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  1. ALK/EGFR Inhibitor

    ALK/EGFR-IN-1-d5 is a deuterated dual-target inhibitor that specifically targets ALK and EGFR, exhibiting IC50 values of 1.08 nM for EGFR and 2.395 nM for ALK. This compound effectively inhibits phosphorylated proteins within the EGFR, ALK, and BRK signaling pathways, disrupting the cell cycle and subsequently promoting apoptosis through a decrease in mitochondrial membrane potential. Furthermore, ALK/EGFR-IN-1-d5 shows significant anti-tumor activity in preclinical animal models, indicating its potential for advancing research in cancer therapeutics.
  2. ALK Inhibitor

    ALK-IN-22 is a potent inhibitor of Anaplastic Lymphoma Kinase (ALK), demonstrating IC50 values of 2.3 nM, 3.7 nM, and 2.9 nM against ALK, ALKL1196M, and ALKG1202R, respectively. This compound effectively down-regulates the phosphorylation of ALK and its downstream signaling proteins, thereby inducing apoptosis in tumor cells. ALK-IN-22 is suitable for various research applications, particularly in the study of tumors associated with ALK dysregulation.
  3. 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.
  4. EGFR Inhibitor

    EGFR-IN-141 is a potent inhibitor of the epidermal growth factor receptor (EGFR), demonstrating an IC50 of 2.67 nM. This compound exhibits significant cytotoxicity in A549 lung cancer cells, with an IC50 of 13.75 μM. EGFR-IN-141 has been shown to induce apoptosis and cause mitochondrial membrane depolarization, highlighting its potential for antitumor efficacy in cancer research applications.
  5. VEGFR Inhibitor

    VEGFR-IN-3 is a selective VEGFR inhibitor that demonstrates significant antiproliferative activity against OVCAR-4 and MDA-MB-468 cancer cell lines, with IC50 values of 0.29 μM and 0.35 μM, respectively. This compound is valuable for research applications focused on cancer biology, particularly in studies investigating angiogenesis and tumor growth modulation. Its efficacy makes it a suitable candidate for exploring therapeutic strategies targeting vascular endothelial growth factor receptor pathways.
  6. HIF-1α Inhibitor

    GEM-5 is a gemcitabine-based conjugate that functions as a potent HIF-1α inhibitor, with an IC50 value of 30 nM. This compound effectively down-regulates HIF-1α expression while promoting the up-regulation of the tumor suppressor protein p53. GEM-5 has demonstrated the ability to induce apoptosis in A2780 cancer cells and inhibit tumor growth, making it a valuable tool for cancer research and therapeutic studies targeting hypoxia-driven tumor progression.
  7. EGFR Inhibitor

    EGFR-IN-172 is a selective epidermal growth factor receptor (EGFR) inhibitor that effectively disrupts the proliferation of non-small cell lung cancer (NSCLC) cells harboring L858R, T790M, and C797S drug-resistant mutations. This compound acts by inhibiting EGFR phosphorylation, leading to cell cycle arrest and apoptosis in affected cells. EGFR-IN-172 serves as a valuable tool for research focused on NSCLC treatment and the development of targeted cancer therapies.
  8. PI3K/VEGFR2 Inhibitor

    PI3K/VEGFR2-IN-1 is a highly effective dual inhibitor of PI3K and VEGFR2, exhibiting IC50 values of 2.21 μM and 68 μM, respectively. This compound has been shown to induce apoptosis in various cancer cell lines. It is suitable for research applications focused on cancer biology and therapy development targeting the PI3K/VEGFR2 signaling pathways.
  9. FLT3 Inhibitor

    AFG206 is a first-generation ATP-competitive "type II" inhibitor of FLT3. This compound effectively inhibits cell proliferation with an IC50 of approximately 0.1 µM by inducing apoptosis in FLT3-ITD-Ba/F3 and D835Y-Ba/F3 cell lines. AFG206 holds significant promise for research applications related to acute myeloid leukemia.
  10. Bcr-Abl1 Inhibitor

    Radotinib dihydrochloride is a selective Bcr-Abl1 tyrosine kinase inhibitor with an IC50 of 34 nM, demonstrating oral bioavailability and the ability to penetrate the blood-brain barrier. This compound exhibits significant anti-tumor activity by inhibiting cell proliferation, inducing cell cycle arrest, and promoting apoptosis in tumor cells. Radotinib dihydrochloride is utilized in research related to chronic myeloid leukemia, multiple myeloma, and neurodegenerative disorders, particularly those involving prion diseases.
  11. BCR-ABL Inhibitor

    CHMFL-48 is a potent BCR-ABL kinase inhibitor that effectively targets both wild-type and imatinib-resistant mutants. With IC50 values of 1 nM for ABL wild-type and 0.8 nM for the ABL T315I mutant, CHMFL-48 inhibits autophosphorylation of BCR-ABL, disrupting downstream signaling pathways involving STAT5 and CRKL. This mechanism results in cell cycle arrest and the induction of apoptosis, making CHMFL-48 a valuable tool for research focused on chronic myeloid leukemia (CML).
  12. FLT3 Inhibitor

    BPR1J-340 is a potent inhibitor of FLT3, exhibiting an IC50 of approximately 25 nM. It effectively inhibits the phosphorylation of FLT3 and STAT5, inducing apoptosis in FLT3-ITD positive acute myeloid leukemia (AML) cells. This compound demonstrates considerable anti-tumor activities, making it a valuable tool for research in cancer biology and therapeutic strategies targeting FLT3 dysregulation.
  13. BCR-ABL Inhibitor

    HS-438 is a potent and selective inhibitor of BCR-ABL, a fusion protein associated with chronic myeloid leukemia (CML). This compound exhibits significant antiproliferative effects, leading to reduced phosphorylation of BCR-ABL at Tyr177, and promotes apoptosis alongside G0/G1 cell cycle arrest. HS-438 demonstrates substantial antitumor activity, making it a valuable tool for investigations into CML and related therapeutic strategies.
  14. VEGFR2 Inhibitor

    YLL545 is a potent inhibitor of vascular endothelial growth factor receptor 2 (VEGFR2), effectively blocking VEGF-induced phosphorylation of VEGFR2 and preventing the activation of downstream signaling mediators such as phosphorylated STAT3 and phosphorylated ERK1/2 in human umbilical vein endothelial cells (HUVEC). This compound demonstrates significant anti-angiogenic properties by suppressing the proliferation, migration, and invasion of HUVEC. Furthermore, YLL545 has shown the capability to induce apoptosis in breast cancer models and inhibit tumor growth, making it a valuable tool for cancer research and the study of angiogenesis.
  15. FLT3 Inhibitor

    Tandutinib sulfate is a selective inhibitor of FLT3, exerting its effects with an IC50 of 0.22 μM. It also targets c-Kit and PDGFR, with IC50 values of 0.17 μM and 0.20 μM, respectively. This compound is particularly relevant for research in acute myelogenous leukemia (AML) and is noted for its capacity to cross the blood-brain barrier, expanding its potential applications in hematological malignancies and central nervous system studies.
  16. FAK Signaling Inhibitor

    FAK-IN-5 is a potent inhibitor of focal adhesion kinase (FAK) signaling. It effectively induces apoptosis and autophagy in various cell types, making it a valuable tool for studying cellular responses to FAK modulation. This compound is utilized in cancer research and investigations related to cell migration and survival pathways.
  17. VEGFR2 Inhibitor

    VEGFR-2-IN-18 is a potent inhibitor of the vascular endothelial growth factor receptor 2 (VEGFR-2) with an IC50 of 60 nM. This compound induces apoptosis in targeted cells and exhibits significant antitumor activity. It is a valuable reagent for research applications focused on angiogenesis, cancer biology, and the development of targeted therapies.
  18. EGFR/FAK Inhibitor

    EGFR-IN-46 is a potent dual inhibitor targeting the epidermal growth factor receptor (EGFR) and focal adhesion kinase (FAK), with IC50 values of 20.17 nM and 14.25 nM, respectively. This compound effectively inhibits cancer cell proliferation and induces apoptotic pathways in these cells. EGFR-IN-46 is designed for research applications focused on cancer biochemistry and therapeutic development.
  19. FGFR Inhibitor

    FGFR-IN-8 is a potent pan-FGFR inhibitor that targets both wild-type and mutant forms of fibroblast growth factor receptors (FGFRs). With impressive inhibitory potency, it demonstrates IC50 values of less than 0.5 nM against FGFR1, V564F-FGFR2, and FGFR3, alongside 22.6 nM for V555M-FGFR3, and 7.30 nM for FGFR4. This compound induces apoptosis in cancer cells and exhibits notable anticancer properties, making it a valuable reagent for cancer research and therapeutic studies involving FGFR signaling pathways.
  20. EGFR Inhibitor

    EGFR-IN-60 is a potent inhibitor of the epidermal growth factor receptor (EGFR), specifically targeting EGFRWT, EGFRT790M, EGFRL858R, and JAK3 with IC50 values of 83, 26, 53, and 69 nM, respectively. This compound effectively suppresses the proliferation of H1975 cells with the EGFRT790M mutation (IC50=1.32 µM) while yielding less potency against A431 cells expressing EGFRWT (IC50=4.96 µM). With favorable oral bioavailability, EGFR-IN-60 demonstrates significant antitumor activity, promoting cell death via apoptosis as indicated by an increased Bax/Bcl-2 ratio. This makes it a valuable candidate for research into targeted therapies for EGFR-related cancers.
  21. EGFR Inhibitor

    EGFR-IN-62 is a potent and reversible inhibitor of the epidermal growth factor receptor (EGFR) kinase, demonstrating IC50 values of 10 nM for the L858R/T790M mutation, 29 nM for wild-type EGFR, and 242 nM for the L858R/T790M/C797S mutation. This compound exhibits significant antiproliferative effects on human lung cancer cell lines A549 and H1975, with IC50 values of 2.53 μM and 1.56 μM, respectively. Furthermore, EGFR-IN-62 promotes dose-dependent apoptosis, induces G1/G0 phase arrest, and inhibits cell motility, making it a valuable tool for research in cancer biology and targeted therapies.
  22. EGFR Inhibitor

    EGFR-IN-52 is a potent inhibitor of the epidermal growth factor receptor (EGFR) with IC50 values of 0.358 µM for wild-type EGFR, 86.02 µM for the L858R-TK variant, and 432.67 µM for the T790M-TK resistance mutant. This compound exhibits significant cytotoxicity against various cancer cell lines and is known to induce apoptosis. EGFR-IN-52 is valuable for research applications focusing on targeted cancer therapies and the study of EGFR signaling pathways.
  23. FAK Inhibitor

    FAK-IN-4 is a potent inhibitor of focal adhesion kinase (FAK), a key regulator of cellular adhesion and signaling pathways in cancer. This compound exhibits significant anti-cancer properties, including the induction of apoptosis in various cancer cell lines. FAK-IN-4 is valuable for research applications focused on cancer biology, particularly in studying the modulation of FAK-related signaling pathways and their role in tumor progression.
  24. FLT3 Inhibitors

    FLT3-IN-32 is a highly selective, orally bioavailable inhibitor of the FLT3 receptor tyrosine kinase. It effectively targets FLT3-activating mutations, promoting apoptosis in malignant cells. In vivo studies demonstrate significant anti-tumor efficacy in MV4-11 xenograft models within NOD/SCID mice, leading to notable extensions in survival. FLT3-IN-32 is valuable for research applications focused on acute myeloid leukemia.
  25. EGFR Inhibitor

    EGFR-IN-3 is a selective inhibitor of the epidermal growth factor receptor (EGFR), demonstrating an IC50 of 0.32 µM against EGFR wild-type kinase. This compound exhibits significant cytotoxic effects on various cancer cell lines and promotes apoptosis, making it a valuable tool for studies related to cancer biology and therapeutic development targeting EGFR signaling pathways.
  26. VEGFR-2 Inhibitor

    VEGFR-2-IN-23 is a highly selective inhibitor of the vascular endothelial growth factor receptor 2 (VEGFR-2), exhibiting an IC50 value of 0.34 nM. This compound demonstrates significant antitumor activity by inducing apoptosis and causing cell cycle arrest at the G1 phase. VEGFR-2-IN-23 is particularly relevant for research focused on oncology and angiogenesis, providing valuable insights into therapeutic strategies targeting vascular growth pathways.
  27. NF-κB/MAPK/FAK/Akt Inhibitor

    Ephemeranthol A is an inhibitor of NF-κB, MAPK, FAK, and Akt signaling pathways. This phenanthrene compound demonstrates notable anti-inflammatory effects through the inhibition of NF-κB and MAPK pathways in macrophages. Additionally, Ephemeranthol A induces apoptosis and inhibits metastasis in non-small cell lung cancer by suppressing FAK/Akt signaling and epithelial-mesenchymal transition (EMT) processes. It is applicable for research into acute and chronic inflammatory diseases as well as non-small cell lung cancer.
  28. FLT3 Inhibitor

    HSB401 is an orally active FLT3 inhibitor with IC50 values of 28, 5, 72, and 51 nM for FLT3-WT, FLT3-D835Y, FLT3-ITD-F691L, and FLT3-ITD, respectively. It effectively downregulates FLT3 signaling, leading to cell cycle arrest and apoptosis in sensitive cells. Notably, HSB401 spares c-KIT inhibition, minimizing the risk of myelosuppression. This compound has demonstrated significant tumor growth suppression in the MV4-11 xenograft mouse model and is valuable for research in acute myeloid leukemia.
  29. EGFRT790M/L858R Inhibitor

    EGFR T790M/L858R-IN-2 is a selective inhibitor of the EGFR T790M and L858R mutants, exhibiting IC50 values of 3.5 nM and 1290 nM for these targets, respectively. This compound effectively reduces the phosphorylation of EGFR, AKT, and ERK1/2, subsequently inducing apoptosis and causing cell cycle arrest in the G1 phase. EGFR T790M/L858R-IN-2 demonstrates significant anti-cancer activity, making it a valuable tool for research in targeted therapies for lung cancer and other malignancies associated with these mutations.
  30. FLT3 Inhibitor

    SILA-123 is a potent FLT3 inhibitor, demonstrating IC50 values of 2.1 nM for FLT3-WT and 1.0 nM for FLT3-ITD. This compound effectively inhibits FLT3 phosphorylation and disrupts downstream signaling pathways, resulting in apoptosis through cell cycle arrest in the G0/G1 phase. SILA-123 is particularly valuable in research related to acute myeloid leukemia.
  31. VEGFR2 Inhibitor

    VEGFR-2-IN-19 is a potent inhibitor of Vascular Endothelial Growth Factor Receptor 2 (VEGFR2). This compound has been shown to induce apoptosis in cancer cells and elevate intracellular levels of reactive oxygen species. VEGFR-2-IN-19 is primarily utilized in cancer research, offering potential therapeutic insights into tumor progression and vascularization.
  32. FAK Inhibitor

    FAK-IN-24 is a potent inhibitor of focal adhesion kinase (FAK) with an IC50 of 0.815 nM. This compound induces DNA damage and apoptosis, demonstrating significant anti-glioblastoma activity. FAK-IN-24 effectively inhibits the proliferation of glioblastoma cell lines U87-MG and U251, with IC50 values of 15 nM and 20 nM, respectively, and has shown the ability to suppress tumor growth in U87-MG xenograft models.
  33. FLT3 Inhibitor

    JH-IX-179 is a potent FLT3 inhibitor with an IC50 of 4 nM for FLT3-ITD and 10 nM for FLT3-D835Y variants. This compound effectively induces cell cycle arrest in the G1 phase and promotes apoptosis in cells expressing the FLT3-ITD mutation. JH-IX-179 is primarily utilized in research focused on acute myeloid leukemia (AML), providing valuable insights into therapeutic strategies targeting FLT3 signaling pathways.
  34. FLT3/HDAC Inhibitor

    HDAC-IN-63 is a dual inhibitor targeting both FLT3 and HDAC, with IC50 values of 0.844 nM for FLT3 and 30.0 nM for HDAC1. It demonstrates potent inhibition of MV4-11 cell proliferation, with an IC50 of 92 nM, and effectively induces apoptosis while arresting the cell cycle in MV4-11 cells. This compound serves as a valuable research tool for the study of acute myeloid leukemia (AML) and the exploration of novel therapeutic strategies.
  35. EGFR Inhibitor

    EGFR-IN-117 is a potent EGFR inhibitor designed to target mutated forms of the epidermal growth factor receptor. It exhibits significant inhibitory activity against a range of EGFR mutant cell lines, including H1975, PC-9, BaF3-EGFRL858R/T790M/C797S, and BaF3–C797S/Del19/T790M, with IC50 values of 13 nM, 19 nM, 1.2 nM, and 1.3 nM, respectively. In addition to its antiproliferative effects, EGFR-IN-117 induces apoptosis and demonstrates antitumor efficacy in preclinical mouse models, making it a valuable tool for cancer research.
  36. VEGFR-2 Inhibitor

    VEGFR-2-IN-13 is a potent inhibitor of the vascular endothelial growth factor receptor-2 (VEGFR-2), demonstrating an IC50 value of 3.4 nM. This compound effectively disrupts the cell cycle in HepG2 cells by inducing G2/M phase arrest and triggering apoptosis. VEGFR-2-IN-13 is valuable for research applications focusing on angiogenesis, cancer development, and therapeutic interventions targeting tumor growth.
  37. VEGFR-2 Inhibitor

    VEGFR-2-IN-28 is a selective inhibitor of the vascular endothelial growth factor receptor 2 (VEGFR-2) with an IC50 value of 0.83 µM. This compound has been shown to induce apoptosis in cancer cells, highlighting its potential as an anticancer agent. VEGFR-2-IN-28 is suitable for research applications focused on tumor vascularization and the mechanisms of cancer cell survival signaling.
  38. FLT3 Inhibitor

    FLT3-IN-31 is a potent inhibitor of FLT3, exhibiting IC50 values of 0.16 nM for the wild-type FLT3 receptor and 2.4 nM for the FLT3-D835Y mutant. It demonstrates significant antiproliferative activity by decreasing the protein expression of phosphorylated FLT3, STAT5, and ERK. Additionally, FLT3-IN-31 induces apoptosis and triggers cell cycle arrest at the G1 phase, making it a valuable tool for research in targeted cancer therapies and leukemia treatment.
  39. FLT3/HDAC Inhibitor

    FLT3/HDAC-IN-3 is a dual inhibitor targeting FLT3 and HDAC, with a potent inhibitory effect on FLT3 (IC50 = 14 nM) and HDAC isoforms, including HDAC1 (IC50 = 27 nM) and HDAC6 (IC50 = 20 nM). This compound demonstrates selective inhibition, exhibiting reduced activity against HDAC8 and no activity toward HDAC4. FLT3/HDAC-IN-3 has shown anti-proliferative effects across various hematological malignancy cell lines and demonstrates efficacy in the Jeko-1 xenograft model without significant toxicity. It is suitable for research focused on hematological malignancies and the role of dual inhibition in therapeutic strategies.
  40. BTK Inhibitor

    BTK-IN-7 is a potent and selective Bruton’s Tyrosine Kinase (BTK) inhibitor, exhibiting an IC50 of 4.0 nM. This compound demonstrates exceptional selectivity in enzymatic assays, with over 250-fold selectivity for ITK and over 2500-fold for EGFR, as well as in cellular contexts with a 227-fold and 27-fold selectivity respectively. BTK-IN-7 exhibits significant antitumor activity, making it a valuable tool for research in cancer biology and the development of targeted therapies.
  41. 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.
  42. BTK Inhibitor

    BTK-IN-9 is a reversible Bruton's tyrosine kinase (BTK) inhibitor known for its potent antiproliferative effects against mantle cell lymphoma. This compound disrupts mitochondrial membrane potential and elevates reactive oxygen species levels in Z138 cells, leading to increased apoptotic activity. BTK-IN-9 is valuable for research applications focusing on lymphoma biology and the mechanisms of apoptosis.
  43. ALK Inhibitor

    KF-20444 is a selective ALK inhibitor that effectively penetrates the blood-brain barrier. It demonstrates potent activity against ALK fusion proteins such as EML4-ALK and various ALK resistance mutations, including L1196M, G1202R, and F1174L. By inhibiting ALK phosphorylation in ALK-driven cancer cell lines, KF-20444 suppresses cell proliferation and promotes apoptosis. This compound shows significant anti-tumor efficacy in mouse models of ALK-positive non-small cell lung cancer (NSCLC) and neuroblastoma, making it a valuable tool for research on ALK-driven malignancies.
  44. FGFR2 Kinase Inhibitor

    Picrasidine Q is a FGFR2 kinase inhibitor derived from the alkaloid components of Angelica keiskei. It exhibits significant anti-cancer properties by inducing apoptosis and causing G1 phase cell cycle arrest in human esophageal cancer cell lines. This compound is valuable for research focused on cancer biology and the molecular mechanisms underlying cell transformation and proliferation.
  45. EGFR Inhibitor

    EGFR-IN-161 is a potent and reversible inhibitor targeting L858R/T790M/C797S mutant EGFR kinases, demonstrating an IC50 of 0.87 nM. This compound effectively induces apoptosis, causes G1-phase cell cycle arrest, and inhibits migration in tumor cells, making it a valuable tool for cancer research focused on EGFR mutations. Its specificity and efficacy provide significant potential in the study of targeted therapies for resistant forms of non-small cell lung cancer.
  46. EGFR Inhibitor

    EGFR Kinase Inhibitor 1 is a selective inhibitor targeting the epidermal growth factor receptor (EGFR), exhibiting IC50 values of 37 nM for wild-type, 1.7 nM for L858R/T790M, and greater than 300 nM for L858R/T790M/C797S mutant variants. This compound induces apoptosis and promotes cell cycle arrest at the G0/G1 phase, effectively inhibiting cell motility. Its strong antiproliferative and anti-tumor activities make it a valuable tool for research in cancer biology, particularly in studies related to EGFR-driven malignancies.
  47. EGFR Inhibitor

    EGFR-IN-56 is a potent inhibitor of the epidermal growth factor receptor (EGFR), demonstrating IC50 values of 541.7 nM and 132.1 nM against the EGFRT790M and EGFRT790M/L858R mutations, respectively. This compound significantly disrupts cell cycle progression by blocking cancer cells in the G2/M phase and facilitating late apoptosis. It is suitable for studies examining the therapeutic potential of EGFR inhibition in cancer research.
  48. VEGFR-2/β-tubulin Inhibitor

    VEGFR-2-IN-22 is a dual inhibitor targeting VEGFR-2 and β-tubulin polymerization, demonstrating an IC50 of 19.82 nM against VEGFR-2. This compound promotes apoptosis, making it a valuable tool for studying angiogenesis and cancer biology. Its mechanism of action provides insights into vascular endothelial growth factor pathways and their role in tumor progression.
  49. FAK Inhibitor

    FAK-IN-29 is a potent selective inhibitor of focal adhesion kinase (FAK), exhibiting an IC50 of 0.5 nM. This compound demonstrates significant antitumor activity by inhibiting proliferation and colony formation of MDA-MB-231 cells, as well as inducing cell cycle arrest and apoptosis. FAK-IN-29 is a valuable tool for investigating the role of FAK in various tumors, particularly in the research of triple-negative breast cancer.
  50. FLT3 Inhibitor

    Tuspetinib dihydrochloride is a selective FLT3 inhibitor that demonstrates potent inhibitory activity with IC50 values of 1.1 nM for FLT3 WT, 1.8 nM for FLT3 ITD, and 1.0 nM for FLT3 D835Y kinases. As a reversible type I inhibitor, it effectively modulates downstream signaling pathways, including p-STAT5, p-ERK, SYK, JAK1/2, and TAK1. Tuspetinib dihydrochloride is utilized in research for its ability to inhibit proliferation and induce apoptosis in leukemic cells, making it significant for studies on hematological malignancies.

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