JAK
- [1]. Lin CM, et al. Basic Mechanisms of JAK Inhibition. Mediterr J Rheumatol. 2020 Jun 11;31(Suppl 1):100-104. [Content Brief]
- [2]. Pérez-Jeldres T, et al. Targeting Cytokine Signaling and Lymphocyte Traffic via Small Molecules in Inflammatory Bowel Disease: JAK Inhibitors and S1PR Agonists. Front Pharmacol. 2019 Mar 13;10:212. [Content Brief]
- [3]. Luo Y, et al. JAK-STAT signaling in human disease: From genetic syndromes to clinical inhibition. J Allergy Clin Immunol. 2021 Oct;148(4):911-925. [Content Brief]
- [4]. Zhou Y, et al. Novel Small Molecule Tyrosine Kinase 2 Pseudokinase Ligands Block Cytokine-Induced TYK2-Mediated Signaling Pathways. Front Immunol. 2022 May 20;13:884399. [Content Brief]
- [5]. Sarapultsev A, et al. JAK-STAT signaling in inflammation and stress-related diseases: implications for therapeutic interventions. Mol Biomed. 2023;4(1):40. [Content Brief]
- [6]. Doktorova SA, et al. JAK-inhibitors: clinical pharmacology and application perspectives. Reviews on Clinical Pharmacology and Drug Therapy. 2022;20(4):421-434.
- [7]. Angelini J, et al. JAK-Inhibitors for the Treatment of Rheumatoid Arthritis: A Focus on the Present and an Outlook on the Future. Biomolecules. 2020 Jul 5;10(7):1002. [Content Brief]
- [8]. Moura RA, et al. JAK Inhibitors and Modulation of B Cell Immune Responses in Rheumatoid Arthritis. Front Med (Lausanne). 2021 Feb 5;7:607725. [Content Brief]
- [9]. Moresi V, et al. The JAK/STAT Pathway in Skeletal Muscle Pathophysiology. Front Physiol. 2019 Apr 30;10:500. [Content Brief]
- [10]. Djidjik R, et al. JAK/STAT in human diseases: a common axis in immunodeficiencies and hematological disorders. Front Immunol. 2025 Dec 8;16:1669688. [Content Brief]
- [11]. Gadina M. JAK inhibitors: Is specificity at all relevant? Semin Arthritis Rheum. 2024 Feb;64S:152327. doi: 10.1016/j.semarthrit.2023.152327. Epub 2023 Nov 21. PMID: 38007359; PMCID: PMC10939910. et al. JAK inhibitors: Is specificity at all relevant? Semin Arthritis Rheum. 2024 Feb;64S:152327. [Content Brief]
- [12]. Raivola J, et al. Characterization of JAK1 Pseudokinase Domain in Cytokine Signaling. Cancers (Basel). 2019 Dec 27;12(1):78. [Content Brief]
All Product Categories
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JAK Related Products (290)
Related Products (290)
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Antibodies (1)
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Mal-PEG4-NPV-PABC-DMEDA-tofacitinib
0 ImagesCat. No.: HY-182972CAS No.: 3110422-32-4Mal-PEG4-NPV-PABC-DMEDA-tofacitinib is a conjugate of a toxin and a linker, consisting of the JAK inhibitor Tofacitinib (HY-40354) and the linker Mal-PEG4-NPV-PABC-DMEDA (HY-182977). Mal-PEG4-NPV-PABC-DMEDA-tofacitinib can be used for the synthesis of ADC molecules. -
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JAK3/BTK-IN-5
0 ImagesCat. No.: HY-143720CAS No.: 2673196-75-1JAK3/BTK-IN-5 is a potent inhibitor of JAK3/BTK. BTK and JAK3 are two important targets for autoimmune diseases. Simultaneous inhibition of the BTK/JAK3 signalling pathway exhibits synergistic effects. JAK3/BTK-IN-5 has the potential for the research of JAK3 kinase and/or BTK-related diseases (extracted from patent WO2021147953A1, example 35) -
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Momelotinib-d4 dihydrochloride hydrate
0 ImagesCat. No.: HY-10961S8CAS No.: 2056097-81-3Synonyms: CYT387-d4 hydrochloride hydrateMomelotinib-d4 (CYT387-d4) dihydrochloride hydrate is a deuterium labeled Momelotinib (HY-10961). Momelotinib (CYT387) is an ATP-competitive inhibitor of JAK1/JAK2 with IC50s of 11 nM and 18 nM,respectively. CYT387 shows much less activity against JAK3. -
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TYK2(JH1) Recombinant Human Active Protein Kinase
0 ImagesCat. No.: HY-E70872TYK2 is a member of the JAK family of non-receptor tyrosine kinases that act together with signal transducer and activator of transcription (STAT) factors in mediating intracellular signal transduction. JAKs are characterized by dual kinase domain: a tyrosine kinase domain (JH1) that is preceded by a pseudokinase domain (JH2). TYK2(JH1) Recombinant Human Active Protein Kinase is a recombinant TYK2(JH1) protein that can be used to study TYK2(JH1)-related functions. -
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Dimethyl biphenyl-4,4'-dicarboxylate-d8
0 ImagesCat. No.: HY-128854SCAS No.: 1219803-50-5Dimethyl biphenyl-4,4'-dicarboxylate-d8 is the d8-labeled Dimethyl biphenyl-4,4'-dicarboxylate (HY-128854). Dimethyl biphenyl-4,4'-dicarboxylate (Biphenyl dimethyl dicarboxylate) is a hepatoprotective agent. Dimethyl biphenyl-4,4'-dicarboxylate stimulates the Jak/Stat signaling pathway and induces the expression of IFN-α-stimulated genes, particularly 6-16 and ISG12. Dimethyl biphenyl-4,4'-dicarboxylate inhibits the replication of pregenomic RNA and HBeAg. Polymer micelles loaded with Dimethyl biphenyl-4,4'-dicarboxylate can serve as carriers for the compound. Dimethyl biphenyl-4,4'-dicarboxylate can be used as an auxiliary improving agent for chronic hepatitis. Dimethyl biphenyl-4,4'-dicarboxylate is applicable to research related to chronic hepatitis B. -
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JAK-IN-42
0 ImagesCat. No.: HY-187463CAS No.: 2812383-82-5JAK-IN-42 is a JAK inhibitor that can be used in research related to JAK-abnormal diseases, such as rheumatoid arthritis. -
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JAK-IN-15
0 ImagesCat. No.: HY-46262CAS No.: 1973485-05-0JAK-IN-15 is a JAK inhibitor. WO2016119700A1 (Compound 15). -
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Tyk2-IN-9
0 ImagesCat. No.: HY-144032CAS No.: 2694816-85-6Tyk2-IN-9 (Compound 26) is a selective Tyk-2 inhibitor with IC50s of 0.076 and 1.8 nM for TYK2-JH2 and JAK1-JH2, respectively. Tyk2-IN-9 can be used for the research of inflammatory or autoimmune disease. -
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TYK2(JH2) Recombinant Human Active Protein Kinase
0 ImagesCat. No.: HY-E70874TYK2 is a member of the JAK family of non-receptor tyrosine kinases that act together with signal transducer and activator of transcription (STAT) factors in mediating intracellular signal transduction. JAKs are characterized by dual kinase domain: a tyrosine kinase domain (JH1) that is preceded by a pseudokinase domain (JH2). TYK2(JH2) Recombinant Human Active Protein Kinase is a recombinant TYK2(JH2) protein that can be used to study TYK2(JH2)-related functions. -
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(Rac)-TUL01101
0 ImagesCat. No.: HY-176527CAS No.: 2411222-71-2(Rac)-TUL01101 (Compound I) is a selective JAK kinase inhibitor. (Rac)-TUL01101 can be used in the research of various diseases such as rheumatoid arthritis, atopic dermatitis, and alopecia areata. -
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JAK1/TYK2-IN-4
0 ImagesCat. No.: HY-161019CAS No.: 2734918-33-1 -
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HD-2a
0 ImagesCat. No.: HY-149647CAS No.: 606148-05-4HA-2a can inhibit the JAK2/STAT3 pathway via downregulates circDcbld2 expression in RAW264.7 cells. -
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PTPN2-IN-2
0 ImagesCat. No.: HY-179380CAS No.: 3093350-44-5PTPN2-IN-2 is a potent and orally active PTPN2 inhibitor (IC50 = 7.05 nM) that enhances the IFN-γ signaling pathway. PTPN2-IN-2 inhibits PTP1B with an IC50 of 9.88 nM. PTPN2-IN-2 inhibits tumor growth, promotes the activation and infiltration of tumor immune cells in a B16-OVA mouse model. PTPN2-IN-2 can be used for the research of melanoma. -
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Ginsenoside Rk1 (Standard)
0 ImagesCat. No.: HY-N2515RCAS No.: 494753-69-4Ginsenoside Rk1 (Standard) is the analytical standard of Ginsenoside Rk1. This product is intended for research and analytical applications. Ginsenoside Rk1 is a unique component created by processing the ginseng plant (mainly Sung Ginseng, SG) at high temperatures. Ginsenoside Rk1 has anti-inflammatory effect, suppresses the activation of Jak2/Stat3 signaling pathway and NF-κB. Ginsenoside Rk1 has anti-tumor effect, antiplatelet aggregation activities, anti-insulin resistance, nephroprotective effect, antimicrobial effect, cognitive function enhancement, lipid accumulation reduction and prevents osteoporosis. Ginsenoside Rk1 induces cell apoptosis by triggering intracellular reactive oxygen species (ROS) generation and blocking PI3K/Akt pathway. -
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- TYK2 activator-1
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JAK-IN-19
0 ImagesCat. No.: HY-144075CAS No.: 3035893-19-4JAK-IN-19 is a potent JAK inhibitor (PBMC IFNγ pIC50=7.2 and HLF Eotaxin pIC50=7.7). JAK-IN-19 has good retentive properties in the lung via mitigating being metabolized by Aldehyde Oxidase (AO), with diminished VEGFR2 selectivity (VEGFR2 pIC50=7.0, Aurora B pIC50=5.8). -
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- JAK/HDAC-IN-3
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Jak3 Mouse Pre-designed siRNA Set A
0 ImagesCat. No.: HY-RS07022 -
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- JAK2-IN-12
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