Angiogenesis

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  1. BTK Inhibitor

    BGB-8035 is a highly selective bruton's tyrosine kinase (BTK) inhibitor, exhibiting an IC50 of 1.1 nM for BTK, while demonstrating lower activity against TEC and EGFR with IC50 values of 99 nM and 621 nM, respectively. This compound displays significant antitumor and anti-arthritis properties, making it a valuable tool for investigating B-cell malignancies and autoimmune diseases. BGB-8035 is ideal for research applications focused on targeted therapies in hematological tumors and related pathologies.
  2. PKC-Btk Inhibitor

    Terreic acid, a quinone epoxide antibiotic, serves as a potent inhibitor of Bruton’s tyrosine kinase (Btk) by disrupting the interaction between protein kinase C (PKC) and the pleckstrin homology domain of Btk. This compound effectively inhibits the binding of GST-BtkPH to PKC in lysates of human mast cells (HMC-1), demonstrating an IC50 value of approximately 100 μM. Its ability to modulate Btk activity makes terreic acid a valuable reagent for research applications involving immune signaling and mast cell function.
  3. BTK Inhibitor

    QL47B is a biotinylated inhibitor of Bruton's tyrosine kinase (BTK), exhibiting a potent inhibitory effect with an IC50 value of 1.3 μM. This compound demonstrates significant anti-tumor activity, making it valuable for research in cancer therapeutics and cellular signaling pathways involving BTK modulation. Its biotinylation allows for easy detection in experimental settings, enhancing its utility in biochemical assays and studies of BTK-related mechanisms.
  4. BTK Inhibitor

    Dihydrodiol-Ibrutinib-d5 is a deuterium-labeled form of Dihydrodiol-Ibrutinib, a potent Bruton’s tyrosine kinase (BTK) inhibitor. This active metabolite exhibits inhibitory activity towards BTK that is approximately 15 times lower than that of its parent compound, ibrutinib. Dihydrodiol-Ibrutinib-d5 serves as a valuable tool for investigating the pharmacokinetics and metabolic pathways of BTK inhibition in various research applications, particularly within cancer therapeutics.
  5. Btk Inhibitor

    (R)-Elsubrutinib is a potent Bruton tyrosine kinase (Btk) inhibitor. By selectively inhibiting Btk, this compound modulates B-cell signaling pathways, making it valuable for investigating immune disorders such as rheumatoid arthritis, psoriasis, and systemic lupus erythematosus, as well as certain malignancies. Its applications extend to preclinical research, providing insights into the therapeutic potential of targeting Btk in various disease contexts.
  6. BTK Inhibitor

    JS25 is a selective covalent inhibitor of Bruton's tyrosine kinase (BTK), exhibiting an IC50 value of 5.8 nM through chelation of Tyr551. This compound demonstrates potent anti-proliferative effects on cancer cells, induces apoptosis, and has shown efficacy in promoting tumor regression in murine xenograft models of Burkitt's lymphoma. Notably, JS25 effectively crosses the blood-brain barrier, making it a valuable tool for research in brain-related malignancies.
  7. Btk Inhibitor

    BTK inhibitor 13 is a highly potent and selective inhibitor of Bruton's tyrosine kinase (BTK) with an IC50 value of 1.2 nM. This compound exhibits significant biological activity in modulating BTK pathways, making it a valuable tool for research in B-cell malignancies and autoimmune disorders. Its high selectivity and potency facilitate investigations into BTK's role in various signaling pathways and potential therapeutic applications.
  8. Btk Inhibitor

    BTK-IN-5 is a covalent Bruton’s tyrosine kinase (BTK) inhibitor that effectively targets the BTK signaling pathway. This compound is instrumental in studying various medical conditions, including cardiovascular diseases, respiratory disorders, inflammation, and diabetes. Its inhibitory action on BTK makes it a valuable tool for exploring the role of BTK in disease pathogenesis and therapeutic interventions.
  9. BTK Inhibitor

    CFON-026 is a selective, orally active non-covalent inhibitor of Bruton’s tyrosine kinase (BTK), exhibiting an IC50 of 0.27 nM. This compound demonstrates substantial antitumor efficacy against both wild-type BTK and various clinically relevant BTK resistance mutations, including C481S, T474I, L528W, and V416L. In vivo studies have shown that CFON-026 induces complete tumor regression in TMD8 xenograft models, making it a valuable tool for investigating hematological malignancies such as chronic lymphocytic leukemia and Waldenström macroglobulinemia.
  10. BTK Inhibitor

    BMS-986143 is a potent, orally active inhibitor of Bruton's tyrosine kinase (BTK) with an IC50 of 0.26 nM, demonstrating significant selectivity against a range of kinases. This compound also inhibits TEC, BLK, BMX, TXK, FGR, YES1, and ITK with varying IC50 values, establishing its broad-spectrum activity. BMS-986143 is valuable for research into autoimmune diseases, providing insights into the modulation of B cell signaling and function.
  11. BTK inhibitor

    Cinsebrutinib is a selective inhibitor of Bruton's tyrosine kinase (BTK), demonstrating significant activity in disrupting BTK-mediated signaling pathways. This compound exhibits potential in cancer research, particularly in hematological malignancies, by inhibiting cell proliferation and survival. Researchers can utilize Cinsebrutinib to investigate the role of BTK in tumor biology and to explore therapeutic strategies targeting BTK in oncology.
  12. BTK Inhibitor

    BTK-IN-14 is a potent Bruton tyrosine kinase (BTK) inhibitor, targeting the BTK signaling pathway involved in B cell antigen receptor (BCR) and Fcγ receptor (FcγR) signaling in B and myeloid cells. This compound is instrumental for the investigation of BTK's role in various pathological conditions, including autoimmune diseases, inflammatory disorders, and certain cancers. Its efficacy makes it a valuable tool for researchers exploring BTK-related therapeutic strategies.
  13. BTK Inhibitor

    BTK-IN-20 is a selective Bruton's tyrosine kinase (BTK) inhibitor and a 1H-pyrazolo[3,4-d]pyrimidine derivative. This compound demonstrates significant anti-inflammatory and anticancer properties, making it a valuable tool for investigating BTK's role in B-cell signaling and associated malignancies. BTK-IN-20 is suitable for research applications focusing on cancer biology and inflammation pathways.
  14. BTK Inhibitor

    BTK-IN-27 is a potent Bruton's tyrosine kinase (BTK) inhibitor with an IC50 of 0.2 nM. It exhibits significant anti-proliferative activity in TMD8 cells, with an IC50 of less than 5 nM. This compound is suitable for research applications in cancer, lymphoma, leukemia, and immunological diseases.
  15. BTK Inhibitor

    Midobrutinib is a potent Bruton's tyrosine kinase (BTK) inhibitor, demonstrating an IC50 of 0.813 nM. This compound is valuable for examining the role of BTK in various diseases, particularly in cancer research. By inhibiting BTK, Midobrutinib aids in the investigation of cellular signaling pathways involved in malignancies and potential therapeutic interventions.
  16. BTK Inhibitor

    BTK-IN-11 is a selective inhibitor of Bruton's tyrosine kinase (BTK), a key enzyme in the signaling pathways of B cell antigen receptors (BCR) and Fcγ receptors (FcγR) in B cells and myeloid cells. Its potent inhibition of BTK makes it a valuable tool for investigating the role of BTK in various disease contexts, particularly autoimmune diseases, inflammatory disorders, and certain cancers. This compound supports research aimed at understanding BTK-mediated signaling and its implications in disease pathogenesis.
  17. GSTO1/BTK Inhibitor

    GSTO1-IN-2 is a dual covalent inhibitor targeting GSTO1 and Bruton's tyrosine kinase (BTK), demonstrating IC50 values of 441 nM and 6.2 nM, respectively. This compound exhibits potent inhibitory activity, making it a valuable tool for research in oncology and autoimmunity. Its ability to effectively modulate key pathways involved in these biological processes supports investigations into therapeutic applications.
  18. BTK Inhibitor

    BTK-IN-22 is a highly selective Bruton's tyrosine kinase (BTK) inhibitor, demonstrating an IC50 value of 0.9 nM. It also effectively inhibits BLK and BMX kinases with IC50 values of 1.4 nM and 1.2 nM, respectively. This compound is valuable for research focused on B-cell malignancies and related signaling pathways, providing a useful tool for exploring the therapeutic potential of BTK inhibition. Its improved kinase selectivity compared to existing inhibitors enhances its utility in biological studies.
  19. BTK Inhibitor

    BTK-IN-18 is a potent, reversible Bruton’s Tyrosine Kinase (BTK) inhibitor with an IC50 of 0.002 µM. This compound effectively inhibits the expression of CD69 and CD86 in vivo, demonstrating its potential in modulating B-cell receptor signaling pathways. BTK-IN-18 is suitable for research applications in hematological malignancies and autoimmune diseases, facilitating studies on B cell function and therapy development.
  20. BTK Inhibitor

    BTK-IN-41 is a selective Bruton’s tyrosine kinase (BTK) inhibitor with an IC50 value of 5.4 nM. This compound effectively inhibits diffuse large B cell lymphoma cell line TDM-8 with an IC50 of 13.8 nM. BTK-IN-41 is valuable for investigating the role of BTK in B cell malignancies and for evaluating potential therapeutic strategies in hematological cancers.
  21. Btk Inhibitor

    BTK-IN-33 is a Bruton’s tyrosine kinase (Btk) inhibitor that demonstrates significant anticancer activity. This compound selectively targets the Btk pathway, which is crucial for B-cell receptor signaling and survival. BTK-IN-33 is primarily utilized in research investigating B-cell malignancies and provides potential therapeutic insights into related cancers.
  22. BTK Inhibitor

    PF-303 is a highly selective, oral inhibitor of Bruton's tyrosine kinase (BTK) with an IC50 of 0.64 nM. This compound forms a reversible covalent bond with the Cys481 residue of BTK, allowing for targeted modulation of BTK activity without the concerns associated with irreversible inhibitors. PF-303 is valuable for investigating the role of BTK in immune system functioning, particularly in analyzing B-cell subsets, antibody production, and T-cell activation dynamics.
  23. BTK Inhibitor

    BTK-IN-40 is a potent Bruton’s tyrosine kinase (BTK) inhibitor, designed to selectively inhibit BTK activity. This compound exhibits significant anti-inflammatory and anti-proliferative effects, making it a valuable tool for research in autoimmune diseases and hematological malignancies. BTK-IN-40’s targeted action facilitates the exploration of BTK's role in various signaling pathways and its therapeutic potential in related conditions.
  24. BTK Inhibitor

    WS-11 is a non-covalent reversible inhibitor of Bruton's tyrosine kinase (BTK), exhibiting IC50 values of 3.9 nM and 2.2 nM for wild-type and C481S mutant BTK, respectively. Its potent activity arises from the formation of strong π-π interactions with phenylalanine 540 and p-π interactions with lysine 430 within the active site, complemented by robust hydrogen bonding. WS-11 serves as a valuable tool for studying BTK-related signaling pathways and evaluating therapeutic strategies in disorders such as lymphoma and autoimmune diseases.
  25. BTK Inhibitor

    BTK-IN-26 is a highly potent inhibitor of Bruton's tyrosine kinase (BTK), exhibiting IC50 values of 0.7 nM for wild-type BTK and 0.8 nM for the C481S mutant. This compound is suitable for research in cancer and autoimmune diseases, facilitating studies on BTK's role in these conditions. Its selective inhibition allows for effective elucidation of BTK-dependent signaling pathways and therapeutic intervention.
  26. BTK Inhibitor

    BTK-IN-34 is a selective Bruton’s Tyrosine Kinase (BTK) inhibitor. It demonstrates significant antiproliferative activity in RAMOS cells by specifically inhibiting phosphorylated BTK (Tyr223), while leaving upstream kinases Lyn and Syk unaffected. This compound is valuable for research into B cell receptor signaling and the development of therapies targeting B cell malignancies.
  27. BTK Inhibitor

    Birelentinib is a potent, selective, non-covalent inhibitor of BTK and LYN tyrosine kinases, effective in penetrating the blood-brain barrier. It demonstrates concentration-dependent antiproliferative activity in RI-1 cells and diffuse large B-cell lymphoma (DLBCL) lines with BTK resistance mutations, such as C481X and V416L. By disrupting both BTK-dependent and independent signaling pathways of the B-cell receptor (BCR), Birelentinib impedes tumor cell proliferation and promotes apoptosis. This compound is valuable in research aimed at overcoming resistance to existing BTK inhibitors in B-cell non-Hodgkin lymphoma (B-NHL).
  28. BLK/BTK Inhibitor

    BLK-IN-1 is a selective covalent inhibitor targeting B-Lymphoid Tyrosine Kinase (BLK) and Bruton Tyrosine Kinase (BTK), with IC50 values of 18.8 nM and 20.5 nM, respectively. This compound is valuable for investigating the role of these kinases in cancer biology and exploring potential therapeutic applications. Its specificity makes it suitable for studying the molecular mechanisms underlying malignancies associated with BLK and BTK activity.
  29. BTK Inhibitor

    HBC-12551 is a potent orally active Bruton’s tyrosine kinase (BTK) inhibitor, demonstrating an IC50 of 1.31 nM in HEK293 cells for BTK and 2.18 nM for the BTKC481S mutant. This compound exhibits significant antitumor activity, particularly in the context of diffuse large B-cell lymphoma. HBC-12551 serves as a valuable tool for research into targeted therapies for B-cell malignancies.
  30. BTK Inhibitor

    BTK-IN-10 is a highly potent Bruton’s Tyrosine Kinase (BTK) inhibitor, exhibiting IC50 values of less than 5 nM against both wild-type BTK and the C481S mutant variant. This compound is ideal for studying BTK signaling pathways and evaluating therapeutic strategies in hematological malignancies. Its efficacy in inhibiting BTK makes it a valuable tool for researchers investigating the role of BTK in immune regulation and cancer biology.
  31. Pan-BTK Inhibitor

    GNE-431 is a potent, selective, noncovalent pan-BTK inhibitor that targets various BTK mutants, including C481R, T474I, and T474Ms. It demonstrates significant biological activity with an IC50 of 3.2 nM against wild-type BTK and 2.5 nM against the C481S mutant. GNE-431 is a valuable tool for research into hematological disorders and autoimmune diseases, providing insights into the modulation of B-cell signaling pathways.
  32. BTK Inhibitor

    BTK-IN-21 is a potent Bruton's tyrosine kinase (BTK) inhibitor with an IC50 of 33 nM. It exhibits significant inhibitory effects on BTK activity, making it a valuable tool for research applications related to cancer and autoimmune diseases. This compound enables the exploration of BTK signaling pathways and supports the development of targeted therapies in these areas.
  33. Btk Inhibitor

    BTK Inhibitor 19 is a highly selective covalent inhibitor of Bruton’s tyrosine kinase (BTK), with an IC50 value of 2.7 nM. This compound effectively modulates BTK activity, playing a crucial role in pathways associated with B cell receptor signaling. It is particularly valuable in research applications focused on B cell malignancies and autoimmune diseases, facilitating the exploration of therapeutic strategies targeting BTK.
  34. Btk Inhibitor

    Civorebrutinib is a selective inhibitor of Bruton's tyrosine kinase (Btk), which plays a critical role in B cell receptor signaling. This compound exhibits significant antineoplastic activity, making it a valuable tool for research into B cell malignancies and related disorders. Its ability to modulate B cell function positions Civorebrutinib as a candidate for studies examining targeted therapies in hematological cancers.
  35. BTK Inhibitor

    RN941 is a potent Bruton's tyrosine kinase (BTK) inhibitor, targeting the BTK signaling pathway. It exhibits significant biological activity in modulating B-cell signaling, making it a valuable tool in the study of rheumatoid arthritis and B-cell malignancies. RN941 is suitable for research applications involving disease mechanisms and therapeutic strategies in these conditions.
  36. BTK Mutant Inhibitor

    AMX5160 is an orally active Bruton's tyrosine kinase (BTK) inhibitor, specifically targeting the mutant BTKC481S with an IC50 of 0.98 nM. This reagent is useful for investigating the role of BTK in various malignancies, including leukemia and lymphoma, as well as in research related to multiple sclerosis and other autoimmune disorders.
  37. Topoisomerase I Inhibitor

    Topoisomerase I inhibitor 11 is a potent inhibitor of Topoisomerase I, a key enzyme involved in DNA replication and repair. This compound disrupts the enzyme's catalytic activity, leading to the accumulation of DNA damage and ultimately inducing apoptosis in cancer cells. Topoisomerase I inhibitor 11 is primarily utilized in cancer research, particularly for studying mechanisms of drug resistance and the therapeutic potential of targeting Topoisomerase I in various malignancies.
  38. BTK Inhibitor

    BTK-IN-8 is a potent and selective inhibitor of Bruton's tyrosine kinase (BTK), exhibiting a binding affinity with an IC50 of 0.22 nM and a Kd of 0.91 nM. This compound demonstrates significant cellular activity against whole blood CD69, with an IC50 of 0.029 µM. BTK-IN-8 is primarily used in research focused on hematological malignancies and autoimmune disorders, providing insights into BTK-mediated signaling pathways.
  39. Btk Inhibitor

    RN983 is a highly selective inhibitor of Bruton's tyrosine kinase (Btk), demonstrating potent inhibition of immunoglobulin G (IgG) production in B-cells with an IC50 of 2.5 nM, and prostaglandin D2 (PGD2) production in mast cells with an IC50 of 8.3 nM. This compound serves as a valuable tool for investigating the roles of Btk in B-cell signaling and mast cell activation, making it relevant in the study of asthma and other allergic diseases.
  40. BTK Inhibitor

    BTK-IN-36 is a potent Bruton’s Tyrosine Kinase (BTK) inhibitor, exhibiting an IC50 of 0.5 nM. This compound effectively inhibits BTK signaling pathways, which are crucial for B-cell receptor signaling and have implications in various cancers. BTK-IN-36 is applicable in cancer research, particularly in studies exploring targeted therapies for B-cell malignancies.
  41. RET Inhibitor

    RET-IN-14 is a highly selective RET inhibitor that demonstrates potent inhibition with IC50 values of less than 0.51 nM for wild-type RET and varying nanomolar activity against RET mutations (G810R and V804M) as well as BTK and its C481S mutant. Its exceptional efficacy positions RET-IN-14 as a valuable tool for investigating RET-driven tumors and exploring therapeutic strategies in cancer research.
  42. BTK Inhibitor

    BTK-IN-15 is a highly potent inhibitor of Bruton's tyrosine kinase (BTK), exhibiting an IC50 value of 0.7 nM. This compound demonstrates exceptional selectivity for BTK and displays significant antitumor activity. Additionally, BTK-IN-15 is known to induce apoptosis, making it a valuable tool for research in cancer biology and the development of targeted therapies.
  43. VA5

    BTK Inhibitor

    VA5 is a potent Bruton’s tyrosine kinase (BTK) inhibitor, designed to selectively inhibit BTK activity. This compound plays a crucial role in modulating B-cell signaling pathways and has potential applications in studying various diseases associated with dysregulated BTK activity, including certain hematological malignancies and autoimmune disorders. VA5 serves as a valuable tool in preclinical research to further investigate the therapeutic potential of targeting BTK.
  44. BTK Inhibitor

    BTK-IN-38 is a potent inhibitor of Bruton's tyrosine kinase (BTK). It effectively inhibits the proliferation of DOHH2 and BT474 cancer cell lines, exhibiting IC50 values of 114 nM and 340 nM, respectively. This compound is of particular interest in research applications targeting B-cell malignancies and related signaling pathways.
  45. BTK Inhibitor

    BTK-IN-23 is a selective Bruton's tyrosine kinase (BTK) inhibitor, with an IC50 of 12.8 nM. This compound also exhibits inhibitory effects on BMX and BLK, with IC50 values of 5.7 nM and 35.6 nM, respectively. BTK-IN-23 demonstrates enhanced kinase selectivity compared to Ibrutinib, making it a valuable tool for research in cancer and autoimmune disease therapies, particularly in studies focusing on B-cell signaling pathways.
  46. BTK Inhibitor

    BTK-IN-43 is a selective inhibitor of Bruton's tyrosine kinase (BTK) with an IC50 value of 21.6 nM. This compound is capable of oral administration and exhibits potent activity against BTK-mediated signaling pathways. It is primarily utilized in research applications focused on hematological malignancies and immune disorders driven by aberrant BTK activity.
  47. BTK Inhibitor

    HZ-A-005 is a potent and selective covalent inhibitor of Bruton’s tyrosine kinase (BTK), a critical regulator in B cell receptor signaling. This compound demonstrates significant anti-tumor activity, effectively reducing tumor growth in xenograft mouse models. HZ-A-005 is valuable for research applications focused on B cell malignancies and the study of BTK's role in various signaling pathways.
  48. Btk Inhibitor

    BTK-IN-32 is a selective Bruton’s tyrosine kinase (BTK) inhibitor that effectively modulates BTK activity. It uniquely activates both full-length BTK and smaller multidomain fragments, rather than solely targeting the isolated kinase domain. This compound is useful in research applications focused on B-cell signaling pathways and the development of therapies for related hematological malignancies.
  49. BTK Inhibitor

    BTK Inhibitor 20 is a highly selective inhibitor of Bruton’s Tyrosine Kinase (BTK), exhibiting an IC50 value of 8 nM. This compound effectively modulates the BTK signaling pathway, playing a critical role in B-cell receptor signaling and related processes. It is valuable for research focused on B-cell malignancies, autoimmune diseases, and other conditions where BTK activity is implicated.
  50. BTK Inhibitor

    BTK-IN-25 is a highly potent inhibitor of Bruton’s tyrosine kinase (BTK), demonstrating an IC50 of 0.77 nM against the BTK(C481S) mutant and 1 nM in DOHH2 cells. This compound is valuable for exploring BTK-related signaling pathways and potential therapeutic interventions in B-cell malignancies. Its selective inhibition of BTK makes it a useful tool for research applications focused on the modulation of immune responses and the development of targeted cancer therapies.

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