• Title/Summary/Keyword: Leukemia apoptosis

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Oxidative Stress-Induced Apoptosis in Chronic Myelogenous Leukemia K562 Cells by an Active Compound from the Dithio-Carbamate Family

  • Khoshtabiat, Laya;Mahdavi, Majid;Dehghan, Gholamreza;Rashidi, Mohammad Reza
    • Asian Pacific Journal of Cancer Prevention
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    • v.17 no.9
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    • pp.4267-4273
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    • 2016
  • Previous studies suggested that dithio-carbamates are potent apoptosis and anti-apoptosis inducing agents in various cancer cells. Here, the anti-proliferative and apoptosis inducing effects of a new derivative (2-NDC) from the dithio-carbamate family was examined in human leukemia K562 cells. We use thiazolyl blue tetrazolium bromide (MTT) to measure viability and cell growth inhibition. The 2-NDC showed effects on viability in a dose and time-dependent manner, inhibiting proliferation at concentrations of $10-30{\mu}M$ after 24-48 hours of treatment and increasing values after 72 hours at $40-120{\mu}M$. The cytotoxic effect of the compound was calculated with an $IC_{50}$ of $30{\mu}M$ after 24-hour. Apoptosis induction was confirmed by acridine orange-ethidium bromide (AO/EtBr) staining, DNA fragmentation assay, flow cytometric assessment and also caspase-3 activation assay. Furthermore, enzymes level such as superoxide dismutase (SOD) and catalase (CAT) involved in oxidative stress were evaluated. The results of this study demonstrated insignificant increase of intracellular ROS levels for 24 hours and reduction after 48-72 hours. In addition to reduction of intracellular thiol, caspase-3 like activity was also decreased in a time-dependent manner in cells treated with 2-NDC. Thus 2-NDC can be considered as a good candidate for further pharmaceutical evaluations.

Differential Gene Expression Analysis in K562 Human Leukemia Cell Line Treated with Benzene

  • Choi, Sul-Ji;Kim, Ji-Young;Moon, Jai-Dong;Baek, Hee-Jo;Kook, Hoon;Seo, Sang-Beom
    • Toxicological Research
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    • v.27 no.1
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    • pp.43-48
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    • 2011
  • Even though exposure to benzene has been linked to a variety of cancers including leukemia, the detailed molecular mechanisms relevant to benzene-induced carcinogenesis remain to be clearly elucidated. In this study, we evaluated the effects of benzene on differential gene expression in a leukemia cell line. The K562 leukemia cell line used in this study was cultured for 3 h with 10 mM benzene and RNA was extracted. To analyze the gene expression profiles, a 41,000 human whole genome chip was employed for cDNA microarray analysis. We initially identified 6,562 genes whose expression was altered by benzene treatment. Among these, 3,395 genes were upregulated and 3,167 genes were downregulated by more than 2-fold, respectively. The results of functional classification showed that the identified genes were involved in biological pathways including transcription, cell proliferation, the cell cycle, and apoptosis. These gene expression profiles should provide us with further insights into the molecular mechanisms underlying benzene-induced carcinogenesis, including leukemia.

Sasa quelpaertensis Leaf Extracts Induce Apoptosis in Human Leukemia HL-60 Cells

  • Jang, Mi-Gyeong;Park, Soo-Young;Lee, Sun-Ryung;Choi, Soo-Youn;Hwang, Joon-Ho;Ko, Hee-Chul;Park, Ji-Gweon;Chung, Wan-Seok;Kim, Se-Jae
    • Food Science and Biotechnology
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    • v.17 no.1
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    • pp.188-190
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    • 2008
  • In east Asia, the leaves of various Sasa species have been used in folk medicine for centuries. The effects of the methanolic extract and its subsequent fractions derived from the leaves of Sasa quelpaertensis Nakai on cell proliferation in human leukemia HL-60 cells were evaluated. The ethyl acetate fraction of this extract (ESQL) significantly reduced cell viability in a dose-dependent manner ($0-250\;{\mu}g/mL$). ESQL ($IC_{50}=24.8\;{\mu}g/mL$) exhibited growth inhibition comparable to the main constituent of green tea, epigallocatechin ($IC_{50}=26.2\;{\mu}g/mL$), which was used as a positive control. ESQL treatment induced apoptosis, which was confirmed by the presence of nuclear condensation and annexin V-staining. These results demonstrate that ESQL contains chemopreventive phytochemicals that may be useful in neutraceutical applications.

Apoptosis Induction of Persicae Semen Extract in Human Promyelocytic Leukemia (HL-60) Cells

  • Kwon, Hee-Young;Hong, Seon-Pyo;Hahn, Dong-Hoon;Kim, Jeong-Hee
    • Archives of Pharmacal Research
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    • v.26 no.2
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    • pp.157-161
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    • 2003
  • The major ingredient of Persicae Semen is a cynogenic compound, amygdalin (D-mandelonitrile-$\beta$-gentiobioside). Controversial results on the anticancer activity of amygdalin were reported due to its conversion to its inactive isomer, neoamygdalin. In order to inhibit the epimerization of amygdalin, we used newly developed simple acid boiling method in preparation of Persicae Semen extract. HPLC analysis revealed most of amygdalin in Persicae Semen extract was active D-form. Persicae Semen extract was used to analyze its effect on cell proliferation and induction of apoptosis in human promyelocytic leukemia (HL-60) cells. Persicae Semen extract was cytotoxic to HL-60 cells with $IC_{50}$ of 6.4 mg/mL in the presence of 250 nM of $\beta$-glucosidase. The antiproliferative effects of Persicae Semen extract appear to be attributable to its induction of apoptotic cell death, as Persicae Semen extract induced nuclear morphology changes and internucleosomal DNA fragmentation.

LncRNA MEG3 Regulates Imatinib Resistance in Chronic Myeloid Leukemia via Suppressing MicroRNA-21

  • Zhou, Xiangyu;Yuan, Ping;Liu, Qi;Liu, Zhiqiang
    • Biomolecules & Therapeutics
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    • v.25 no.5
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    • pp.490-496
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    • 2017
  • Imatinib resistance has become a major clinical problem for chronic myeloid leukemia. The aim of the present study was to investigate the involvement of MEG3, a lncRNA, in imatinib resistance and demonstrate its underlying mechanisms. RNAs were extracted from CML patients' peripheral blood cells and human leukemic K562 cells, and the expression of MEG3 was measured by RT-qPCR. Cell proliferation and cell apoptosis were evaluated. Western blotting was used to measure the protein expression of several multidrug resistant transporters. Luciferase reporter assay was performed to determine the binding between MEG3 and miR-21. Our results showed that MEG3 was significantly decreased in imatinib-resistant CML patients and imatinib-resistant K562 cells. Overexpression of MEG3 in imatinib-resistant K562 cells markedly decreased cell proliferation, increased cell apoptosis, reversed imatinib resistance, and reduced the expression of MRP1, MDR1, and ABCG2. Interestingly, MEG3 binds to miR-21. MEG3 and miR-21 were negatively correlated in CML patients. In addition, miR-21 mimics reversed the phenotype of MEG3-overexpression in imatinib-resistant K562 cells. Taken together, MEG3 is involved in imatinib resistance in CML and possibly contributes to imatinib resistance through regulating miR-21, and subsequent cell proliferation, apoptosis and expression of multidrug resistant transporters.

The Apoptosis according to the Processing Irradiation and The Tumor Necrosis Factor (종양괴사인자와 방사선이 세포자멸사에 미치는 영향)

  • Lee, Jaeseob;Jang, Seongjoo
    • Journal of the Korean Society of Radiology
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    • v.10 no.3
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    • pp.195-200
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    • 2016
  • Acute promyelocytic leukemia(APL) is not just the poor grades of treating a type of blood cancer hayeoteul combination with chemotherapy despite concurrent radiation therapy are known to exhibit a greater effect and also works on normal cells to result in side effects. In this study, when after treatment with gamma rays, such as $TNF-{\alpha}$ in order to reduce these side effects was confirmed how affected the cell death of normal cells and cancer cells. HL-60 cells were used as the APL cell line HL-60 cells were differentiated with DMSO for treatment are shown the properties of normal granulocytes was used as a control group. As a result, HL-60 cells treated with $TNF-{\alpha}$ and gamma rays with only showed a cytotoxic effect by inducing the apoptosis cells were put to death. Consequently, $TNF-{\alpha}$ is thought to active substances that can increase the efficiency of cancer treatment to increase the removal of cancer cells when used with low-density gamma-ray treatment in order to eliminate the side effects of chemotherapy.

LncRNA CRNDE Promotes the Progression of B-cell Precursor Acute Lymphoblastic Leukemia by Targeting the miR-345-5p/CREB Axis

  • Wang, Weimin;Wu, Feifei;Ma, Ping;Gan, Silin;Li, Xue;Chen, Li;Sun, Ling;Sun, Hui;Jiang, Zhongxing;Guo, Feng
    • Molecules and Cells
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    • v.43 no.8
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    • pp.718-727
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    • 2020
  • The imbalance between the proliferation and apoptosis of B-cell precursors is an important contributor to the pathogenesis of B-cell precursor acute lymphoblastic leukemia (BCP-ALL), while its specific regulatory mechanism remains perplexing. This study aimed to expound the underlying mechanism of the proliferation and apoptosis of BCP-ALL cells from the perspective of non-coding RNA. In this study, long non-coding RNA colorectal neoplasia differentially expressed (LncRNA CRNDE) was upregulated in the bone marrow of BCP-ALL patients and BCP-ALL cell lines (NALM-6 and RS4;11). Functionally, LncRNA CRNDE knockdown restrained cell proliferation and boosted cell apoptosis in NALM-6 and RS4;11 cells. The subsequent investigation confirmed that LncRNA CRNDE bound to miR-345-5p and negatively regulated miR-345-5p expression. The overexpression of miR-345-5p suppressed cell proliferation and boosted cell apoptosis in NALM-6 and RS4;11 cells. Further experiments revealed that miR-345-5p downregulated cyclic AMP response element-binding protein (CREB) expression by targeting its mRNA directly. CREB overexpression reversed the effect of miR-345-5p mimic on cell proliferation and apoptosis in NALM-6 and RS4;11 cells. Finally, in vivo experiments showed that LncRNA CRNDE knockdown prolonged the survival of mice xenotransplanted with NALM-6 cells. In conclusion, LncRNA CRNDE upregulated CREB expression by suppressing miR-345-5p, thus promoting cell proliferation and reducing cell apoptosis in BCP-ALL.

Rengyolone Inhibits Apoptosis via Etoposide-Induced Caspase Downregulation

  • Kim, Jin-Hee;Lee, Choong-Hwan
    • Journal of Microbiology and Biotechnology
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    • v.19 no.3
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    • pp.286-290
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    • 2009
  • In the course of screening for substances inhibiting apoptosis of U937 human leukemia cells induced by etoposide ($10\;{\mu}g/ml$), Forsythiae fructus, which showed a high level of inhibition, was selected. The regulating compounds were purified from the ethyl acetate extract by silica gel column chromatography and HPLC. The active substance was purified and identified as rengyolone by spectroscopic methods. This compound showed inhibitory activity on caspase-3 induction, a major protease of the apoptosis cascade, with an $IC_{50}$ value of $38.96\;{\mu}M$ after 8 h of etoposide treatment in U937 cells. The expression level of caspase-3 and poly(ADP-ribose) polymerase (PARP) were dose-dependently inhibited by the compound, suggesting that rengyolone inhibits etoposide-induced apoptosis via downregulation of caspases.

In Vitro Detection of Apoptosis in Human Promyleoytic Leukemia HL-60 Cells by $^{1}H$-NMR

  • Lee, Chul-Hoon;Lee, Min-A.;Cho, Youl-Hee;Lim, Hae-Young;Jung, Ji-Hyun;Kim, Kyung H.;Lim, Yoong-Ho
    • Journal of Microbiology and Biotechnology
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    • v.11 no.3
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    • pp.539-542
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    • 2001
  • $^1H$-NMR spectroscopy was used to detect apoptosis in HL-60 cells in vitro. The relationship between cell apoptosis and NMR data was validated by the flow cytometry assay. To evaluate the NMR apoptosis results, the ratio of methylene and methyl groups caused by lipids was used. In addition, an identical analysis was applied to HepG2 cells. Detection of apoptotic cell death by NMR spectroscopy was oserved.

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Induction of the apoptosis of HL -60 leukemia cells by Scytosiphon lomentaria

  • Kim, Sang-Chul;Park, Soo-Young;Hyoun, Jae-Hee;Kang, Ji-Hoon;Lee, Young-Ki;Park, Deok-Bae;Yoo, Eun-Sook;Kang, Hee-Kyoung
    • Proceedings of the Korean Society of Applied Pharmacology
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    • 2003.11a
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    • pp.81-81
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    • 2003
  • The present study was taken to examine the inhibitory effect of extracts of Scytosiphon lomentaria, a marine alga growing in Jeju Island, on the growth of cancer cells and to develop an anti-cancer agent using components of S. lomemtaria. The effect was observed by the measurement of metabolic activity using colorimetric 3-(4,5-dimethylthiazol)-2,5-diphenyltetrazolium bromide (MTT) assay. In results, crude extract of this alga markedly inhibited the growth of leukemia cell lines such as HL-60 and KG-1, but could scarcely inhibit the growth of normal cells (HEL299) and adenocarcinoma cells (SNU-16 and HCT-I5). When HL-60 cells were treated with the extract, DNA fragmentation and the increase of proportion of sub-G1 hypodiploid cells were observed. Therefore, the inhibitory effect of S. lomemtaria on the growth of HL-60 cells seems to arise from the induction of apoptosis. In order to understand the mechanism of apoptosis inducton by S. lomemtaria, we examined the changes of Bcl-2 and Bax expression. The extract reduced Bcl-2, an anti-apoptotic protein, but increased Bax, a pro-apoptotic protein in a dose-dependent manner. When we examined the activation of caspase-3, an effector of apoptosis, the expression of active form(19 kDa) of caspase-3 was increased and the increase of their activities was demonstrated by the cleavage of poly(ADP-ribose)polymerase, a substrate of caspase-3, to 85 kDa. The results indicate that extract of S. lomentaria induces the apoptosis of HL-60 cells via the down-regulation of Bc1-2 and the activation of caspases.

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