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  • American Society of Hematology  (5)
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  • American Society of Hematology  (5)
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  • 1
    In: Blood, American Society of Hematology, Vol. 128, No. 22 ( 2016-12-02), p. 5225-5225
    Abstract: Acute myeloid leukemia (AML) is a highly heterogenous disease and the patients with an internal tandem duplication mutation in FMS-liketyrosine-kinase-3 (FLT3-ITD) have a negative impact on outcome. Finding effective treatment regimens is desperately needed. In this study, we explored the inhibitory effects and mechanism of homoharringtonine (HHT) in combination with ibrutinib on FLT3-ITD mutant AML cells. Consequently, we observed a synergistic inhibitory effect when ibrutinib was combined with HHT to inhibit cell proliferation, induce apoptosis and arrest cell cycle at G0/G1 phase in MV4-11 and MOLM-13 leukemia cells. Our results indicate that the mechanisms of the combination effect are mainly via regulating the STAT5/Pim-2/C-Myc pathway, AKT pathway and Bcl-2 family, activation p21WAF1/CIP1 and inhibiting CCND/CDK complex protein. Interestingly, synergistic cytotoxicity of ibrutinib and HHT was both dependent of FLT3 and BTK. Here we provide a novel effective therapeutic approach for the treatment of AML patients with FLT3-ITD mutation. Disclosures No relevant conflicts of interest to declare.
    Type of Medium: Online Resource
    ISSN: 0006-4971 , 1528-0020
    RVK:
    RVK:
    Language: English
    Publisher: American Society of Hematology
    Publication Date: 2016
    detail.hit.zdb_id: 1468538-3
    detail.hit.zdb_id: 80069-7
    Location Call Number Limitation Availability
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  • 2
    Online Resource
    Online Resource
    American Society of Hematology ; 2018
    In:  Blood Vol. 132, No. Supplement 1 ( 2018-11-29), p. 5153-5153
    In: Blood, American Society of Hematology, Vol. 132, No. Supplement 1 ( 2018-11-29), p. 5153-5153
    Abstract: Ibrutinib, an inhibitor of Bruton's tyrosine kinase(BTK), has shown promising pharmacologic effects in acute myeloid leukemia (AML). In this study, we report that AC0010 as a novel BTK inhibitor inhibits the cell proliferation, reduces colony-forming capacity, induces cell apoptosis and arrests cell cycle in AML cells, especially in those carrying FLT3 mutations. Surprisingly, AC0010 is found more sensitive than ibrutinib in treating AML. Mechanically, we showed that AC0010 not only targeting the phosphorylation of BTK, but also the crucial PI3K survival pathway. Furthermore, we observed that AC0010 could also suppress the expression of p-FLT3 and downstream target p-STAT5 in AML cells with FLT3 mutations. Moreover, our in vitro and in vivo data clarify that AC0010 can synergize with Homoharringtonine (HHT), a natural plant alkaloid, in treating AML with or without FLT3-ITD mutations. Collectively, our results suggest that AC0010 might be a promising drug in treating AML patients, and synergizes the efficiency of Homoharringtonine in AML. Disclosures Jin: College of Medicine, Zhejiang University: Employment; The National Natural Science Foundation of China: Research Funding.
    Type of Medium: Online Resource
    ISSN: 0006-4971 , 1528-0020
    RVK:
    RVK:
    Language: English
    Publisher: American Society of Hematology
    Publication Date: 2018
    detail.hit.zdb_id: 1468538-3
    detail.hit.zdb_id: 80069-7
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  • 3
    Online Resource
    Online Resource
    American Society of Hematology ; 2019
    In:  Blood Vol. 134, No. Supplement_1 ( 2019-11-13), p. 5048-5048
    In: Blood, American Society of Hematology, Vol. 134, No. Supplement_1 ( 2019-11-13), p. 5048-5048
    Abstract: The tumor suppressor role of the metabolic genes is rarely reported. Here, we report that malate dehydrogenase 1 (MDH1) acts as an anti-oncogene in acute myeloid leukemia (AML) progression. In a screen of various leukemia cell lines, as well as peripheral blood mononuclear cells from patients with AML and healthy individuals, we observed that patients with AML had lower mRNA expression of MDH1 than healthy individuals. In addition, we found that overexpression of MDH1 in the AML cell lines MV4-11 and THP-1 in vitro promoted their differentiation, reduced their growth, induced apoptosis, and increased the proportion of cells in S phase, which were more sensitive to the chemotherapeutic drugs cytarabine and daunorubicin. Using an in vivo xenograft mouse model of AML, we found that disruption of MDH1 expression influenced tumor burden and mouse survival. These findings were consistent with an inverse relationship between MDH1 expression and overall survival in two independent cohorts of AML patients. We also identified changes in the expression of other genes, concomitant with reduced MDH1 expression in patients with AML, that largely explain the anti-oncogenic role of MDH1 in AML progression. Notably, downregulation of P53 and upregulation of the MAPK pathway in low MDH1-expressing MV4-11 cells were reversed upon overexpression of MDH1. In conclusion, we demonstrated that MDH1 plays a tumor-suppressing role in AML and can be used as a novel mimic drug therapy in the future. Disclosures No relevant conflicts of interest to declare.
    Type of Medium: Online Resource
    ISSN: 0006-4971 , 1528-0020
    RVK:
    RVK:
    Language: English
    Publisher: American Society of Hematology
    Publication Date: 2019
    detail.hit.zdb_id: 1468538-3
    detail.hit.zdb_id: 80069-7
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  • 4
    Online Resource
    Online Resource
    American Society of Hematology ; 2022
    In:  Blood Vol. 140, No. Supplement 1 ( 2022-11-15), p. 8717-8719
    In: Blood, American Society of Hematology, Vol. 140, No. Supplement 1 ( 2022-11-15), p. 8717-8719
    Type of Medium: Online Resource
    ISSN: 0006-4971 , 1528-0020
    RVK:
    RVK:
    Language: English
    Publisher: American Society of Hematology
    Publication Date: 2022
    detail.hit.zdb_id: 1468538-3
    detail.hit.zdb_id: 80069-7
    Location Call Number Limitation Availability
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  • 5
    Online Resource
    Online Resource
    American Society of Hematology ; 2019
    In:  Blood Vol. 134, No. Supplement_1 ( 2019-11-13), p. 5041-5041
    In: Blood, American Society of Hematology, Vol. 134, No. Supplement_1 ( 2019-11-13), p. 5041-5041
    Abstract: Acute myeloid leukemia (AML) is a highly heterogeneous disease with poor clinical prognosis, especially to cytogenetically normal AML(CN-AML)patients, which belong to moderate prognosis group. The clinical outcomes of them are not consistent. Therefore, further exploration of novel biomarkers and development of new anti-tumor drugs is urgently needed. Recently, accumulating evidence have emerged and demonstrated that branched-chain amino acids (BCAA) are essential for tumor growth and proliferation. Branched-chain aminotransferase 1(BCAT1), a BCAA metabolic enzyme, which correlates with cancer aggression, not only that, it has been reported that overexpression of BCAT1in leukemia cells decreased intracellular αKG levels, showed the characteristics of stem cells and displayed a phenotype like cases carrying IDH mutations. By limiting intracellular αKG, BCAT1high expression AML cells prone to cause an increase in DNA damage probably via suppressing homologous recombination. We firstly analyzed the prognostic significance of BCAT1expression in CN-AML patients. Collectively, we found that patients with high levels of BCAT1had poor prognosis, the median overall survival time is shorter in BCAT1high group (356 days versus 570 days)(Figure A). Next, we performed gene knockout in THP-1 and MV4-11 cells with relatively high expression of BCAT1and gene overexpressing in the relatively low expression cell line OCI-AML3. In summary, BCAT1overexpression contributed to cell growth, whereas suppression of BCAT1markedly limited cell proliferation and colony-forming ability by blocking cell circle at G0/G1 phase(Figure B and C).The mice model we conducted further validated the role of BCAT1expression in vitro. Notably, we found that knockout and overexpression of BCAT1can respectively reduce and enhance the tumor burden(Figure D)and effects the time of survival(Figure E). Because both BCAT1high expression and IDH mutation could decrease αKG levels and suppress αKG dependent dioxygenases, it is tempting to speculate that there is a possibility of a "BRCAness" phenotype when BCAT1is overexpressed.We indeed observed a rise in the base line level of DNA damage marker γ-H2AX in BCAT1overexpressing cell line(Figure F). In addition, the sensitivity of cells to cisplatin is also positively correlated with BCAT1expression levels, the IC50 of BCAT1overexpressing cell line OCI-AML3 is much lower than control. Consistently, knocking out of BCAT1decreased sensitivity to cisplatin. So we further tested the relationship between PARPi talazoparib(BMN 673) and BCAT1expression, Use a gain of function approach we increased susceptibility to PARPi, together with the loss of function data, these results strongly suggest that BCAT1promotes cell sensitivity to PARPi(Figure G). We believe that the combination of high expression of BCAT1and PARPi produces synthetic lethality. In addition, the ability to trap PARP1 of PARPi may produce unacceptable toxicity when combined with conventional doses of cytotoxic chemotherapies. So, we next combined PARP inhibitors with DNA-damaging agent daunorubicin, the synergistic effect is promising on BCAT1overexpressed OCI-AML3 cell especially at high dose, however, the synergistic effect of the control group is weak, sometimes even manifested as antagonistic.Consistent with previous reports, IDH1/2mutAML is vulnerable to PARP inhibition as monotherapy, but especially when combined with daunorubicin treatment. These results also confirmed our hypothesis that BCAT1overexpression mimics the phenotype of IDHmutcells, not only as DNA hypermethylation, but also leads to increased DNA damage levels in cells, increasing sensitivity to PARP inhibitor and DNA-damaging drugs. Through qPCR and WB assays, we found the same trend: DNA damage response-related protein ATM was down-regulated after BCAT1overexpression, which preliminarily explained why DNA damage was increased after BCAT1overexpression. After exogenous supplementation with the aKG analog DM-aKG, the enhancement of DNA damage caused by overexpression of BCAT1can be reversed. In summary, this study indicated that CN-AML patients with high BCAT1expression had poor prognosis. BCAT1plays the role as oncogene, can induce DNA damage that renders AML cells sensitive to PARP inhibition and DNA damage agents, and can be used as a novel therapeutic option for AML. Figure Disclosures No relevant conflicts of interest to declare.
    Type of Medium: Online Resource
    ISSN: 0006-4971 , 1528-0020
    RVK:
    RVK:
    Language: English
    Publisher: American Society of Hematology
    Publication Date: 2019
    detail.hit.zdb_id: 1468538-3
    detail.hit.zdb_id: 80069-7
    Location Call Number Limitation Availability
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