JAK

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  1. JAK2 Inhibitor

    NMS-P953 is a potent orally active inhibitor of JAK2, exhibiting an IC50 of 0.008 μM. This compound demonstrates significant antitumor activity, making it a valuable tool for cancer research. It is particularly useful in studies focusing on JAK2-related signaling pathways and therapeutic applications in hematological malignancies.
  2. JAK2 Inhibitor

    BVB808 is a selective JAK2 inhibitor, exhibiting approximately 10-fold selectivity for JAK2 over other JAK family members in vitro. This compound effectively inhibits JAK2 activity, leading to a reduction in STAT5 phosphorylation, which in turn disrupts JAK2-dependent cell proliferation and survival signaling pathways. BVB808 is utilized in cancer research, particularly in studies focusing on malignancies driven by JAK2 signaling dysregulation.
  3. JAK3/Syk Inhibitor

    R-348 choline is a potent, orally active inhibitor of Janus kinase 3 (JAK3) and spleen tyrosine kinase (Syk). This compound effectively reduces the expression levels of pro-inflammatory cytokines, including interferon-gamma (IFN-γ), interleukin-6 (IL-6), and interleukin-10 (IL-10). R-348 choline is primarily utilized in research related to acute cardiac allograft rejection and other autoimmune conditions where JAK3 and Syk signaling play critical roles.
  4. JAK3 Inhibitor

    JAK3-IN-19 is a selective inhibitor of Janus kinase 3 (JAK3), a critical component in cytokine signaling pathways. Inhibition of JAK3 has been shown to affect the proliferation and survival of cancer cells. This compound is valuable for research applications focused on understanding the role of JAK3 in various malignancies and exploring its potential as a therapeutic target in cancer treatment.
  5. JAK Inhibitor

    (3S,4R)-Tofacitinib is a less active enantiomer of Tofacitinib, primarily targeting Janus kinase 3 (JAK3) as a potent inhibitor. It exhibits an IC50 of 1 nM, highlighting its potential for modulating immune responses and inflammatory processes. This compound is valuable for research in immunology and the development of therapies targeting JAK-mediated signaling pathways.
  6. JAK Inhibitor

    AS2553627 is a selective JAK inhibitor, exhibiting IC50 values of 0.46 nM for JAK1, 0.30 nM for JAK2, 0.14 nM for JAK3, and 2.0 nM for TYK2. This compound effectively inhibits the proliferation of human and rat T cells in response to IL-2, with IC50 values of 2.4 nM and 4.3 nM, respectively. In preclinical studies, AS2553627 has demonstrated a capacity to mitigate cardiac allograft vasculopathy and fibrosis in rat heart transplant models, thereby improving survival rates and showing potential for use in preventing acute and chronic rejection in heart transplantation.
  7. JAKs Inhibitor

    JAK-IN-34 is a potent inhibitor of Janus kinases (JAKs), demonstrating low nanomolar IC50 values of 0.40 nM for JAK1, 0.83 nM for JAK2, 2.10 nM for JAK3, and 1.95 nM for TYK2. This compound effectively reduces joint swelling, indicating its potential application in inflammatory diseases and autoimmune disorders. Its favorable safety profile makes it a valuable tool for research focused on JAK signaling pathways and related therapeutic interventions.
  8. JAK Inhibitor

    JAK3-IN-7 is a potent and selective inhibitor of Janus kinase 3 (JAK3) with an IC50 of less than 0.01 μM. This compound effectively modulates JAK3-mediated signaling pathways, which are critical for immune response and hematopoiesis. JAK3-IN-7 is valuable for research applications focused on autoimmune diseases, inflammatory disorders, and hematological malignancies.
  9. JAK Inhibitor

    Dehydrocrenatidine is a natural alkaloid that functions as a selective inhibitor of Janus kinases (JAK). This compound exhibits significant biological activity by inhibiting voltage-gated sodium channels, which may alleviate mechanical allodynia in neuropathic pain models. Dehydrocrenatidine serves as a valuable tool for research in pain mechanisms and the therapeutic targeting of JAK pathways.
  10. HDAC/JAK/BRD4 Inhibitor

    HDAC/JAK/BRD4-IN-1 is a potent inhibitor targeting histone deacetylases (HDAC), Janus kinases (JAK), and bromodomain-containing protein 4 (BRD4). This compound demonstrates significant anti-proliferative effects and promotes apoptosis in MDA-MB-231 breast cancer cells. Additionally, HDAC/JAK/BRD4-IN-1 exhibits promising anticancer activity in vivo, making it a valuable tool for research in cancer therapeutics and the study of epigenetic and signaling pathways.
  11. JAK2/FLT3 Inhibitor

    Flonoltinib sulfate is a potent, orally active dual inhibitor targeting JAK2 and FLT3. It demonstrates significant biological activity with IC50 values of 0.7 nM for JAK2 and 4 nM for FLT3, along with activity against JAK1 and JAK3 at 26 nM and 39 nM, respectively. This compound is primarily utilized in cancer research, particularly in the study of hematological malignancies influenced by aberrant JAK2 and FLT3 signaling pathways.
  12. JAK1 Inhibitor

    Ivarmacitinib sulfate is a selective inhibitor of the Janus kinase 1 (JAK1) pathway, exhibiting a significant preference over JAK2, JAK3, and Tyk2. This compound effectively inhibits JAK1-STAT3 phosphorylation, leading to the apoptosis of hepatic stellate cells. Ivarmacitinib sulfate demonstrates notable anti-proliferative and anti-inflammatory properties, making it a valuable tool for research on hepatic diseases and inflammation-related disorders.
  13. Aurora/JAK Inhibitor

    AT9283 lactic acid is a multi-targeted kinase inhibitor primarily targeting Aurora A/B and JAK2/3. It demonstrates potent biological activity against various cancers, exhibiting IC50 values between 1 to 30 nM for its targets. AT9283 lactic acid effectively inhibits the growth and survival of multiple solid tumors in both in vitro and in vivo models, making it a valuable reagent for cancer research applications.
  14. JAK2/3 Inhibitor

    JAK-2/3-IN-3 is a potent inhibitor of JAK2 and JAK3, demonstrating IC50 values of 13.00 nM and 14.86 nM, respectively. It effectively inhibits the autophosphorylation of JAK2 and promotes apoptosis in a dose- and time-dependent manner. This compound is valuable for research into lymphoid malignancies and leukemia, providing insights into the role of JAK signaling pathways in these diseases.
  15. JAK2 Inhibitor

    Fedratinib hydrochloride hydrate is a selective, ATP-competitive inhibitor targeting the JAK2 kinase. With an IC50 of 3 nM for both JAK2 and the mutant JAK2V617F, it demonstrates significant potency. This compound exhibits 35-fold selectivity over JAK1 and 334-fold selectivity over JAK3. Fedratinib hydrochloride hydrate effectively induces apoptosis in cancer cells, making it a valuable tool for research in myeloproliferative disorders.
  16. STAT3/JAK Inhibitor

    Brevilin A is a potent inhibitor of the STAT3/JAK signaling pathway, with an IC50 value of approximately 10.6 μM for STAT3. It exhibits anti-tumor properties and effectively inhibits the proliferation of cancer cells. Additionally, Brevilin A has been shown to induce both apoptosis and autophagy, making it a valuable tool for cancer research and therapeutic investigations.
  17. JAK2/FLT3 Inhibitor

    Flonoltinib TFA is a potent and orally bioavailable inhibitor that targets both JAK2 and FLT3, exhibiting IC50 values of 0.7 nM and 4 nM, respectively, alongside 26 nM and 39 nM for JAK1 and JAK3. This compound possesses significant anti-cancer activity, making it a valuable tool for research in oncology and therapeutic development against malignancies driven by these pathways. Its dual inhibition profile highlights its potential in addressing cancers associated with aberrant JAK2 and FLT3 signaling.
  18. JAK2 Inhibitor

    ZT55 is a potent and selective inhibitor of JAK2, exhibiting an IC50 value of 0.031 μM. This compound effectively inhibits the proliferation of JAK2V617F-expressing HEL cell lines, inducing apoptosis and cell cycle arrest. In vivo, ZT55 demonstrates significant efficacy in inhibiting the growth of HEL xenograft tumors in mouse models. It serves as a valuable tool for research in myeloproliferative neoplasms, including polycythemia vera and primary thrombocythemia.
  19. JAK2 Inhibitor

    ON044580 is a potent non-ATP-competitive inhibitor of the JAK2 kinase, demonstrating IC50 values of 1.23 μM and 1.09 μM for wild-type and V617F mutant JAK2, respectively. This compound functions by either binding to the STAT-5 binding domain or an allosteric site of JAK2, leading to the suppression of JAK2 kinase activity. ON044580 effectively induces apoptosis in chronic myelogenous leukemia cells that exhibit resistance to Imatinib, and it also inhibits both wild-type and T315I mutant forms of the BCR-ABL kinase. This reagent holds promise for therapeutic applications in myeloproliferative disorders characterized by dysregulated JAK/STAT signaling.
  20. JAK/HDAC Inhibitor

    JAK/HDAC-IN-2 is a dual-target inhibitor of Janus kinase (JAK) and histone deacetylase (HDAC), specifically inhibiting HDAC3/6 and JAK1/2 with nanomolar potency. This compound demonstrates proapoptotic activity by inhibiting histone deacetylation and STAT3 phosphorylation, contributing to its mechanism of action. JAK/HDAC-IN-2 exhibits significant antiproliferative effects in various hematological malignancies and solid tumors, making it a valuable tool for cancer research and therapeutic studies.
  21. JAK2/Bcr-Abl/FLT3 Inhibitor

    LS-104 is a non-ATP-competitive inhibitor targeting JAK2, Bcr-Abl, and FLT3. It effectively induces apoptosis in JAK2V617F-positive cells while inhibiting JAK2 autophosphorylation and downstream signaling pathways. Additionally, LS-104 demonstrates significant cytotoxic effects and inhibits the proliferation of FLT3-expressing leukemic cells. This hydroxystyryl-acrylonitrile compound holds potential for research into myeloproliferative disorders and refractory or relapsed hematologic malignancies.
  22. JAK3 Inhibitor

    PRN-371 is a potent and selective inhibitor of JAK3. By disrupting the JAK3-STAT signaling pathway, PRN-371 effectively suppresses the proliferation of natural killer and T-cell lymphoma cells, inducing apoptosis in these malignancies. This compound demonstrates significant antitumor activity and is applicable in the research of various cancer types, particularly hematological malignancies.
  23. JAK2 Inhibitor

    JAK2-IN-14 is a highly selective JAK2 inhibitor with an IC50 of 2 nM, demonstrating significant selectivity with 89.5-fold over JAK1, 80.5-fold over JAK3, and 51-fold over TYK2. This compound effectively inhibits the STAT5 signaling pathway, leading to tumor cell cycle arrest and apoptosis. JAK2-IN-14 is a valuable tool for investigating myeloproliferative neoplasms (MPNs) and their underlying mechanisms.
  24. JAK3 Inhibitor

    NSC114792 is a selective inhibitor of Janus kinase 3 (JAK3), which plays a critical role in immune signaling pathways. This compound effectively induces apoptosis in target cells and significantly reduces the protein expression of phosphorylated JAK3 and phosphorylated STAT5. NSC114792 is primarily utilized in research focused on immune responses and related signaling cascades.
  25. Anticancer Agent

    Tubulosine is an alkaloid that functions as a selective inhibitor of the Janus kinase 3 (JAK3) with an IC50 of 9.9 nM. It exhibits enhanced inhibition of JAK3 compared to other JAK family members, with IC50 values of 69.5 nM for JAK1, 84.9 nM for JAK2, and 76.3 nM for TYK2. Tubulosine induces both apoptotic and necrotic/autophagic cell death in cancer cells and disrupts peptide chain elongation in eukaryotic polysomes. This compound demonstrates promising anticancer activity, particularly in breast cancer cell lines, making it a valuable tool for cancer research.
  26. DPP

    JAK2/STAT3 Inhibitor

    DPP is a Platinum(IV) complex featuring a pterostilbene-derived axial ligand that specifically targets the JAK2/STAT3 signaling pathway. This compound displays significant antiproliferative activity against breast cancer cells by inducing apoptosis through the activation of caspase-3 and cleavage of poly ADP-ribose polymerase. Additionally, DPP enhances the maturation and antigen presentation capability of dendritic cells, demonstrating favorable safety profiles in in vivo studies, making it a promising candidate for cancer immunotherapy research.
  27. FLT3/JAK2 Inhibitor

    JAK2/FLT3-IN-3 is a potent dual inhibitor of FLT3 and JAK2, exhibiting IC50 values of 2.01 nM for JAK2, 0.51 nM for FLT3, and 104.40 nM for JAK3. This compound induces apoptosis in cancer cells and demonstrates significant antitumor activity. Its ability to inhibit both FLT3 and JAK2 pathways makes it a valuable tool for research related to hematological malignancies and targeted cancer therapies.
  28. JAK2/STAT3 Inhibitor

    Cernuumolide J is a selective inhibitor of JAK2/STAT3 signaling pathway. It induces G2/M phase arrest and apoptosis in HEL leukemia cells by downregulating the phosphorylation of JAK2, STAT3, and Erk, while promoting the phosphorylation of JNK and p38 MAPK. Cernuumolide J exhibits a concentration-dependent growth inhibition of HEL leukemia cells, with an IC50 value of 1.79 μM, making it a valuable compound for research in anti-cancer therapy.
  29. JAK3-Inhibitor

    JAK3 covalent inhibitor-2 is a selective covalent inhibitor targeting Janus kinase 3 (JAK3), exhibiting an IC50 of 7.2 nM. This compound demonstrates anti-inflammatory activity, low toxicity, and favorable bioavailability, making it suitable for research applications involving autoimmune diseases and inflammatory disorders. Its specificity for JAK3 supports investigations into therapeutic strategies aimed at modulating immune responses.
  30. JAK2 inhibitor

    XL019 is an orally bioavailable inhibitor of Janus-associated kinase 2 (JAK2) with potential antineoplastic activity.
  31. PKC inhibitor

    Go6976 is a potent PKC inhibitor with IC50 of 7.9 nM, 2.3 nM, and 6.2 nM for PKC (Rat brain), PKCα, and PKCβ1, respectively. Also a potent inhibitor of JAK2 and Flt3.
  32. pan-JAK inhibitor

    PF-06263276 (PF 6263276) is a potent and selective pan-JAK inhibitor, with IC50s of 2.2 nM, 23.1 nM, 59.9 nM and 29.7 nM for JAK1, JAK2, JAK3 and TYK2, respectively.
  33. JAK2 Inhibitor

    CEP33779 is a selective JAK2 inhibitor with IC50 of 1.8 nM.
  34. JAK2/HDAC dual inhibitor

    JAK/HDAC-IN-1 is a potent JAK2/HDAC dual inhibitor, exhibits antiproliferative and proapoptotic activities in several hematological cell lines.
  35. dual JAK1/TYK2 inhibitor

    PF-06700841 P-Tosylate is a potent dual Janus kinase 1 (JAK1) and TYK2 inhibitor with IC50s of 17 nM and 23 nM, respectively.
  36. IKKβ/Tyk2 pseudokinase inhibitor

    BMS-066 is an IKKβ/Tyk2 pseudokinase inhibitor, with IC50s of 9 nM and 72 nM, respectively.
  37. Tyk2 pseudokinase inhibitor

    Tyk2-IN-3 is a Tyk2 pseudokinase inhibitor, with an IC50 of 485 nM.
  38. TYK2 inhibitor

    GDC046 (Compound 3) is a potent, selective, and orally bioavailable inhibitor of TYK2 with Ki of 4.8 nM, 83.8 nM, 27.6 nM and 253 nM for TYK2, JAK1, JAK2, and JAK3, respectively.
  39. JAK3/STAT5 inhibitor

    BD750, an effective immunosuppressant and a JAK3/STAT5 inhibitor, inhibits IL-2-induced JAK3/STAT5-dependent T cell proliferation, with IC50 values of 1.5 μM and 1.1 μM in mouse and human T cells, respectively.
  40. TYK2 inhibitor

    RO495 (CS-2667) is a potent inhibitor of Non-receptor tyrosine-protein kinase 2 (TYK2).
  41. JAK2 inhibitor

    TG-89 is an inhibitor of JAK2 with IC50 of 11.2 μM.
  42. JAK3 inhibitor

    JAK3-IN-1 is a potent JAK3 inhibitor with IC50 of 4.8 nM, also inhibits JAK1 (IC50 = 896 nM) and JAK2 (IC50 = 1050 nM).
  43. JAK1/2/3 inhibitor

    JAK-IN-1 is a JAK1/2/3 inhibitor with IC50s of 0.26, 0.8 and 3.2 nM, respectively. JAK-IN-1 shows improved selectivity for JAK3 over JAK1.
  44. JAK2 inhibitor

    NVP-BSK805 dihydrochloride (BSK805 dihydrochloride) is an ATP-competitive JAK2 inhibitor, with IC50s of 0.48 nM, 31.63 nM, 18.68 nM, and 10.76 nM for JAK2 JH1 (JAK homology 1), JAK1 JH1, JAK3 JH1, and TYK2 JH1, respectively.
  45. TYK2 JH2 inhibitor

    Tyk2-IN-7 (Compound 48) is a TYK2 JH2 inhibitor, binds to TYK2 JH2 domain with IC50 and Ki.app of 0.00053 μM and 0.00007 μM, respectively.
  46. JAK2/3 PROTAC Degrader

    SJ10542 is a potent and selective PROTAC degrader targeting JAK2 and JAK3. With DC50 values of 14 nM for JAK2 and 11 nM for JAK3 in patient-derived xenograft cells (PDX), SJ10542 demonstrates significant antitumor activity. This compound is valuable for research in hematological malignancies and autoimmune diseases, facilitating the exploration of targeted degradation mechanisms in these therapeutic areas.
  47. PROTAC JAK2 Degrader

    SJ988497 is a potent PROTAC JAK2 degrader that targets JAK2 for degradation, playing a critical role in the inhibition of CRLF2-rearranged (CRLF2r) cell proliferation. Functionally, SJ988497 induces degradation of the neosubstrate GSPT1 through its architecture consisting of a Ruxolitinib derivative, a linker, and the CRBN ligand Pomalidomide. This compound is particularly valuable for research focused on acute lymphoblastic leukemia (ALL).
  48. JAK1 PROTAC Degrader

    PROTAC JAK1 Degrader 1 is a selective PROTAC agent targeting JAK1, exhibiting a DC50 of 214 nM. This compound initiates rapid degradation of JAK1, leading to significant antitumor activity. It serves as a valuable tool for investigating JAK1-related signaling pathways and developing therapeutic strategies for malignancies driven by JAK1 dysregulation.
  49. TYK2 Degrader

    PROTAC TYK2 degradation agent1 is a selective degrader targeting TYK2, effectively facilitating its degradation with a DC50 value of 14 nM. This compound highlights significant biological activity in modulating TYK2 levels, making it a useful tool for investigating autoimmune diseases. Research applications include studying the role of TYK2 in inflammatory pathways and evaluating potential therapeutic strategies.
  50. PTPN1/PTPN2 Inhibitor

    Osunprotafib (ABBV-CLS-484) is an orally active and selective active site PTPN1 (IC50: 2.5 nM) and PTPN2(IC50: 1.8 nM) inhibitor. Osunprotafib has 6-8-fold weaker activity on PTPN9 and no detectable activity on SHP-1 or SHP-2. Osunprotafib increases the sensitivity of human cancer cell lines to IFNγ. Osunprotafib generates robust anti-tumor immunity by enhancing JAK-STAT signalling and reducing T cell dysfunction.

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