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  1. CDK Inhibitor

    Aloisine A is a potent cyclin-dependent kinase (CDK) inhibitor, exhibiting IC50 values of 0.15 μM for CDK1/cyclin B, 0.12 μM for CDK2/cyclin A, 0.4 μM for CDK2/cyclin E, and 0.16 μM for CDK5/p35. In addition to its CDK inhibitory effects, Aloisine A also inhibits GSK-3α and GSK-3β with IC50 values of 0.5 μM and 1.5 μM, respectively. Notably, it enhances the activity of wild-type and mutant CFTR with submicromolar affinity through a cAMP-independent mechanism, making it a valuable tool for research related to cystic fibrosis and CFTR-related disorders.
  2. CDK Inhibitor

    NSC693868 is a selective inhibitor of cyclin-dependent kinases CDK1 and CDK5, demonstrating IC50 values of 600 nM and 400 nM, respectively. This compound also exhibits weaker inhibition of GSK3β with an IC50 of 1 µM and does not affect CDC25 activity. NSC693868 is employed in research to elucidate the functions of CDK1 and CDK5 within various cellular signaling pathways.
  3. GSK-3α/β Inhibitor

    (E/Z)-BIO-acetoxime is a potent and selective inhibitor of GSK-3α/β, exhibiting an IC50 of 10 nM. This compound demonstrates exceptional selectivity with over 200-fold preference against CDK5/p25, CDK2/cyclin A, and CDK1/cyclin B, with IC50 values of 2.4, 4.3, and 63 μM, respectively. Its strong inhibitory activity makes it a valuable tool for research focused on signaling pathways involved in cell proliferation, differentiation, and apoptosis.
  4. Cdc42 GTPase Inhibitor

    ML141 (CID-2950007) is a potent, allosteric, selective and reversible non-competitive inhibitor of Cdc42 GTPase. ML141 inhibits Cdc42 wild type and Cdc42 Q61L mutant with EC50s of 2.1 and 2.6 μM, respectively. ML141 shows low micromolar potency and selectivity against other members of the Rho family of GTPases (Rac1, Rab2, Rab7). ML141 do not show cytotoxicity in multiple cell lines.
  5. CDK9 Inhibitor

    Tambiciclib is a potent and selective CDK9 inhibitor with an IC50 of 1 nM, exhibiting over 200-fold selectivity against other cyclin-dependent kinases and significant selectivity over DYRK1A/B and a wide range of kinases. This compound has demonstrated effective in vitro and in vivo antileukemic activity in acute myeloid leukemia (AML) models by inhibiting RNA Polymerase II phosphorylation, leading to downregulation of MCL1 and MYC, and subsequent induction of apoptosis. Tambiciclib is suitable for research applications focused on AML and related oncological studies.
  6. Cyclin/CDK Inhibitor

    VMY-1-103 is a selective inhibitor of the cyclin-dependent kinase (CDK) complex, effectively arresting the cell cycle at the G1 phase. It has been demonstrated to reduce mitochondrial membrane potential, induce p53 phosphorylation, and trigger PARP cleavage, ultimately activating caspase-3 and initiating apoptosis in LNCaP prostate cancer cells. This compound is valuable for research applications focused on cancer biology and the mechanisms of cell cycle regulation and apoptosis.
  7. KDM1/CDK1 Inhibitor

    KDM1/CDK1-IN-1 is a potent inhibitor of both KDM1 and CDK1, exhibiting IC50 values of 0.096 μM and 0.078 μM, respectively. This compound effectively induces cell cycle arrest at the G2/M phase and promotes apoptosis in HOP-92 cancer cells. Additionally, KDM1/CDK1-IN-1 demonstrates significant cytotoxic effects against a range of cell lines, including CCRF-CEM, HOP-92, and Hep-G2, with IC50 values of 16.34 μM, 3.45 μM, and 7.79 μM, respectively. Its ability to target critical regulators of the cell cycle makes KDM1/CDK1-IN-1 valuable for cancer research applications.
  8. CDK1 Inhibitor

    Avotaciclib is an orally active inhibitor of cyclin-dependent kinase 1 (CDK1). It effectively inhibits tumor cell proliferation and induces apoptosis, making it a valuable compound for cancer research. This reagent is particularly relevant in the study of cancers, including pancreatic and lung cancer, where CDK1 plays a critical role in cell cycle regulation and tumor growth.
  9. DYRKs/CLKs Inhibitor

    Leucettine L41 is a potent inhibitor of dual-specificity tyrosine phosphorylation-regulated kinases (DYRKs) and CDC-like kinases (CLKs). This compound also modulates GSK-3 signaling, demonstrating significant effects on cellular processes by inhibiting apoptosis and reducing reactive oxygen species (ROS) production. Leucettine L41 promotes cell cycle progression and proliferation in β-cells, enhancing insulin secretion. It is a valuable tool for research focused on neurological disorders, including Alzheimer’s disease, and metabolic diseases such as diabetes.
  10. CHK1 Inhibitor

    Prexasertib dimesylate is a selective checkpoint kinase 1 (CHK1) inhibitor that functions as an ATP-competitive agent. With a Ki of 0.9 nM and an IC50 of less than 1 nM, it effectively inhibits CHK2 and RSK1, exhibiting IC50 values of 8 nM and 9 nM, respectively. This compound induces double-stranded DNA breaks and replication catastrophe, leading to apoptosis. Prexasertib dimesylate demonstrates significant anti-tumor activity, making it a valuable tool for cancer research and therapeutic development.
  11. Cyclins/Cdk Inhibitor

    Aminopurvalanol A is a selective inhibitor of Cyclins/Cdk complexes, primarily targeting the G2/M-phase transition. This compound effectively inhibits cancer cell differentiation and proliferation, making it a valuable tool for cancer research. Additionally, Aminopurvalanol A has been shown to disrupt sperm fertilizing ability by inhibiting capacitation-dependent actin polymerization, highlighting its potential in reproductive biology studies.
  12. CDK9 Inhibitor

    (-)-Enitociclib is a selective inhibitor of cyclin-dependent kinase 9 (CDK9), with demonstrated capacity to induce apoptosis in various cancer cell lines. By inhibiting CDK9, it effectively reduces phosphorylation of Ser2 in the carboxyl-terminal domain (CTD) of RNA polymerase II, leading to downregulation of critical oncogenes such as MYC and MCL1. This compound exhibits significant anti-proliferative effects against MYC-positive lymphoma and multiple myeloma cells, and shows synergistic potential when combined with therapies such as Bortezomib and Lenalidomide, making it a valuable tool in hematological cancer research.
  13. KRAS Inhibitor

    KRAS inhibitor-9 is a selective inhibitor of the KRAS protein, primarily targeting KRAS G12D, G12C, and Q61H mutations with a moderate binding affinity (Kd=92 μM). This compound effectively disrupts the formation of the GTP-bound active form of KRAS, leading to subsequent inactivation of downstream signaling pathways. Biological assays demonstrate that KRAS inhibitor-9 induces G2/M cell cycle arrest and promotes apoptosis in non-small cell lung cancer (NSCLC) cells harboring KRAS mutations, while sparing normal lung cells. Its application is significant in cancer research, particularly in studying KRAS-driven malignancies.
  14. PLK1/BRD4 Inhibitor

    PLK1/BRD4-IN-5 is a potent inhibitor targeting both PLK1 and BRD4, exhibiting IC50 values of 0.3 nM and 60.8 nM, respectively. This compound effectively induces cell cycle arrest in the S phase and promotes apoptosis in MV4-11 cells in a dose-dependent manner. PLK1/BRD4-IN-5 is a valuable tool for cancer research, facilitating studies on mechanisms of tumorigenesis and therapeutic responses.
  15. CDK8 Inhibitor

    CDK8-IN-13 is a potent and selective inhibitor of cyclin-dependent kinase 8 (CDK8), exhibiting an IC50 value of 51.9 nM. This compound induces apoptosis and modulates the expression of phosphorylated STAT1 at serine 727 and STAT5 at serine 726. Due to its antitumor properties, CDK8-IN-13 is valuable for research applications focusing on cancer biology and therapeutic development targeting the CDK8 pathway.
  16. c-Myc Inhibitor

    CMLD010509 is a selective inhibitor of c-Myc, targeting the oncogenic translation program associated with multiple myeloma (MM). This compound demonstrates an IC50 of less than 10 nM in various MM cell lines and effectively induces apoptosis. CMLD010509 operates through a phosphorylation-independent mechanism, making it a valuable tool for studying the role of translation in oncogenesis and developing targeted therapeutic strategies in MM research.
  17. CDK7 Inhibitor

    Samuraciclib is a selective, ATP-competitive inhibitor of CDK7, exhibiting an IC50 of 41 nM. This compound demonstrates significant selectivity over CDK1, CDK2, CDK5, and CDK9, with fold selectivities of 45, 15, 230, and 30, respectively. Samuraciclib effectively inhibits the proliferation of breast cancer cell lines, with GI50 values ranging from 0.2 to 0.3 μM, indicating its potential as an effective therapeutic agent in oncology research.
  18. CDK1 Inhibitor

    Avotaciclib trihydrochloride is an orally active inhibitor of cyclin-dependent kinase 1 (CDK1). This compound has demonstrated the ability to inhibit tumor cell proliferation and induce apoptosis, making it a valuable tool for cancer research. Avotaciclib trihydrochloride is particularly relevant for studies focused on pancreatic and lung cancers.
  19. CDK4 Inhibitor

    CDK4-IN-3 is a potent irreversible inhibitor of cyclin-dependent kinase 4 (CDK4), exhibiting an IC50 of 25 nM and demonstrating over 10-fold selectivity for CDK4 compared to CDK6. This compound effectively arrests the cell cycle in the G₁ phase, leading to the induction of apoptosis in tumor cells. CDK4-IN-3 is valuable for research applications focused on solid tumors, including breast and lung cancers.
  20. CDK1 Inhibitor

    CGP-74514 is a potent and selective inhibitor of cyclin-dependent kinase 1 (CDK1), exhibiting an IC50 of 25 nM. By targeting the CDK1/cyclin B complex, CGP-74514 effectively halts the cell cycle at the G2/M phase and triggers apoptosis in tumor cells. This compound is particularly valuable for research focused on bladder cancer and related therapeutic applications.
  21. CDK Inhibitor

    CDK9-IN-7 is a selective and potent inhibitor of cyclin-dependent kinase 9 (CDK9), demonstrating an IC50 of 11 nM. This compound selectively inhibits CDK9 over other cyclin-dependent kinases, such as CDK4 and CDK6, with IC50 values of 148 nM and 145 nM, respectively. CDK9-IN-7 exhibits significant antitumor activity, inducing apoptosis in non-small cell lung cancer (NSCLC) cells, arresting the cell cycle in the G2 phase, and reducing the stemness characteristics of NSCLC. It is a valuable tool for research into cancer biology and potential therapeutic applications.
  22. CHKα Inhibitor

    ICL-CCIC-0019 is a potent inhibitor of choline kinase α (CHKα), a key enzyme involved in phosphatidylcholine synthesis and cellular signaling. This compound has been shown to induce a G1 phase cell cycle arrest and promote endoplasmic reticulum stress-mediated apoptosis in various cancer cell lines. ICL-CCIC-0019 is valuable for research applications focused on cancer biology, specifically in studies exploring cell cycle regulation and mechanisms of apoptosis in tumor cells.
  23. ROCK Inhibitor

    RKI-1447 dihydrochloride is a selective inhibitor of Rho-associated kinase (ROCK), exhibiting IC50 values of 14.5 nM and 6.2 nM for ROCK1 and ROCK2, respectively. This compound effectively suppresses the growth of colorectal carcinoma cells while inducing apoptosis, making it a valuable tool for research in cancer biology and therapeutics targeting ROCK signaling pathways.
  24. KRAS G12D Inhibitor

    KRAS G12D inhibitor 14 is a selective inhibitor targeting the KRAS G12D mutation, exhibiting a binding affinity (KD) of 33 nM. This compound effectively reduces the levels of active KRAS G12D (KRAS G12D-GTP) without impacting the KRAS G13D variant. It is a valuable tool for research applications focused on elucidating the role of KRAS G12D in oncogenic signaling pathways and developing targeted cancer therapies.
  25. Pan-CDK Inhibitor

    AG-012986 is a potent pan-CDK inhibitor targeting multiple cyclin-dependent kinases including CDK1, CDK2, CDK4, CDK5, CDK6, and CDK9. It demonstrates significant biological activity with Kis of 9.2 nM for CDK4/cyclin, 44 nM for CDK1/cyclin B, and 94 nM for CDK2/cyclin A, alongside IC50 values of 4 nM for CDK9/cyclin T and 22 nM for CDK5/p35. AG-012986 effectively inhibits cell proliferation in cancer cell lines, inducing cell cycle arrest and apoptosis, making it a valuable tool for cancer research and therapeutic development.
  26. CDK2/JAK2/FLT3 Inhibitor

    (E/Z)-Zotiraciclib hydrochloride is a potent inhibitor of CDK2, JAK2, and FLT3, exhibiting IC50 values of 13 nM, 73 nM, and 56 nM, respectively. This orally active compound demonstrates significant efficacy in inhibiting the proliferation of various cancer cell lines. It is a valuable tool for research into therapeutic strategies targeting cell cycle regulation and signal transduction pathways in cancer.
  27. CDK Inhibitor

    RGB-286638 free base is a potent CDK inhibitor targeting cyclin T1-CDK9, cyclin B1-CDK1, cyclin E-CDK2, cyclin D1-CDK4, cyclin E-CDK3, and p35-CDK5, with IC50 values of 1, 2, 3, 4, 5, and 5 nM, respectively. Additionally, it inhibits GSK-3β, TAK1, Jak2, and MEK1, exhibiting IC50 values of 3, 5, 50, and 54 nM. This compound is valuable for research in cell cycle regulation, cancer therapeutics, and signaling pathways involving kinase activity.
  28. CDK2/JAK2/FLT3 Inhibitor

    (E/Z)-Zotiraciclib citrate is a potent inhibitor targeting CDK2, JAK2, and FLT3 kinases. This compound demonstrates significant biological activity in disrupting cell cycle progression and signaling pathways associated with cell proliferation and survival. It is utilized in cancer research applications, particularly for studies involving hematological malignancies and solid tumors where these kinases are dysregulated.
  29. CDK2/JAK2/FLT3 Inhibitor

    Zotiraciclib hydrochloride is a novel small molecule inhibitor targeting cyclin-dependent kinase 2 (CDK2), Janus kinase 2 (JAK2), and Fms-like tyrosine kinase 3 (FLT3). This reagent demonstrates anti-tumor activity by downregulating the Myc oncogene through CDK9 inhibition, contributing to reduced tumor growth. Zotiraciclib hydrochloride is particularly relevant for research into cancers capable of crossing the blood-brain barrier, and elevated levels of the MCL-1 protein may indicate its potential as a prognostic marker and therapeutic target in cancer studies.
  30. Aurora Kinase A/JAK2 Inhibitor

    AJI-100 is a dual-target inhibitor that selectively inhibits Aurora kinase A and JAK2 with IC50 values of 12.7 nM and 18.5 nM, respectively. By directly blocking Aurora kinase A, AJI-100 disrupts T cell mitosis and cell polarity, while its inhibitory effect on JAK2 activation prevents STAT3 phosphorylation. This compound is valuable for research focused on modulating immune responses and has potential applications in the prevention of graft-versus-host disease (GVHD).
  31. CDK Inhibitor

    3-Methylthienyl-carbonyl-JNJ-7706621 is a selective cyclin-dependent kinase (CDK) inhibitor, demonstrating potent activity with IC50 values of 6.4 nM for CDK1/cyclin B and 2 nM for CDK2/cyclin A. Additionally, it exhibits strong inhibition of GSK-3 (IC50=0.041 μM) and moderate inhibition against CDK4, VEGF-R2, and FGF-R2 with IC50s of 0.11, 0.13, and 0.22 μM, respectively. This compound is primarily utilized in cancer research to explore CDK-related pathways and therapeutic strategies.
  32. CDK1/Cyc B Inhibitor

    CDK1/Cyc B-IN-1 is a selective inhibitor of the CDK1/cyclin B complex, demonstrating an IC50 of 97 nM. This compound effectively induces apoptosis and facilitates G2/M phase cell cycle arrest, making it a valuable tool for studying cell proliferation. CDK1/Cyc B-IN-1 exhibits broad-spectrum cytotoxic activity against various cancer cell lines, supporting its potential in cancer research applications.
  33. CDK/CRK Inhibitor

    RGB-286147 is a selective ATP-competitive inhibitor of cyclin-dependent kinases (CDKs) and CDK-related kinases (CRKs), exhibiting IC50 values between 9 to 839 nM. This compound demonstrates minimal activity against non-CDK/CRK kinases. RGB-286147 induces apoptosis in cancer cells and shows significant anti-tumor effects, making it a valuable tool for research in cancer biology and therapeutic development targeting CDK pathways.
  34. CHK1 Inhibitor

    Prexasertib Mesylate Hydrate is a selective, ATP-competitive inhibitor of checkpoint kinase 1 (CHK1) with a Ki of 0.9 nM and an IC50 of <1 nM. It also inhibits checkpoint kinase 2 (CHK2) with an IC50 of 8 nM and ribosomal S6 kinase 1 (RSK1) with an IC50 of 9 nM. By inducing double-stranded DNA breakage and replication catastrophe, Prexasertib Mesylate Hydrate promotes apoptotic cell death, exhibiting significant anti-tumor activity. This reagent is primarily utilized in cancer research to explore mechanisms of DNA damage response and therapeutic resistance.
  35. c-MYC Inhibitor

    IZTZ-1 is an imidazole-benzothiazole conjugate that functions as a c-MYC inhibitor by stabilizing the G-quadruplex (G4) structure of c-MYC. This stabilization results in the downregulation of c-MYC expression, leading to induction of cell cycle arrest and apoptosis in various cell lines, including B16 melanoma cells. Due to its ability to inhibit cell proliferation and exhibit antitumor activity, IZTZ-1 is a valuable tool for researchers studying melanoma and related cancer pathways.
  36. ROCK Inhibitor

    PT-262 is a selective ROCK inhibitor with an IC50 of approximately 5 μM. This compound induces loss of mitochondrial membrane potential and enhances caspase-3 activation, leading to apoptosis. PT-262 also inhibits phosphorylation of ERK and CDC2 through a p53-independent mechanism, disrupts cytoskeletal dynamics, and impairs cell migration. Its efficacy in promoting anti-cancer activity makes PT-262 a valuable reagent for cancer research.
  37. Aurora kinase Inhibitor

    Aurora kinase-IN-8 is an orally active inhibitor of Aurora kinases, specifically targeting Aurora A and B kinases with IC50 values of 2.8 nM and 28.1 nM, respectively. This compound effectively disrupts spindle formation, induces G2/M phase arrest, and promotes apoptosis in cancer cells. It is particularly relevant for research applications focused on malignancies, including triple-negative breast cancer.
  38. CDK6/PIM1 Inhibitor

    CDK6/PIM1-IN-1 is a potent dual inhibitor targeting CDK6 and PIM1, with IC50 values of 39 nM and 88 nM, respectively, and an additional inhibition of CDK4 at an IC50 of 3.6 nM. This reagent significantly inhibits the proliferation of acute myeloid leukemia (AML) cells, induces G1 phase cell cycle arrest, and promotes apoptosis. CDK6/PIM1-IN-1 demonstrates strong anti-AML activity, making it a valuable tool for research in cancer biology and therapeutic development.
  39. CDK Inhibitor

    1-Stearoyl-2-Adrenoyl-sn-glycero-3-PC is a cyclin-dependent kinase (CDK) inhibitor that plays a crucial role in cancer research. This compound induces apoptosis and effectively inhibits the proliferation of a variety of cancer cell lines, making it a valuable tool for studying cancer biology and therapeutic responses. Its ability to impact CDK activity provides insights into cell cycle regulation and potential cancer treatment strategies.
  40. Aurora A Kinase Inhibitor

    Alisertib sodium is a selective inhibitor of Aurora A kinase, exhibiting an IC50 of 1.2 nM. This compound disrupts mitotic spindle formation and leads to mitotic accumulation, thereby inducing apoptosis and autophagy in leukemic cells via the AKT/mTOR/AMPK/p38 signaling pathway. Alisertib sodium demonstrates significant antitumor activity, making it a valuable reagent for cancer research and therapeutic applications.
  41. CHK1 Inhibitor

    Prexasertib mesylate is a selective ATP-competitive inhibitor of checkpoint kinase 1 (CHK1), demonstrating a Ki of 0.9 nM and an IC50 of less than 1 nM. It also inhibits CHK2 and RSK1 with IC50 values of 8 nM and 9 nM, respectively. By inducing double-stranded DNA breaks and triggering replication catastrophe, Prexasertib mesylate leads to apoptosis. Its potent anti-tumor activity makes it valuable for cancer research applications, particularly in studies focusing on DNA damage response and cell cycle regulation.
  42. Selective ROCK Inhibitor

    Y-27632 hydrochloride hydrate is a selective inhibitor of Rho-associated protein kinases (ROCK-I and ROCK-II), exhibiting ATP-competitive activity with IC50 values of 220 nM and 300 nM, respectively. This compound has been shown to reduce Doxorubicin-induced apoptosis in human cardiac stem cells and suppress apoptosis in dissociation-induced murine prostate stem/progenitor cells. Additionally, Y-27632 hydrochloride hydrate enhances the differentiation of human induced pluripotent stem cells (hIPSCs) towards a mesendodermal lineage by modulating epithelial-mesenchymal transition.
  43. HDAC1/2 and CDK2 Inhibitor

    HDAC1/2 and CDK2-IN-1 is a dual inhibitor targeting HDAC1, HDAC2, and CDK2, with IC50 values of 70.7 μM, 23.1 μM, and 0.80 μM, respectively. This compound effectively disrupts the cell cycle and promotes apoptosis in tumor cells, demonstrating significant in vivo antitumor activity. It is suitable for research applications focused on cancer biology and therapeutic interventions targeting histone deacetylases and cyclin-dependent kinases.
  44. CDK2/9 Inhibitor

    ZLMT-12 is a potent CDK2/9 inhibitor, demonstrating IC50 values of 0.002 μM and 0.011 μM against CDK9 and CDK2, respectively. This compound is derived from tacrine and exhibits weak inhibition of acetylcholinesterase (IC50 = 19.023 μM) and butyrylcholinesterase (IC50 = 2.768 μM). ZLMT-12 is characterized by low toxicity and notable antiproliferative activity, effectively inducing apoptosis and facilitating cell cycle arrest in the S and G2/M phases. This compound serves as a valuable tool for research in cell cycle regulation and therapeutic development in cancer biology.
  45. Aurora B Inhibitor

    Barasertib dihydrochloride is a selective inhibitor of Aurora B kinase, exhibiting an IC50 of 0.37 nM in cell-free assays. This compound effectively induces growth arrest and apoptosis in various cancer cell lines, making it a valuable tool for cancer research. Its mechanism of action provides insights into the role of Aurora B in cell cycle regulation and tumorigenesis.
  46. 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.
  47. CDK7 Inhibitor

    CDK7-IN-30 is a potent CDK7 inhibitor with an IC50 value of 7.21 nM, targeting the phosphorylation of RNA Polymerase II and CDK2. This compound demonstrates significant pro-apoptotic effects and exhibits anti-cancer activity, making it a valuable tool for cancer research. Its mechanism of action offers insights into cell cycle regulation and transcriptomic processes, facilitating the exploration of therapeutic strategies in oncology.
  48. CDK9 Inhibitor

    A-1592668 is a selective inhibitor of cyclin-dependent kinase 9 (CDK9), which plays a critical role in transcriptional regulation. This compound induces apoptosis in various cancer cell lines and demonstrates synergistic effects when combined with Venetoclax, effectively inhibiting the growth of Jeko-1 tumors. A-1592668 is a valuable tool for research in cancer biology and therapeutic development targeting CDK9 pathways.
  49. CDK6/BRD4 Inhibitor

    BC13 is a selective inhibitor of CDK6 and BRD4, demonstrating IC50 values of 234 nM and 36 nM, respectively. This compound exhibits notable antiproliferative effects, facilitating cell apoptosis and inducing DNA damage in various cell lines. Additionally, BC13 has been shown to elevate reactive oxygen species (ROS) levels, making it a valuable tool for research in cancer biology and therapeutic development targeting cell cycle regulation.
  50. Aurora A/Aurora B/HDAC1/HDAC2 Inhibitor

    Aurora kinase/HDAC-IN-1 is a potent dual inhibitor targeting Aurora A, Aurora B, HDAC1, and HDAC2. This compound promotes histone H3 acetylation, inhibits Aurora A phosphorylation and downstream signaling, and induces apoptosis through G2/M cell-cycle arrest. It demonstrates significant antiproliferative activity in colorectal cancer cells, with an IC50 of 30.2 nM in HCT-116 cells, and effectively suppresses tumor growth in HCT-116 colorectal cancer xenograft mouse models. This reagent is valuable for research in cancer biology and therapeutic application development.

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