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  1. Tubulin polymerization Inhibitor

    Tubulin polymerization-IN-74 is a potent inhibitor of tubulin polymerization, exhibiting an IC50 value of 15 μM. This compound is utilized predominantly in anticancer research, providing valuable insights into microtubule dynamics and their role in cancer cell proliferation. Its inhibition of tubulin assembly makes it a valuable tool for studying pathways related to tumorigenesis and therapeutic strategies targeting cytoskeletal components.
  2. Tubulin Polymerization Inhibitor

    Bifidenone is a potent inhibitor of tubulin polymerization, demonstrating significant antiproliferative effects across various human cancer cell lines. This compound's mechanism of action disrupts microtubule dynamics, making it a valuable tool for cancer research. Bifidenone is useful for investigating cellular processes related to mitosis and offers potential insights into therapeutic strategies targeting tumor cell proliferation.
  3. Tubulin Assembly Inhibitor

    3,4',5-Trismethoxybenzophenone is a potent inhibitor of tubulin assembly, exhibiting an IC50 value of 2.6 µM. This compound disrupts microtubule polymerization, making it a valuable tool for studying cellular processes and the cytoskeleton. Its application ranges from investigating cancer biology to exploring mechanisms of drug resistance.
  4. Tubulin Inhibitor

    NSC 145669 is a potent inhibitor of tubulin polymerization, demonstrating an IC50 of 1.7 μM. This compound exhibits significant cytotoxic effects on various cancer cell lines and has shown promising antileukemic activity in murine models. NSC 145669 serves as a valuable tool for research focused on cancer biology, particularly in the study of microtubule dynamics and therapeutic strategies targeting tubulin.
  5. Microtubule Polymerization Inhibitor

    N-Deacetylcolchicine is a potent inhibitor of microtubule polymerization, exhibiting an IC50 of 3 μM against bovine brain microtubules. As a derivative of colchicine, it effectively activates the GTPase activity of microtubules, making it valuable for research related to cancer biology and treatment mechanisms. This compound offers significant potential for studies focusing on microtubule dynamics and their role in cancer cell proliferation.
  6. TTK/Mps1 Inhibitor

    Luvixasertib hydrochloride is a highly selective inhibitor of TTK/Mps1, demonstrating an IC50 of 1.7 nM for TTK in vitro. This compound exhibits significant anti-cancer activity, making it a valuable tool for cancer research. Its mechanism of action targets crucial mitotic processes, providing insights into cell cycle regulation and tumorigenesis. Luvixasertib hydrochloride is suitable for studies focused on cancer biology and therapeutic development.
  7. MPS1 Inhibitor

    CFI-401980 is a selective inhibitor of the MPS1 kinase, exhibiting an affinity characterized by a Ki value of 0.8 nM. This compound effectively inhibits the proliferation of HCT116 cancer cell lines, making it a valuable tool in cancer research. CFI-401980 may be utilized to investigate the role of MPS1 in cell cycle regulation and its potential as a therapeutic target in anti-cancer strategies.
  8. Mps1 Inhibitor

    TC-Mps1-12 is a highly selective inhibitor of monopolar spindle 1 (Mps1), demonstrating an IC50 of 6.4 nM. It effectively disrupts the function of Mps1, a key regulator of the mitotic spindle assembly checkpoint. This compound is valuable for studying cell cycle regulation, mitosis, and cancer biology, facilitating research into potential therapeutic targets for cancer treatment.
  9. TTK Inhibitor

    NTRC 0066-0 is a potent inhibitor of threonine-tyrosine kinase (TTK), exhibiting an IC50 of 0.9 nM. This selective inhibitor is valuable for cancer research, offering insights into TTK-mediated signaling pathways and their role in tumorigenesis. NTRC 0066-0 enables the exploration of TTK's contribution to cell cycle regulation and cancer cell proliferation.
  10. MPS1 Inhibitor

    Mps1-IN-7 is a potent inhibitor of MPS1 with an IC50 value of 0.020 μM, demonstrating selectivity over JNK1 and JNK2 (IC50 values of 0.11 μM and 0.22 μM, respectively). This compound exhibits significant antiproliferative effects across various cancer cell lines, including SW620, CAL51, Miapaca-2, and RMG1, with GI50 values of 0.065, 0.068, 0.25, and 0.110 μM, respectively. Mps1-IN-7 can be utilized in research focused on cell cycle regulation and the development of targeted cancer therapies.
  11. MPS1/TTK Inhibitor

    RMS-07 is a covalent inhibitor of Monopolar Spindle Kinase 1 (MPS1/TTK), exhibiting an apparent IC50 of 13.1 nM. It selectively targets a poorly conserved cysteine residue within the kinase's hinge region. This compound is utilized in research applications focusing on cell cycle regulation, mitotic checkpoint studies, and cancer therapeutics.
  12. Mps1 Inhibitor

    Mps1-IN-3 hydrochloride is a potent and selective inhibitor of Mps1, with an IC50 value of 50 nM. This compound effectively inhibits the proliferation of glioblastoma cells and enhances the sensitivity of glioblastomas to Vincristine in orthotopic glioblastoma xenograft models. Mps1-IN-3 hydrochloride is valuable for research applications targeting cell cycle regulation and glioblastoma treatment strategies.
  13. Mps1 Inhibitor

    Mps1-IN-10 is a potent inhibitor of Mps1, exhibiting an IC50 of 6.4 nM. This compound effectively suppresses the proliferation of cancer cells, demonstrated by a GI50 of 11 nM in the MDA-MB-231 cell line. Mps1-IN-10 also shows significant anti-tumor efficacy in preclinical models using MDA-MB-231 xenografts, making it a valuable tool for cancer research applications focused on cell cycle regulation and tumor growth inhibition.
  14. TTK Inhibitor

    TTK Inhibitor 3 is a highly potent and selective inhibitor of TTK, a critical enzyme involved in the spindle assembly checkpoint. With an IC50 value of 3.0 nM, this compound effectively disrupts TTK activity, making it a valuable tool for studying cell cycle regulation and mitotic progression. Its application extends to research focused on cancer biology, particularly in the context of therapeutic approaches targeting aberrant cell division.
  15. Mps1 Inhibitor

    Mps1-IN-1 dihydrochloride is a potent ATP-competitive inhibitor of Mps1 kinase, exhibiting an IC50 of 367 nM. This compound effectively inhibits Mps1 mitotic kinase activity, disrupting spindle assembly checkpoint (SAC) function and leading to compromised cell cycle regulation. Mps1-IN-1 dihydrochloride demonstrates cytotoxic effects in various cellular contexts, impacting both cancerous and normal cells, making it a valuable tool for research in cell division and cancer therapy.
  16. Mps1 Inhibitor

    Mps1-IN-6 is a selective inhibitor of Mps1, exhibiting an IC50 value of 2.596 nM. This compound demonstrates significant antiproliferative effects and shows potential as an effective antitumor agent. Mps1-IN-6 is valuable for research into tumor biology and potential therapeutic interventions targeting mitotic checkpoint regulation.
  17. Mps1 Inhibitor

    Mps1-IN-4 is a selective inhibitor of Monopolar spindle 1 (Mps1), a critical kinase involved in the regulation of the mitotic checkpoint. This compound exhibits antiproliferative activity, making it a valuable tool for cancer research. Mps1-IN-4 can be utilized to investigate the role of Mps1 in cell cycle regulation and its implications in tumorigenesis.
  18. TTK Inhibitor

    TTK inhibitor 4 is a potent inhibitor of threonine tyrosine kinase (TTK), exhibiting an IC50 value of 0.016 μM. This compound demonstrates significant anti-tumor activity, making it a valuable tool for cancer research. It is particularly relevant for studies focused on cell proliferation, apoptosis, and signal transduction pathways associated with malignancies.
  19. Mps1 Inhibitor

    Mps1-IN-8 is a potent inhibitor of the Mps1 kinase, a key regulator of the spindle assembly checkpoint. It effectively impairs Mps1 activity, leading to mitotic disruption in cancer cells. This compound is valuable for investigating the role of Mps1 in tumorigenesis and exploring its potential as a therapeutic target in cancer research.
  20. TTK Inhibitor

    CFI-400936 is a potent inhibitor of the TTK protein kinase, demonstrating an IC50 of 3.6 nM. This compound exhibits significant antitumor activity, making it valuable for research focused on cancer treatment and cellular proliferation studies. Its ability to modulate TTK activity positions it as a useful tool for investigating therapeutic strategies in oncology.
  21. Mps1 Inhibitor

    ONCOII is a potent Mps1 inhibitor with an IC50 of 10.8 nM, primarily targeting the Mps1 kinase involved in cell division and checkpoint regulation. This reagent's efficacy is influenced by specific mutations in the Mps1 gene, as cells harboring such mutations show increased resistance to ONCOII. It is particularly useful in cancer research to study cell cycle dynamics and the effects of Mps1 modulation in tumorigenesis.
  22. MPS1 Inhibitor

    Mps-BAY2b is a potent inhibitor of monopolar spindle 1 (MPS1) with an IC50 of 14 nM in human MPS1. This compound demonstrates significant anticancer activity, making it a valuable tool for cancer research. Mps-BAY2b can be utilized in studies to investigate cell cycle regulation and the mechanisms of tumor progression.
  23. Mps1 Inhibitor

    Mps1/TTK-IN-1 is a potent Mps1 kinase inhibitor that specifically binds to the ATP-binding pocket of the enzyme with an IC50 of 9.2 nM and a Kd of 1.6 nM. It effectively inhibits Mps1 activity, including in drug-resistant mutants (C604Y and C604W) with IC50 values of 170 nM and 19 nM, respectively. By blocking the phosphorylation of the kinetochore protein KNL1, Mps1/TTK-IN-1 disrupts spindle assembly checkpoint function and hinders proper chromosome separation, ultimately inhibiting mitosis and tumor cell proliferation, making it a valuable tool for cancer research.
  24. allosteric PAK1 inhibitor

    NVS-PAK1-1 is a potent and selective allosteric PAK1 inhibitor with an IC50 of 5 nM.
  25. Integrin Inhibitor

    A-205804 is a potent and selective inhibitor of E-selectin and ICAM-1 with IC50 value of 20 nM and 25 nM, respectively.
  26. PKC inhibitor

    GF 109203X is a potent and selective inhibitor of protein kinase C, selective for the α and β1 isoforms (IC50 values are 0.0084, 0.0180, 0.210, 0.132, and 5.8 μM for α, β1, δ, ε and ζ isoforms respectively). Selective over MLCK, PKG and PKA (IC50 values are 0.6, 4.6, and 33 μM respectively). Potent antagonist at the 5-HT3 receptor (Ki = 29.5 nM).
  27. Mps1 inhibitor

    Mps1-IN-1 is a highly potent and selectibe Mpsl inhibitor with IC50 of 367 nM; >1000-fold selectivity relative to the 352 member kinase panel with the major exceptions of Alk and Ltk.
  28. PAK4 inhibitor

    PF-3758309 is a small-molecule p21-activated kinase inhibitor inhibiting oncogenic signaling and tumor growth.
  29. Kinesin-5(KIF11) inhibitor

    Monastrol is a potent, cell permeable non-tubulin-interacting mitosis inhibitor. Monastrol blocks mitosis (IC5N/A = 14 μM) by binding to the mitotic kinesin Eg5, a motor protein required for spindle bipolarity.
  30. PKA, PKG, Casein Kinase I and II inhibitor

    A-3 Hydrochloride is an inhibitor of PKA (cAMP-dependent protein kinase, Ki=4.3μM) and cGMP-dependent protein kinase, Ki=3.8μM, PKC (protein kinase C, Ki=47μM), casein kinase I and II, and MLCK (myosin light chain kinase) ( Ki=7.4μM).
  31. microtubule dynamics inhibitor

    Vinblastine sulfate inhibits microtubule formation and suppresses nAChR activity with IC50 of 8.9 μM in a cell-free assay, used to treat certain kinds of cancer.
  32. Microtubule Associated inhibitor

    CW069 is an allosteric, and selective inhibitor of microtubule motor protein HSET with IC50 of 75 uM, significant selectivity over KSP.
  33. MLCK inhibitor

    MS-444 inhibits the activity of purified smooth muscle myosin light chain kinase (MLCK) with an IC50 value of 10 μM.
  34. Arp2/3 inhibitor

    CK-636 is a Arp2/3 complex inhibitor. CK-636 binds between Arp2 and Arp3, where it appears to block movement of Arp2 and Arp3 into their active conformation.
  35. Hec1 imhibitor

    INH1 is a Hec1 inhibitor. It binds Hec1, inhibiting its association with Nek2 and kinetochores.
  36. Hec1 Inhibitor

    INH6 is a potent Hec1 inhibitor, which specifically disrupts the Hec1/Nek2 interaction and causes chromosome mis-alignment.
  37. Eg5 mitotic motor protein inhibitor

    ARQ 621 is an allosteric, and selective Eg5 mitotic motor protein inhibitor.
  38. Mps1 inhibitor

    MPI-0479605 is an ATP competitive and selective inhibitor of mitotic kinase Mps1
  39. Tubulin inhibitor

    D-64131 is a novel inhibitor of tubulin polymerization that inhibits tumor cell proliferation in vitro (IC50 = 74 nM).
  40. tubulin polymerization inhibitor

    Crolibulin, also known as EPC2407 and crinobulin, is a small molecule tubulin polymerization inhibitor with potential antineoplastic activity.
  41. α4β1/α9β1 inhibitor

    R-BC154 is a high affinity fluorescent α4β1/α9β1 inhibitor.
  42. Integrin Inhibitor

    TCS2314 is a integrin very late antigen-4 (VLA-4; α4β1) antagonist with IC50 value of 4.4 nM.
  43. α2β1 integrin inhibitor

    BTT-3033 is a α2β1 integrin inhibitor.
  44. α9β1/α4β1 integrin inhibitor

    BOP sodium salt is a novel dual alpha9beta1/alpha4beta1 integrin inhibitor.
  45. VLA-4 inhibitor

    BIO-5192 is a small molecule VLA-4 inhibitor.
  46. LFA-1 inhibitor

    RWJ 50271 is a selective inhibitor of LFA-1 (lymphocyte function-associated antigen-1).
  47. Integrin alpha4beta1 inhibitor

    BIO-1211 is an integrin alpha4beta1 inhibitor.
  48. LFA-1/ICAM-1 interaction inhibitor

    A 286982 is a potent inhibitor of the LFA-1/ICAM-1 interaction with IC50 valueof 44 and 35 nM in LFA-1/ICAM-1 binding and LFA-1-mediated cell adhesion, respectively.
  49. MLCK inhibitor

    ML-9 is a selective and potent inhibitor of Akt kinase, inhibits myosin light-chain kinase (MLCK) and stromal interaction molecule 1 (STIM1) activity. ML-9 inhibits inhibits MLCK, PKA and PKC activity with Ki values of 4, 32 and 54 μM, respectively. ML-9 induces autophagy by stimulating autophagosome formation and inhibiting their degradation.
  50. Microtubule/Tubulin Inhibitor

    SSE15206 is a pyrazolinethioamide derivative that has potent antiproliferative activities in cancer cell lines of different origins and overcomes resistance to microtubule-targeting agents.

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