• 제목/요약/키워드: human HepG2 cells

검색결과 440건 처리시간 0.03초

HepG2 세포에서 알로에 베라 추출물에 의한 염증성 사이토카인 분비 (Secretion of Inflammatory Cytokines by Aloe vera Extract in HepG2 Cells)

  • 김일낭
    • 한국식품영양학회지
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    • 제27권3호
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    • pp.400-405
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    • 2014
  • 최근 알로에 베라 섭취에 의한 독성 간염이 보고되고 있으나, 아직까지 알로에 베라의 간에 대한 염증 효과가 명확히 밝혀지지 않았다. 본 연구는 알로에 베라 에탄올 추출물이 간세포의 염증 발현에 미치는 영향과 그 기전을 밝히기 위해 수행되었다. $0.001{\sim}100{\mu}g/mL$의 알로에 베라 추출물을 HepG2 세포에 처리하여 MTT assay를 시행한 결과, 모든 농도에서 세포사멸이 유도되지 않았다. 그러나 모든 농도에서 알로에 베라 추출물은 염증성 사이토카인인 IL-8의 분비를 15.7~25.8%까지 유의적으로 증가시켰다(p<0.05). 또 다른 사이토카인인 M-CSF도 알로에 베라 추출물에 의해 36.3~61.5%까지 유의적으로 분비가 증가되었다(p<0.05). 본 연구 결과는 알로에 베라 추출물이 IL-8과 M-CSF와 같은 염증성 사이토카인 분비기전에 의해 간에 염증을 유발할 수 있음을 보여준다. 또한 알로에 추출물에 의해 유발될 수 있는 간염기전을 제시함으로써, 향후 수행될 추가 실험을 위한 기초 자료로 그 가치가 높을 것으로 사료된다.

6,8-Dihydroxy-7-methoxy-1-methyl-azafluorenone Induces Caspase-8- and -9-mediated Apoptosis in Human Cancer Cells

  • Banjerdpongchai, Ratana;Khaw-on, Patompong;Ristee, Chantrarat;Pompimon, Wilart
    • Asian Pacific Journal of Cancer Prevention
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    • 제14권4호
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    • pp.2637-2641
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    • 2013
  • 6,8-Dihydroxy-7-methoxy-1-methyl-azafluorenone (DMMA), a purified compound from Polyalthia cerasoides roots, is cytotoxic to various cancer cell lines. The aims of this study were to demonstrate the type of cancer cell death and the mechanism(s) involved. DMMA inhibited cell growth and induced apoptotic death in human leukemic cells (HL-60, U937, MOLT-4), human breast cancer MDA-MB231 cells and human hepatocellular carcinoma HepG2 cells in a dose dependent manner, with $IC_{50}$ values ranging between 20-55 ${\mu}M$. DMMA also decreased cell viability of human peripheral blood mononuclear cells. The morphology of cancer cells induced by the compound after staining with propidium iodide and examined under a fluorescence microscope was condensed nuclei and apoptotic bodies. Mitochondrial transmembrane potential (MTP) was decreased after 24h exposure in all five types of cancer cells. DMMA-induced caspase-3, -8, and -9 activity was strongly induced in human leukemic HL-60 and MOLT-4 cells, while in U937-, MDA-MB231- and HepG2-treated cells there was partial induction of caspase. In conclusion, DMMA-induced activation of caspase-8 and -9 resulted in execution of apoptotic cell death in human leukemic HL-60 and MOLT-4 cell lines via extrinsic and intrinsic pathways.

Screening of Differentially Expressed Genes by Desferrioxamine or Ferric Ammonium Citrate Treatment in HepG2 Cells

  • Park, Jong-Hwan;Lee, Hyun-Young;Roh, Soon-Chang;Kim, Hae-Yeong;Yang, Young-Mok
    • BMB Reports
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    • 제33권5호
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    • pp.396-401
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    • 2000
  • A differential display method is used to identify novel genes whose expression is affected by treatment with ferric ammonium citrate (FAC) or desferrioxamine (DFO), an iron chelating agent in the human hepatoblastoma cell line (HepG2). These chemicals are known to deplete or increase the intracellular concentration of iron, respectively. Initially, we isolated seventeen genes whose expressions are down- or up regulated by the treatment of the chemicals, as well as their four differentially expressed genes that are designated as clone-1, -2, -3, and -4. These are further characterized by cDNA sequencing and Northern blot analysis. Through the cDNA sequencing, as well as comparing them to genes published using the NCBI BLAST program, we identified the sequence of the clone-1 that is up-regulated by the treatment of DFO. It is identical to the human insulin-like growth factor binding protein-1 (IGFBP-1). This suggests that the IGFBP-1 gene in the HepG2 cell is up-regulated by an iron depletion condition. Also, the expression of the clone-3 and -4 is up-regulated by FAC treatment and their eDNA sequences are identical to the human ferritin-fight chain and human NADH-dehydrogenase, respectively. However, the sequence of the clone-2 has no significant homology to any other known gene. Therefore, we suggest that changes of the cellular iron level in the HepG2 cell affects the transcription of cellular genes. This includes human IGFBP-1, ferritin-fight chain, and NADH-dehydrogenase. Regulation of these gene expressions may have an important role in cellular functions that are related to cellular iron metabolism.

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Identification of Positive and Negative Regulatory Elements of the Human Cytochrome P4501A2 (CYP1A2) Gene

  • Chung, Injae;Jeong, Choonsik;Jung, Kihwa;Bresnick, Edward
    • 한국응용약물학회:학술대회논문집
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    • 한국응용약물학회 1997년도 춘계학술대회
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    • pp.81-81
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    • 1997
  • We previously demonstrated an enhancer-like positive regulatory element within a 259-bp sequence (-2352 to-2094 bp) of the human CYP1A2 gene in HepG2 cells. Three protein binding sites were identified by DNase I footprint analyses within the 259-bp sequence: protected region A PRA ( -2283 to-2243 bp), PRB (-2218 to-2187 bp), and PRC (-2124 to-2098 bp) (I. Chung and E. Bresnick, Mol. Pharmacol. 47, 677-685, 1995). In the present study, the functional significance of those protected regions was examined. Transfection experiments with deletion and substitution mutants defined the PRB and PRC as containing positive and negative regulatory elements, respectively. Human breast carcinoma MCF-7 cells were cotransfected with a hepatocyte nuclear factor-1 (HNF-1) expression vector and CYP1A2 promoter-or thymidine kinase promoter-luciferase remoter gene constructs. HNF-1, which contributes to the liver specificity of genes, enhanced reporter gene activity in a PRC sequence-dependent manner. These results suggested that PRC could exist bound to a repressor which was displaceable by other transcription factors such as HNF-1. Results obtained by transfection of HepG2 hepatoma cells with various PRB substitution mutant-luciferase gene fusion constructs indicated that the entire sequence of PRB was necessary for promoter activity. Consequently, the regulation of CYP1A3 expression is very complex, requiring a number of both positive and negative regulatory factors.

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인삼 Petroleum-ether 추출물이 종양세포의 증식 주기 진행 및 Protein Kinase C의 활성에 미치는 영향 (Effects of the Petroleum-ether Extract of Ginseng on the Cell Cycle and Protein Kinase C Activity in Cancer Cells)

  • 박민경;황우익
    • Journal of Ginseng Research
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    • 제20권3호
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    • pp.219-225
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    • 1996
  • This study was performed to investigate the inhibition mechanism of cancer cell proof iferation caused by the petroleum-ether extract of ginseng against human rectum (HRT-18), colon (HT-29), llepatoma (Hep G2) and prostate (LNCaP) cancer cells and monkey kidney cells (Vero 76). Cells were treated with the petroleum-ether extract of ginseng (50 to 200 $\mu\textrm{g}$/ml) in G1 or S phase of the cell cycle, and proliferation and protein kinase C activity were measured. The petroleum-eth or extract of ginseng inhibited proliferation of HRT-18, HT-29, Hep G2 and LNCaP when treated in Gl phase, but not in S phase. This result shows that the ginseng extract arrests the cell cycle in G1 phase, resulting in the inhibition of cell proliferation. At the same concentrations, treatment of the ginseng extract in G1 phase decreased protein kinase C activity, while the treatment in S phase had no effect. This reault suggests that protein kinase C might be involved in the inhibition of the cell cycle and proliferation of cancer cells caused by the petroleum-ether extract of ginseng.

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Arachidonic Acid Activates $K^+$-$Cl^-$-cotransport in HepG2 Human Hepatoblastoma Cells

  • Lee, Yong-Soo
    • The Korean Journal of Physiology and Pharmacology
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    • 제13권5호
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    • pp.401-408
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    • 2009
  • $K^+$-$Cl^-$-cotransport (KCC) has been reported to have various cellular functions, including proliferation and apoptosis of human cancer cells. However, the signal transduction pathways that control the activity of KCC are currently not well understood. In this study we investigated the possible role of phospholipase $A_2$ ($PLA_2$)-arachidonic acid (AA) signal in the regulatory mechanism of KCC activity. Exogenous application of AA significantly induced $K^+$ efflux in a dose-dependent manner, which was completely blocked by R-(+)-[2-n-butyl-6,7 -dichloro-2-cyclopentyl-2,3-dihydro-1-oxo-1Hinden-5-yl]oxy]acetic acid (DIOA), a specific KCC inhibitor. N-Ethylmaleimide (NEM), a KCC activatorinduced $K^+$ efflux was significantly suppressed by bromoenol lactone (BEL), an inhibitor of the calciumindependent $PLA_2$ ($iPLA_2$), whereas it was not significantly altered by arachidonyl trifluoromethylketone ($AACOCF_3$) and p-bromophenacyl bromide (BPB), inhibitors of the calcium-dependent cytosolic $PLA_2$ ($cPLA_2$) and the secretory $PLA_2$ ($sPLA_2$), respectively. NEM increased AA liberation in a doseand time-dependent manner, which was markedly prevented only by BEL. In addition, the NEM-induced ROS generation was significantly reduced by DPI and BEL, whereas $AACOCF_3$ and BPB did not have an influence. The NEM-induced KCC activation and ROS production was not significantly affected by treatment with indomethacin (Indo) and nordihydroguaiaretic acid (NDGA), selective inhibitors of cyclooxygenase (COX) and lipoxygenase (LOX), respectively. Treatment with 5,8,11,14-eicosatetraynoic acid (ETYA), a non-metabolizable analogue of AA, markedly produced ROS and activated the KCC. Collectively, these results suggest that $iPLA_2$-AA signal may be essentially involved in the mechanism of ROS-mediated KCC activation in HepG2 cells.

HepG2 세포에서 tert-butyl hydroperoxide로 유도된 간독성에 대한 kurarinone의 세포 보호 효과 (Cytoprotective effects of kurarinone against tert-butyl hydroperoxide-induced hepatotoxicity in HepG2 Cells)

  • 김상찬;이종록;박숙자
    • 대한한의학방제학회지
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    • 제26권3호
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    • pp.251-259
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    • 2018
  • Objective : Kurarinone is one of the flavonoids isolated from Sophorae Radix with various biological activities including anti-microbial effect. In this study, we investigated the effects of Kurarinone on tert-butyl hydroperoxide (tBHP)-induced oxidative stress finally leading to apoptosis in human hepatoma cell line HepG2. Methods : To determine the effects on cell viability, the cells were exposed to tBHP ($100{\mu}mol/l$) after pretreatment with kurarinone (0.5 and $1{\mu}g/ml$). Cell viability was measured by MTT assay. To reveal the possible mechanism of cytoprotectivity of kurarinone, levels of reactive oxygen species, intracellular glutathione, mitochondrial membrane potential, and expression of caspase were examined. Results : tBHP-induced cell death was due to oxidative stress and the resulting apoptosis. Kurarinone dose-dependently protected cells from apoptosis when determined by MTT and TUNEL assay. Consistent with this observation, decreased expression of pro-caspase 3/9 protein by tBHP was restored by kurarinone. Kurarinone also showed anti-oxidative effects by inhibiting generation of ROS and depletion of GSH in tBHP-stimulated HepG2 cells. In addition, kurarinone significantly recovered disruption of mitochondrial membrane potential (MMP) as a start sign of hepatic apoptosis induced by oxidative stress. Conclusion : From these results, it was concluded that kurarinone protected tBHP-induced hepatotoxicity with anti-oxidative and anti-apoptotic activities. Our results suggest that kurarinone might be beneficial to hepatic disorders caused by oxidative stress.

Nicotine 등으로 유발된 인간 간조직세포 내 hydrogen peroxide 생성억제에 대한 효모균발효애엽 추출물의 영향 (Effect of Artemisiae Argi Folium Fermented with Sacchromyces Cerevisiae on Hydrogen Peroxide Production of Human Hepatocyte Treated with Toxicants)

  • 박완수
    • 동의생리병리학회지
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    • 제24권1호
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    • pp.96-101
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    • 2010
  • The purpose of this study is to investigate the effect of water extract from Artemisiae Argi Folium Fermented with Sacchromyces cerevisiae (AFS) on hydrogen peroxide production within human hepatocyte HepG2 cells treated with gallic acid, EtOH, nicotine, acetaminophen, and acetaldehyde. AFS (0~400 ug/mL) was treated with gallic acid, EtOH, nicotine, acetaminophen, and acetaldehyde. And the intracellular productions of hydrogen peroxide were measured by dihydrorhodamine 123 (DHR) assay. AFS showed the restoration of the intracellular productions of hydrogen peroxide which were reduced by gallic acid, EtOH, nicotine, acetaminophen, and acetaldehyde in HepG2 Cells. AFS could be supposed to have the hepatoprotective effect related with hepatocytologic signaling activity against gallic acid, EtOH, nicotine, acetaminophen, and acetaldehyde.

MUTAGENICITY AND ANTIMUTAGENICITY OF CATECHIN AND TANNINS FROM THE BARK OF HAMAMELIS VIRGINIANA L. IN HUMAN Hep G2 CELLS

  • Sundermann, Volker-Mersch;Andreas Dauer;Evelyne Lhoste;Siegfried Knasmuller
    • 한국독성학회:학술대회논문집
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    • 한국독성학회 2001년도 International Symposium on Dietary and Medicinal Antimutgens and Anticarcinogens
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    • pp.95-96
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    • 2001
  • The mutagenic and antimutagenic activities of catechin, hamamelitannin and two proanthocyanidin fractions prepared from the bark of Hamamelis virginia L. - a commonly used medicinal herb - were investigated in a human derived hepatoma (Hep G2) cell line using the single cell gel electrophoresis (SCGE, syn. Comet assay) for the detection of DNA-migration. The cells possess different phase I and phase II enzymes involved in the biotransformation of xenobiotics.(omitted)

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Gallic acid 등으로 유발된 인간 간 조직세포 내 hydrogen peroxide 생성억제에 대한 유산균발효애엽 추출물의 영향 (Effect of Artemisiae Argi Folium Fermented with Lactobacillus Pentosus on Hydrogen Peroxide Production of Human Hepatocyte Treated with Toxicants)

  • 박완수;김도훈
    • 동의생리병리학회지
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    • 제23권6호
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    • pp.1379-1384
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    • 2009
  • The purpose of this study is to investigate the effect of water extract from Artemisiae Argi Folium Fermented with Lactobacillus pentosus (AFL) on hydrogen peroxide production within human hepatocyte HepG2 cells treated with gallic acid, EtOH, nicotine, acetaminophen, and acetaldehyde. AFL (0~400 ug/mL) was treated with gallic acid, EtOH, nicotine, acetaminophen, and acetaldehyde. And the intracellular productions of hydrogen peroxide were measured by dihydrorhodamine 123 (DHR) assay. AFL showed the restoration of the intracellular productions of hydrogen peroxide which were reduced by gallic acid, EtOH, nicotine, acetaminophen, and acetaldehyde in HepG2 Cells. AFL could be supposed to have the hepatoprotective effect related with hepatocytologic signaling activity against gallic acid, EtOH, nicotine, acetaminophen, and acetaldehyde.