• Title/Summary/Keyword: EoL-1 cells

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Different Protein Expression between Human Eosinophilic Leukemia Cells, EoL-1 and Imatinib-resistant EoL-1 Cells, EoL-1-IR

  • Sung, Kee-Hyung;Kim, In-Sik;Lee, Ji-Sook
    • Biomedical Science Letters
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    • v.24 no.4
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    • pp.426-429
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    • 2018
  • Chronic eosinophilic leukemia (CEL) is characterized by eosinophilia and organ damage. Imatinib is widely used for treating CEL, chronic myeloid leukemia (CML) and acute myeloid leukemia (AML). Unfortunately, the cancer cells gain resistance against the drug after prolonged molecular-targeted therapies. Imatinib-resistant EoL-1 (EoL-1-IR) cells were produced from chronic eosinophilic leukemia cells (EoL-1) after treatment with imatinib for a long duration. Two-dimensional electrophoresis (2-DE) analysis revealed numerous protein variations in the EoL-1 and EoL-1-IR sub-types. Compared to the EoL-1 cells, expression levels of TIP49, RBBP7, ${\alpha}$-enolase, adenosine deaminase, C protein, galactokinase, eukaryotic translation initiation factor, $IFN-{\gamma}$, and human protein homologous to DROER were increased, whereas core I protein, proteasome subunit p42, heterogeneous ribonuclear particle protein, chain B, and nucleoside diphosphate were decreased in the EoL-1-IR cells. Taken together, these results contribute to understanding the pathogenic mechanism of drug-resistant diseases.

The Inhibitory Effects of Lactose-${\beta}$-sitosterol on the Inflammatory Responses of HMC-1 Cells and EoL-1 Cells

  • Yang, Eun-Ju;Kim, In-Sik
    • Biomedical Science Letters
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    • v.17 no.3
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    • pp.217-223
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    • 2011
  • ${\beta}$-sitosterol glucoside exists in a variety of plants and have anti-tumor, anti-microbial, and immunomodulatory activities. Mast cells and eosinophils play important roles in a variety of inflammatory diseases, specifically asthma and atopic dermatitis. In the present study, we used lactose-${\beta}$-sitosterol (L-BS) and investigated the effect of L-BS on inflammatory responses of the human mast cell line, HMC-1 and the human eosinophilic leukemia cell line, EoL-1. In HMC-1 cells, L-BS significantly inhibited cell migration in response to stem cell factor without cytotoxicity. However, the mRNA expression of CC chemokine receptors (CCRs), including CCR1-5, were not altered after L-BS treatment in HMC-1 cells. LPS-induced IL-4 production was also suppressed by L-BS in a dose-dependent manner. In EoL-1 cells, the concentration ranging from 0.1 ${\mu}M$ to 10 ${\mu}M$ of L-BS had no cytotoxicity and had no effect on mRNA expression of major protein-mediators derived from activated eosinophils. However, 100 ${\mu}M$ of L-BS induced the apoptosis of EoL-1 cells in a time-dependent manner. This finding indicates the possibility of L-BS as a potential therapeutic molecule in inflammatory diseases and may contribute to the need to improve current therapeutic drugs.

Histone Deacetylase Inhibitors Induce the Differentiation of Eosinophilic Leukemia EoL-1 Cells into Eosinophils

  • Ishihara Kenji;Hong Jang-Ja;Kaneko Motoko;Takahashi Aki;Sugeno Hiroki;Kang Young-Sook;Ohuchi Kazuo
    • Biomolecules & Therapeutics
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    • v.14 no.2
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    • pp.67-74
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    • 2006
  • EoL-1 cells differentiate into eosinophils in the presence of n-butyrate, but the mechanism has remained to be elucidated. Because n-butyrate can inhibit histone deacetylases, we hypothesized that the inhibition of histone deacetylases induces the differentiation of EoL-1 cells into eosinophils. In this study, using n-butyrate and two other histone deacetylase inhibitors, apicidin and trichostatin A, we have analyzed the relationship between the inhibition of histone deacetylases and the differentiation into eosinophils in EoL-1 cells. It was demonstrated that apicidin and n-butyrate induced a continuous acetylation of histones H4 and H3, inhibited the proliferation of EoL-1 cells, and induced the expression of markers for mature eosinophils such as integrin ${\beta}7$, CCR1, and CCR3 on EoL-1 cells, while trichostatin A evoked a transient acetylation of his tones and induced no differentiation into eosinophils. These findings suggest that the continuous inhibition of histone deacetylases in EoL-1 cells induces the differentiation into mature eosinophils.

Anti-inflammatory Effects of Extracts of Duchesnea chrysantha in Human Monocytic THP-1 Cells and Human Eosinophilic EoL-1 Cells

  • Lee, Ji-Sook
    • Biomedical Science Letters
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    • v.19 no.1
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    • pp.48-54
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    • 2013
  • Atopic dermatitis is a recurrent or chronic eczematous skin disease with severe pruritus and has annually increased in Korea. In this study, we investigated whether Duchesnea chrysantha (Dc) extracts have an anti-inflammatory effect in human monocytic THP-1 cells and human eosinophilic EoL-1 cells. The dried and powdered whole plants of Dc were extracted with 80% EtOH (Dc-1). The residue was diluted with water, and then successively partitioned with n-hexane, EtOAc, and BuOH to produce the n-hexane (Dc-2), EtOAc (Dc-3), BuOH (Dc-4), and the water-soluble fractions (Dc-5), respectively. The mite extract and LPS increased the production of IL-6, IL-8 and MCP-1 in THP-1 cells and the increase was strongly suppressed by Dc-3 extract, as compare with other extracts. Dc-3 also inhibited the release of IL-6 increased by mite extract and LPS in EoL-1 cells. However, Dc-3 extract increased IL-8 production induced by the mite extract and LPS in EoL-1 cells. These results suggest that Dc extract may be used as anti-inflammatory agents in treating allergic disorders such as asthma and atopic dermatitis.

Inhibitory Effects of Extracts of Houttuynia cordata Thumb (Saururaceae) on Cytokine Release of Human Monocytic THP-1 Cells and Human Eosinophilic EoL-1 Cells

  • Lee, Ji-Sook
    • Biomedical Science Letters
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    • v.16 no.4
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    • pp.341-347
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    • 2010
  • In the present study, we investigated whether Houttuynia cordata Thumb (Saururaceae; HC) extracts have an anti-inflammatory effect in human monocytic THP-1 cells and human eosinophilic EoL-1 cells. The dried and powdered whole plants of HC were extracted with 80% EtOH. The combined extract (HC-1) was concentrated under reduced pressure. The residue was diluted with water, and then successively partitioned with n-hexane, EtOAc, and BuOH to produce the n-hexane (HC-2), EtOAc (HC-3), BuOH (HC-4), and the water-soluble fractions (HC-5), respectively. HC extracts have no cytotoxicity on THP-1 cells and EoL-1 cells at a high concentration of $10\;{\mu}g/ml$ for 24 h, except HC-2 extract ($10\;{\mu}g/ml$). Interleukin-6, Interleukin-8 and Monocyte chemoattractant protein-1 in THP-1 cells were increased after the treatment with the extract from house dust mite or LPS. The increase of cytokine production was strongly suppressed by HC-3 extract, in comparision with other extracts. HC-3 also had inhibitory effect on Interleukin-6 production increased by mite extract and LPS in EoL-1 cells. However, HC-3 extract increased Interleukin-8 production induced by mite extract and LPS in EoL-1 cells. These results suggest that HC extracts may be used as useful agents for treating allergic disorders such as asthma and atopic dermatitis.

Pro-apoptotic Effects of S100A8 and S100A9 on human FIP1L1-PDGFRα+ Eosinophilic Leukemia Cells

  • Lee, Ji-Sook
    • Biomedical Science Letters
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    • v.27 no.2
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    • pp.95-98
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    • 2021
  • The S100 family proteins act as inducers of cancer cell apoptosis and inflammatory mediators. This study examined the pro-apoptotic mechanism caused by S100A8 and S100A9 in human FIP1L1-PDGFRα-positive eosinophilic leukemia cells. S100A8 and S100A9 elicited the death of EoL-1 cells in a time and dose-dependent manner. The activation of PDGFRα was suppressed by a decrease in PDGFRα after treatment with S100A8 and S100A9. Cycloheximide, a translation inhibitor, suppressed PDGFRα expression from 1 h to 5 h, and a co-treatment with S100A8 and S100A9 boosted the decrease in expression. The phosphorylation and expression of STAT5 decreased after treatment with S100A8 and S100A9 in EoL-1 and imatinib-resistant (EoL-1-IR) cells. S100A8 and S100A9 induced the chemotaxis of EoL-1 cells but did not affect the chemoattraction of EoL-1-IR. These findings indicate the cell death mechanism due to S100 family proteins and the development of leukemia therapy using S100A8 and S100A9.

Effects of Hyperosmolar Stimuli on Activation of Human Eosinophilic Leukaemia EoL-1 Cells (고삼투압 자극이 호산구의 활성화에 미치는 영향)

  • Kwon, Byoung Chul;Kim, Eun Soo;Kim, Kyung Won;Song, Tae Won;Sohn, Myung Hyun;Shin, Myeong Heon;Kim, Kyu-Eam
    • Clinical and Experimental Pediatrics
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    • v.48 no.8
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    • pp.881-885
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    • 2005
  • Purpose : Airway dehydration and subsequent hyperosmolarity of periciliary fluid are considered critical events in exercise-induced bronchoconstriction. The aim of this study was to establish if a hyperosmolar challenge could induce activation of eosinophils. Methods : Human eosinophilic leukaemic cell lines, EoL-1 cells were incubated with hyperosmolar solutions for 15 minutes. Activation of EoL-1 cells was monitored by degranulation and superoxide anion production. In addition, we examined surface expression of CD69 and ICAM-1. Results : Hyperosmolar stimuli didn't induce superoxide anion production and degranulation. In addition, EoL-1 cells cultured with hyperosmolar medium at 930 mOsm/kg $H_2O$ resulted in no significant increment in fluorescent intensity of CD69 and ICAM-1 expression compared with results for cells incubated with isomolar medium. Conclusion : We found that hyperosmolar stimuli don't cause activation of EoL-1 cells, but further studies are required to determine the role of eosinophil in the mechanism of exercise-induced asthma.

Effects of Benzene, Phenol and Hydroquinone on Proliferation, Differentiation and Migration of Human Eosinophilic EoL-1 Cells

  • Moon, So-Hee;Yang, Eun-Ju;Song, Bo-Bae;Kim, Bo-Mi;Lee, Ji-Sook;Kim, In-Sik
    • Biomedical Science Letters
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    • v.16 no.3
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    • pp.179-185
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    • 2010
  • Benzene is known as a ubiquitous air pollutant and has a carcinogenic influence on the human body. Benzene is also metabolized to other volatile organic compounds (VOCs) in the body such as phenol and hydroquinone (HQ). The metabolites are accumulated and further oxidized by myeloperoxidase in bone marrow. They act as toxic agents and cause a variety of diseases, including cancer, atopic dermatitis and asthma. In this study, we examined the effects of benzene and its metabolites on proliferation, differentiation and chemotaxis of EoL-1 cells, the human eosinophilic leukemia cell line. These chemicals had no effect on the proliferation of EoL-1 cells. Benzene decreased the differentiation of EoL-1 cells induced by butyric acid. HQ was induced the cell death during butyric acid-induced EoL-1 cell differentiation. In a chemotaxis experiment, benzene, phenol and HQ enhanced the cell migration induced by Lkn-1 but not by MCP-1, eotaxin, MIP-$1{\alpha}$ and RANTES. These findings provide the effect of VOCs on the regulation of eosinophil-involved immune response.

Monocyte Chemoattractant Protein-1 (MCP-1)/CCL2 Induces the Chemotactic Activity of Human Eosinophils

  • Lee, Ji-Sook;Kim, In-Sik
    • Biomedical Science Letters
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    • v.14 no.3
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    • pp.199-201
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    • 2008
  • Eosinophil is an improtant leukocyte in the development of various inflammatory diseases. Monocyte chemoattractant protein-1 (MCP-1) acts as a key regulator on monocyte movement, and activation of T cells and NK cells. However, the role of MCP-1 in eosinophils remains to be solved. In the present study, we examined the effect of MCP-1 on eosinophil migration, using human eosinophilic EoL-1 cells as an in vitro model of eosinophils. The surface expression of CCR2 in EoL-1 cells was little detected but MCP-1 strongly induced EoL-1 cell migration in a dose-dependent manner. Increased chemotactic activity due to MCP-1 was blocked by pertussis toxin, a $G_i/G_o$ protein inhibitor and U73122, a phospholipase C (PLC) inhibitor. These results suggest that MCP-1 activates $G_i/G_o$ protein and PLC and this signal pathway is involved in eosinphil movement. This finding supports the elucidation of pathogenic mechanism of eosinophilic inflammation such as asthma and atopic dermatitis.

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Inhibitory effect of Panax ginseng and Pleurotus osteratus complex on expression of cytokine genes induced by extract of Dermatophagoides pteronissinus in human monocytic THP-1 and EoL-1 cells

  • Park, Kyeong Hun;Lee, Eun Suk;Jin, Yong Ik;Myung, Kyung Sun;Park, Hong Woo;Park, Chun Geon;Kong, Won Sik;Kim, Young Ock
    • Journal of Mushroom
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    • v.14 no.4
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    • pp.155-161
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    • 2016
  • A recent study reported that Pleurotus ostreatus has the potential to be used as a ${\beta}-glucan-based$ cream for supportive complementary therapy of atopic dermatitis. KH054 is a new herbal prescription consisting of P. ostreatus and Panax ginseng. The effects of atopic dermatitis-induced materials on the expression of cytokine genes in human monocytes (THP-1, EoL- 1) have been examined. Some reports demonstrated that P. ginseng augments the activity of natural killer cells, which plays an important role in innate immunity against infection and tumor development. Monocyte chemotactic protein 1 (MCP-1), interleukin (IL)-6, and IL-8 have important roles in mediating the infiltration of various cells into the skin of atopic dermatitis and psoriasis. The present study investigated whether KH054 on induced IL-6, IL-8, and MCP-1 secretion by house dust mite (Dermatophagoides pteronissinus) in THP-1 (human acute monocytic leukemia) and EoL-1(Human eosinophilic leukemia) cell. D. pteronissinus functions in the pathogenesis of allergic diseases, including atopic dermatitis and asthma. The inhibitory effect of KH054 on the induction of IL-6, IL-8, and MCP-1 secretion by D. pteronissinus extract in THP-1 and EoL-1 cells was examined. KH054 potently suppressed the elevated production of IL-6 and IL-8 induced by D. pteronissinus treatment in THP-1 and EoL-1 cells. Based on the present results, KH054 may be useful for developing functional foods to treat atopic dermatitis.