Solubility
DMSO:99 mg/mL (145.27 mM) ; H2O:0.25 mg/mL (0.37 mM; Need ultrasonic)
Smiles
OP (O) (O) =O.OP (O) (O) =O.C[C@H]1CN (C[C@@H] (C) O1) c1ccc (NC (=O) c2cccc (-c3ccc (OC (F) (F) F) cc3) c2C) cn1
Molecular Formula
C26H32F3N3O11P2
Molecular Weight
681.49
Storage Conditions
Storage temperature: -20°C. Stability: ≥ 2 years
Notes
For research use only.

Chemical Information

Sonidegib Phosphate

Sonidegib phosphate is a phosphate salt obtained by reaction sonidegib with two equivalent of phosphoric acid. Used for treatment of locally advanced basal cell carcinoma. It has a role as a Hedgehog signaling pathway inhibitor, an antineoplastic agent and a SMO receptor antagonist. It contains a sonidegib.

CAS Number1218778-77-8
PubChem CID45138699
IUPAC NameN-[6-[(2S,6R)-2,6-dimethylmorpholin-4-yl]-3-pyridinyl]-2-methyl-3-[4-(trifluoromethoxy)phenyl]benzamide;phosphoric acid
Molecular FormulaC26H32F3N3O11P2
Molecular Weight681.5
Topological Polar Surface Area219
Hydrogen Bond Donor Count7
Hydrogen Bond Acceptor Count16
Rotatable Bond Count5
Heavy Atom Count45
Formal Charge0
Complexity741
SMILES
C[C@@H]1CN(C[C@@H](O1)C)C2=NC=C(C=C2)NC(=O)C3=CC=CC(=C3C)C4=CC=C(C=C4)OC(F)(F)F.OP(=O)(O)O.OP(=O)(O)O
InChI
InChI=1S/C26H26F3N3O3.2H3O4P/c1-16-14-32(15-17(2)34-16)24-12-9-20(13-30-24)31-25(33)23-6-4-5-22(18(23)3)19-7-10-21(11-8-19)35-26(27,28)29;2*1-5(2,3)4/h4-13,16-17H,14-15H2,1-3H3,(H,31,33);2*(H3,1,2,3,4)/t16-,17+;;
InChIKey
RWIVSVMMGFFZIJ-VWDRLOGHSA-N
Chemical Structure
2D Structure
2D structure of Sonidegib Phosphate
CAS: 1218778-77-8
CID: 45138699
Formula: C26H32F3N3O11P2
MW: 681.5
Interactive 3D Structure
Loading 3D structure...
Computed Properties
PropertyValue
Molecular Weight681.5
Hydrogen Bond Donor Count7
Hydrogen Bond Acceptor Count16
Rotatable Bond Count5
Exact Mass681.14641733
Monoisotopic Mass681.14641733
Topological Polar Surface Area219 Ų
Heavy Atom Count45
Formal Charge0
Complexity741
Isotope Atom Count0
Defined Atom Stereocenter Count2
Undefined Atom Stereocenter Count0
Defined Bond Stereocenter Count0
Undefined Bond Stereocenter Count0
Covalently-Bonded Unit Count3
Compound Is CanonicalizedYes