PF-06651600
CAS No. 1792180-81-4
PF-06651600( PF06651600 )
Catalog No. M12700 CAS No. 1792180-81-4
PF-06651600 is a novel potent, selective JAK3 inhibitor with IC50 of 0.346 nM, displays >1,000-fold selectivity over JAK1 and JAK2; inhibits Th1 and Th17 cell differentiation and function, reduces disease pathology in rat adjuvant-induced arthritis as well as in mouse experimental autoimmune encephalomyelitis models; selectively targets γc cytokine pathways while preserving JAK1-dependent anti-inflammatory signaling such as the IL-10 suppressive functions following LPS treatment in macrophages and the suppression of TNFα and IL-1β production in IL-27-primed macrophages.Rheumatoid ArthritisPhase 2 Clinical
Purity : >98% (HPLC)
COA
Datasheet
HNMR
HPLC
MSDS
Handing Instructions
| Size | Price / USD | Stock | Quantity |
| 2MG | 35 | In Stock |
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| 5MG | 58 | In Stock |
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| 10MG | 102 | In Stock |
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| 25MG | 205 | In Stock |
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| 50MG | 312 | In Stock |
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| 100MG | 470 | In Stock |
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| 200MG | 669 | In Stock |
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| 500MG | 1008 | In Stock |
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| 1G | Get Quote | In Stock |
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Biological Information
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Product NamePF-06651600
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NoteResearch use only, not for human use.
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Brief DescriptionPF-06651600 is a novel potent, selective JAK3 inhibitor with IC50 of 0.346 nM, displays >1,000-fold selectivity over JAK1 and JAK2; inhibits Th1 and Th17 cell differentiation and function, reduces disease pathology in rat adjuvant-induced arthritis as well as in mouse experimental autoimmune encephalomyelitis models; selectively targets γc cytokine pathways while preserving JAK1-dependent anti-inflammatory signaling such as the IL-10 suppressive functions following LPS treatment in macrophages and the suppression of TNFα and IL-1β production in IL-27-primed macrophages.Rheumatoid ArthritisPhase 2 Clinical
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DescriptionPF-06651600 is a novel potent, selective JAK3 inhibitor with IC50 of 0.346 nM, displays >1,000-fold selectivity over JAK1 and JAK2; inhibits Th1 and Th17 cell differentiation and function, reduces disease pathology in rat adjuvant-induced arthritis as well as in mouse experimental autoimmune encephalomyelitis models; selectively targets γc cytokine pathways while preserving JAK1-dependent anti-inflammatory signaling such as the IL-10 suppressive functions following LPS treatment in macrophages and the suppression of TNFα and IL-1β production in IL-27-primed macrophages.Rheumatoid Arthritis Phase 2 Clinical(In Vitro):Ritlecitinib is a potent JAK3-selective inhibitor which can inhibit the JAK3 kinase activity with an IC50 of 33.1 nM but without activity (IC50>10?000 nM) against JAK1, JAK2, and TYK2. Ritlecitinib inhibits the phosphorylation of STAT5 elicited by IL-2, IL-4, IL-7, and IL-15 with IC50 values of 244, 340, 407, and 266 nM, respectively. Ritlecitinib also inhibits the phosphorylation of STAT3 elicited by IL-21 with an IC50 of 355 nM. Functional assessment in T-cell differentiation assays demonstrate that Ritlecitinib suppresses Th1 and Th17 differentiation as measured by IFNγ, after 5 days under Th1 conditions, and IL-17 production, after 6 days under Th17 conditions, with IC50 values of 30 nM and 167 nM, respectively. Ritlecitinib also suppresses Th1 and Th17 function as measured by the inhibition of IFNγ production (IC50=48 nM) and IL-17 production (IC50=269 nM) in cells that have been previously differentiated and rested before being treated with PF-06651600. (In Vivo):In the rat adjuvant-induced arthritis (AIA) model, Ritlecitinib reduces paw swelling with an unbound EC50 of 169 nM. Similarly, Ritlecitinib significantly reduces disease severity in the experimental autoimmune encephalomyelitis (EAE) mouse model when dosed either therapeutically at 30 or 100 mg/kg or prophylactically at 20 and 60 mg/kg. The efficacy of Ritlecitinib in these two rodent models of inflammatory and autoimmune diseases illustrates that JAK3-selective inhibition can be sufficient to have disease modifying effects in human diseases.
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In VitroRitlecitinib is a potent JAK3-selective inhibitor which can inhibit the JAK3 kinase activity with an IC50 of 33.1 nM but without activity (IC50>10?000 nM) against JAK1, JAK2, and TYK2. Ritlecitinib inhibits the phosphorylation of STAT5 elicited by IL-2, IL-4, IL-7, and IL-15 with IC50 values of 244, 340, 407, and 266 nM, respectively. Ritlecitinib also inhibits the phosphorylation of STAT3 elicited by IL-21 with an IC50 of 355 nM.Functional assessment in T-cell differentiation assays demonstrate that Ritlecitinib suppresses Th1 and Th17 differentiation as measured by IFNγ, after 5 days under Th1 conditions, and IL-17 production, after 6 days under Th17 conditions, with IC50 values of 30 nM and 167 nM, respectively. Ritlecitinib also suppresses Th1 and Th17 function as measured by the inhibition of IFNγ production (IC50=48 nM) and IL-17 production (IC50=269 nM) in cells that have been previously differentiated and rested before being treated with PF-06651600.
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In VivoIn the rat adjuvant-induced arthritis (AIA) model, Ritlecitinib reduces paw swelling with an unbound EC50 of 169 nM. Similarly, Ritlecitinib significantly reduces disease severity in the experimental autoimmune encephalomyelitis (EAE) mouse model when dosed either therapeutically at 30 or 100 mg/kg or prophylactically at 20 and 60 mg/kg. The efficacy of Ritlecitinib in these two rodent models of inflammatory and autoimmune diseases illustrates that JAK3-selective inhibition can be sufficient to have disease modifying effects in human diseases.
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SynonymsPF06651600
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PathwayAngiogenesis
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TargetJAK
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RecptorJAK
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Research AreaInflammation/Immunology
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IndicationRheumatoid Arthritis
Chemical Information
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CAS Number1792180-81-4
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Formula Weight285.351
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Molecular FormulaC15H19N5O
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Purity>98% (HPLC)
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SolubilityDMSO: 130 mg/mL, 455.60 mM ( < 1 mg/ml refers to the product slightly soluble or insoluble )
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SMILESCC1CCC(CN1C(=O)C=C)NC2=NC=NC3=C2C=CN3
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Chemical Name1-[(2S,5R)-2-Methyl-5-(7H-pyrrolo[2,3-d]pyrimidin-4-ylamino)-1-piperidinyl]-2-propen-1-one
Shipping & Storage Information
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Storage(-20℃)
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ShippingWith Ice Pack
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Stability≥ 2 years
Reference
1. Telliez JB, et al. ACS Chem Biol. 2016 Dec 16;11(12):3442-3451.
2. Thorarensen A, et al. J Med Chem. 2017 Mar 9;60(5):1971-1993.
3. Robinette ML, et al. Mucosal Immunol. 2017 May 17. doi: 10.1038/mi.2017.38.
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