• Title/Summary/Keyword: Murine tumor

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Mechanism Underlying the Anti-Inflammatory Action of Piceatannol Induced by Lipopolysaccharide (당지질로 유도한 염증반응에서 Piceatannol의 항염증 기전 연구)

  • Cho, Han-Jin;Shim, Jae-Hoon;So, Hong-Seob;YoonPark, Jung-Han
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.41 no.9
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    • pp.1226-1234
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    • 2012
  • 3,4,3',5'-Tetrahydroxy-trans-stilbene (piceatannol) is a derivative of resveratrol with a variety of biological activities, including anti-inflammatory, anti-proliferative, and anti-cancer activities. We assessed the mechanisms by which piceatannol inhibits inflammatory responses using lipopolysaccharide (LPS)-treated Raw264.7 murine macrophages. Piceatannol (0~10 ${\mu}mol/L$) decreased LPS-induced release of nitric oxide, tumor necrosis factor (TNF)-${\alpha}$, interleukin (IL)-6, IL-$1{\beta}$, and inhibited LPS-induced protein expression of inducible nitric oxide synthase (iNOS). Activation of nuclear factor-kappaB (NF-${\kappa}B$), activator protein (AP)-1, and signal transducer and activator of transcription 3 (STAT3) are crucial steps during an inflammatory response. Piceatannol prevented LPS-induced degradation of inhibitor of ${\kappa}B$ ($I{\kappa}B$), translocation of p65 to the nucleus, and phosphorylation of stress-activated protein kinase/c-Jun NH2-terminal kinase (SAPK/JNK). Additionally, piceatannol inhibited LPS-induced phosphorylation of STAT3 and IL-6-induced translocation of STAT3 to the nucleus. Furthermore, piceatannol increased the protein and mRNA levels of hemeoxygenase (HO)-1, the rate-limiting enzyme of heme catabolism that plays a critical role in mediating antioxidant and anti-inflammatory effects. Piceatannol further induced antioxidant response elements (ARE)-driven luciferase activity in Raw264.7 cells transfected with an ARE-luciferase reporter construct containing the enhancer 2 and minimal promoter region of HO-1. These results suggest that piceatannol exerts anti-inflammatory effects via the down-regulation of iNOS expression and up-regulation of HO-1 expression.

Anti-allergic Effect of Ethanolic Extract of Flos Sophora japonica L. on Ca++ Ionophore Stimulated Murine RBL-2H3 Cells (괴화(槐花) 에탄올 추출물이 RBL-2H3 비만세포에서 Ca++ Ionophore에 의한 알레르기 반응 조절에 미치는 효과)

  • Xiao, Sun;Jiang, Jun;Shim, Do-Wan;Kim, Tae-Kweon;Kang, Tae-Bong;Lee, Kwang-Ho
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.43 no.3
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    • pp.349-354
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    • 2014
  • Elevation of intracellular calcium ($Ca^{{+}{+}}$) triggers degranulation of mast cells by bypassing receptor activation. Flos Sophora japonica L. has been used as a natural dying source and has been reported to have biological activities such as anti-inflammatory and anti-allergic effects through $Fc{\varepsilon}RI$ and IgE crosslinking. In the present investigation, we report the regulatory effect of ethanolic extract of Flos Sophora japonica L. (S.F) on allergic mediators produced by $Ca^{{+}{+}}$ ionophore activation in mast cells. S.F significantly inhibited calcium ionophore (A23187)-induced interleukin (IL)-4 and tumor necrosis factor (TNF)-${\alpha}$ production as well as mast cell degranulation. Furthermore, administration of S.F suppressed allergic reactions in a 2,4-dinitrofluorobenzene (DNFB)-induced allergic dermatitis mouse model. Both oral administration and ear painting using 50 mg/kg of S.F significantly reduced levels of cytokines such as IL-4, TNF, and interferon-${\gamma}$ in ear tissues compared to the DNFB alone-treated group. Serum IgE level in the S.F-treated group also decreased compared to the DNFB alone-treated group. Weights of spleens and lymph nodes in the S.F-treated groups also decreased compared to the control group. Considering the data, we conclude that S.F mediates its anti-allergic effects not only through $Fc{\varepsilon}RI$ stimulation but also $Ca^{{+}{+}}$ influx in mast cells.

Studies on the Immunomodulating Effects of Polysaccharide Extracted from Ganoderma lucidum on Macrophage (영지버섯 다당체의 마우스 대식세포 면역증강 효과)

  • 김성환;김을상
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.26 no.1
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    • pp.148-153
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    • 1997
  • The immunomodulating effects of polysaccharide extracted from Ganoderma lucidum(PSG) on macrophage were evaluated using murine macrophage cell line ATCC TIB 71 cells or peritoneal exudate cells of BALB/c mice. The cell were incubated with various content of PSG for 24 hours at 0.5% $CO_2$ incubator under varying experimental conditions. PSG stimulated the non-specific activites of macrophage such as mitotic activity and expression of surface interleukin-2 receptors by dose-dependent pattern with statistic significance(p<0.001): however, PSG had little immunoregulatory effects on cytokines derived from peritoneal macrophages of BALB/c mice. There were no significant changes in the se-cretion of interleukin-6, interleukin-6, or tumor necrosis factors(Tn) of PSG treated cells compared to the control group. But PSG increased secretion of cytokines(IL-1 and TNF) when the cells were primed and trigged with BCG and IFN-${\gamma}$.

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Extrat of Xanthii Fructus down-regulate TLR-4 mediated murine peritoneal macrophage inflammatory response by limiting NO synthase and $IkB-{\alpha}$ degradation (TLR-4 로 유도한 동물 복강 대식세포에서 창이자 추출물의 NO 합성과 $IkB-{\alpha}$ 분해 억제에 의한 염증 반응 억제 효과)

  • Jung, Won-Seok;Seo, Sang-Wan;Cho, Joon-Ji;Son, Ji-Woo;Park, Min-Cheol;Choi, Chang-Min;Yeom, Seung-Ryong;Hwang, Sang-Wook;Kim, Yong-Woo;Song, Dal-Soo;Chae, Young-Seok;Choi, Won-Seok;No, Jeong-Eun;Yun, Han-Ryoung;Kim, Yeong-Mok;Park, Sung-Joo;Shin, Min-Kyo;Song, Ho-Jon
    • The Korea Journal of Herbology
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    • v.21 no.3
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    • pp.103-109
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    • 2006
  • Objectives : The purpose of this study was to investigate the TLR-4 mediated anti-inflammatory effects of extract from Xanthii Fructus(XF) on the peritoneal macrophage. Methods : To evaluate of TLR-4 mediated inflammatory of XF, we examined NO and cytokine production in TRL-4 ligand(LPS-lipopolysacchride) induced macrophages. Furthermore, we checked molecular mechanism using western blot. Results : l.Extract from XF reduced LPS-induced Nitric oxide (NO), tumor necrosis factor-a (TNF-a), interleukin (IL)-6 and IL-12 production in peritoneal macrophages 2.Extract from XF itself does not have any cytotoxic effect.XS inhibited degradation of IkBa in the TLR-4 mediated peritoneal macrophages Conclusion : XF down-regulated TLR4 ligand(LPS)-induced NO and cytokine productions.

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Anti-inflammatory Effects of Ethanolic Extracts from Codium fragile on LPS-Stimulated RAW 264.7 Macrophages via Nuclear Factor kappaB Inactivation

  • Yoon, Ho-Dong;Jeong, Eun-Ji;Choi, Ji-Woong;Lee, Min-Sup;Park, Myoung-Ae;Yoon, Na-Young;Kim, Yeon-Kye;Cho, Deuk-Moon;Kim, Jae-Il;Kim, Hyeung-Rak
    • Fisheries and Aquatic Sciences
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    • v.14 no.4
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    • pp.267-274
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    • 2011
  • Bacterial lipopolysaccharide (LPS) induces expression of pro-inflammatory cytokines and enzymes producing nitric oxide (NO) and prostaglandins (PGs) in immune cells. This process is mediated by the activation of nuclear factor kappaB (NF-${\kappa}B$). In this study, we investigated the anti-inflammatory characteristics of Codium fragile ethanolic extract (CFE) mediated by the regulation of inducible nitric oxide synthase (iNOS) and cyclooxygenase-2 (COX-2) using LPS-stimulated murine macrophage RAW 264.7 cells. CFE significantly inhibited LPS-induced NO and $PGE_2$ production in a dose-dependent manner and suppressed the expression of iNOS and COX-2 proteins in LPS-stimulated RAW 264.7 cells with no cytotoxicity. Pro-inflammatory cytokines, such as interleukin (IL)-$1{\beta}$, IL-6, and tumor necrosis factor-${\alpha}$, were significantly reduced by treatment of CFE in LPS-stimulated RAW 264.7 cells. CFE inhibited the promoter activity of (NF)-${\kappa}B$ in LPS-stimulated macrophages. Treatment with CFE suppressed translocation of the NF-${\kappa}B$ p65 subunit by preventing proteolytic degradation of inhibitor of ${\kappa}B-{\alpha}$. These results indicate that the CFE-mediated inhibition of NO and $PGE_2$ production in LPS-stimulated RAW 264.7 cells is mediated through the NF-${\kappa}B$-dependent transcriptional downregulation of iNOS and COX-2, suggesting the potential of CFE as a nutraceutical with anti-inflammatory activity.

Effects of IGF-I Rich Fraction from Bovine Colostral Whey on Immune Activity of Mouse In Vitro (젖소 초유로부터 분리한 Insulin-like Growth Factor-1 분획이 In Vitro에서 마우스의 면역 활성에 미치는 영향)

  • Hwang Hyung-A;Yang Hee-Jin;Lee Soo-Won
    • Food Science of Animal Resources
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    • v.26 no.1
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    • pp.113-120
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    • 2006
  • Insulin-like growth factor-I(IGF-I) rich fraction, which was obtained molecules ranged between 30 and 1 kDa, was fractionated by ultrafiltration from bovine colostral whey. IGF-I rich fraction was confirmed by SDS-PACE and western blotting and then the quantity of IGF-I was measured by sandwich ELISA. ICF-I concentration in IGF-I rich fraction was 10 ng/mg proteins. IGF-I rich fraction, standard IGF-I and colostral whey weie treated to murine peritoneal macrophages. And then we experimented that effect of immune activity on macrophage and splenocyte. As a result, in group treated with IGF-I rich fraction $1{mu}g/mL$, production of interleukin-6 and nitric oxide were 9.85 ng and $17.17{\mu}M$ and production of phagocytosis, tumor necrosis factor-${\alpha}\;and\;H_{2}O_{2}$ were 78.3, 34.5 and 6% compared to the control group. In splenocyte immune response, B cell and T cell proliferation and NK cell activity were 103, 126 and 22.2% in group treated with IGF-I rich fraction $1{\mu}g/mL$ to compared to the control, respectively.

Anti-inflammatory Activities of Taxifolin from Opuntia humifusa in Lipopolysaccharide Stimulated RAW 264.7 Murine Macrophages (천년초의 Taxifolin이 마우스대식세포(RAW 264.7 cell)에 미치는 항염증활성)

  • Kim, Jaeyoung;Lee, Yonghwa;An, Hyeon-jin;Lee, Jae-duk;Yi, Yongsub
    • Journal of Applied Biological Chemistry
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    • v.58 no.3
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    • pp.241-246
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    • 2015
  • This study was performed to investigate the antiinflammatory activities of taxifolin from Opuntia humifusa. A potent anti-oxidant activity was shown from the leaf extract at $IC_{50}$ value of $38.33{\pm}1.07{\mu}g/mL$ and fruit extract at $IC_{50}$ value of $40.23{\pm}2.21{\mu}g/mL$ by 1,1-diphenyl-2-picrylhydrazyl assay. Fraction of taxifolin from leaf extract identified using high performance liquid chromatography and gas chromatography/mass spectrometry. The results of cell viability indicated that taxifolin did not show cytotoxicity on RAW 264.7 cells at $500{\mu}M$ of concentration. The result showed that taxifolin inhibited lipopolysaccharide (LPS)-induced production of Nitrite oxide. In addition, taxifolin inhibited LPS-induced tumor necrosis factor-${\alpha}$ and interleukin-6 production by cytokine assay and cyclooxygenase-2 expression by western blot analysis, meaning taxifolin has a significant anti-inflammatory effect. Our results suggested that taxifolin from Opuntia humifusa showed anti-inflammatory activities.

Immuno-stimulating Activities of Mannose-rich Polysaccharides Isolated from Korean Black Raspberry Wine (복분자주에서 분리한 Mannan 다당의 면역증진 활성)

  • Lee, Ho
    • Korean Journal of Food Science and Technology
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    • v.44 no.3
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    • pp.343-349
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    • 2012
  • Polysaccharides isolated from Korean black raspberry wine were examined for their chemical properties and immuno-modulating activities. The molecular mass of RB-1b-I, the main polysaccharide in black raspberry wine, was estimated as 180 kDa and it contained a significant proportion of mannose (76.8%) and 4 different minor component sugars such as galactose (15.8%), arabinose (3.8%), glucose (2.6%) and rhamnose (1.2%). This indicated that RB-1b-I was mainly present as a mannan, which had originated from the cell walls of fermenting yeasts. On the other hand, RB-1b-I induced high levels of macrophage activation as well as mitogenicity regarding murine splenocytes in vitro. The intravenous administration of RB-1b-I significantly augmented NK cytotoxicity against YAC-1 tumor cells. RB-1b-I also showed potent anti-complementary activity in a dose-dependent manner via both alternative and classical pathways. Results indicated that Korean black raspberry wine contains peculiar polysaccharides which provide beneficial immuno-stimulating activities for human health.

Anti-inflammatory Effect of Onion (Allium cepa) Peel Hot Water Extract in vitro and in vivo (양파껍질 열수추출물의 in vitro 및 in vivo 항염증 효과)

  • Kang, Bo-Kyeong;Kim, Koth-Bong-Woo-Ri;Ahn, Na-Kyung;Choi, Yeon-Uk;Kim, Min-ji;Bark, Si-Woo;Pak, Won-Min;Kim, Bo-Ram;Park, Ji-Hye;Bae, Nan-Young;Ahn, Dong-Hyun
    • KSBB Journal
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    • v.30 no.4
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    • pp.148-154
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    • 2015
  • Onion (Allium cepa) is one of the flavonoids-rich materials in human diet and onion peel, which is the onion by-products, contains over 20 times more quercetin than the flesh. In this study, to examine the anti-inflammatory effects of onion peel hot water extract (OPHWE), the cell viability, nitric oxide (NO), pro-inflammatory cytokines, such as interluekin-6 (IL-6), tumor necrosis factor-${\alpha}$ (TNF-${\alpha}$), and IL-$1{\beta}$, were measured using the murine macrophage cell line RAW 264.7 cells. The Balb/c mice were used for an in vivo acute toxicity test and ICR mice were used for measurement of inhibition effects of croton oil-induced mouse ear edema. As a result, NO levels decreased in a dose-dependent manner. The production of IL-6, TNF-${\alpha}$, and IL-$1{\beta}$ was suppressed by 38%, 41%, and 34% respectively, compared with that of the LPS only group, without any cytotoxicity. The edema formation in the ICR mouse ear was also reduced compared to that in control. Moreover, there were no mortalities occurred in mice administered 5,000 mg/kg body weight of OPHWE. These results suggest that OPHWE has considerable anti-inflammatory activities and can be regarded as a potent candidate material to treat inflammatory diseases.

The Effect of Linarin on LPS-Induced Cytokine Production and Nitric Oxide Inhibition in Murine Macrophages Cell Line RAW264.7

  • Kim, Kyung-Jae;Han, Shin-Ha;Sung, Ki-Hyun;Yim, Dong-Sool;Lee, Sook-Kyeon;Lee, Chong-Kil;Ha, Nam-Ju
    • Archives of Pharmacal Research
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    • v.25 no.2
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    • pp.170-177
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    • 2002
  • The herb, Chrysanthemum zawadskii var, latilobum commonly known as Gu-Jul-Cho in Korea, used in traditional medicine to treat pneumonia, bronchitis, cough, common cold, pharyngitis, bladder-related disorders, gastroenteric disorders, and hypertension. Linarin is the main active compound and the biological mechanisms of its activity are unclear. It is believed that effects of this herb may be exerted through the pluripotent effectors of linarin due to its ability to treat a variety of afflictions. In this study, the effects of linarin on the mouse macrophages cell line, RAW 264.7, were investigated. It was found that linarin could activate macrophages by producing cytokines. Monocytes and tissue macrophages produce at least two groups of protein mediators of inflammation, interleukin 1 (IL-1 ) and the tumor necrosis factor (TNF). Recent studies have shown that TNF and IL-1 modulate the inflammatory function of endothelial cells, leukocytes, and fibroblasts. $TNF-{\alpha}$ production by macrophages treated with linarin occured in a dose dependent manner However, IL-1 production was largely unaffected by this natural product. This study demonstrated the ability of linarin to activate macrophages both directly and indirectly. Linarin also affect both cytosine production and nitric oxide inhibition, in addition to the expression of some surface molecules. Nitric oxide (NO), derived from L-argin-ine, is produced by two forms(constitutive and inducible) of nitric oxide synthase (NOS). The NO produced in large amounts by inducible NOS is known to be responsible for the vasodilation and hypotension observed in septic shock. Linarin was found to inhibit NO production in the LPS-activated RAW 264.7 cells. Linarin may be a useful candidate as a new drug for treating endotoxemia and the inflammation accompanied by NO overproduction. The linarin-treated total Iymphocytes exhibited cytotoxicity in a dose dependent manner between $20{\;}{\mu}g/ml{\;}and{\;}40{\;}{\mu}g/ml$. These results suggest that linarin may function through macrophage activation.