• 제목/요약/키워드: iNOS synthesis

검색결과 111건 처리시간 0.02초

담죽엽의 항산화 효과와 RAW 264.7 세포에서 LPS로 유도된 iNOS 발현에 미치는 영향 (Antioxidant Effects and Anti-inflammation Effects of Lophatheri Herba Water Extracts Via Reducing iNOS Synthesis Induced by LPS in RAW 264.7 Cell)

  • 황성연;이성원;권강범;최원종;김재효;안성훈
    • 동의생리병리학회지
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    • 제24권6호
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    • pp.976-982
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    • 2010
  • We studied to know the anti-inflammation effect on water extracts of Lophatheri Herba which was growing in every places in our country. We objected free radical scanvenger effect and nitrite eliminate effect of the Lophatheri Herba water extracts, and the cell viabillity, the effects of Lophatheri Herba water extracts on NO production, iNOS synthesis induced by LPS. Free radical scavenger effects were $27.91{\pm}0.12%$, $38.96{\pm}0.10%$, $46.22{\pm}0.15%$ depend on 0.5, 1.0, 2.0 mg/ml each dose of Lophatheri Herba water extracts. Nitrite eliminate effects were $9.86{\pm}0.3%$, $80.61{\pm}0.23%$, $97.62{\pm}0.56%$ in 0.1, 1.0, 2.0 mg/ml Lophatheri Herba water extracts on pH 1.2. NO production and iNOS synthesis induced by LPS were reduced in RAW 264.7 cell by Lophatheri Herba water extracts. As the above results, Lophatheri Herba water extracts have anti-inflammation effects via NO production decrease, iNOS synthesis decrease mechanism. So Lophatheri Herba water extracts will be used as the protection or treatment in chronic inflammation desease like a asthma, stomatitis etc.

Hypoxia Enhances Nitric Oxide Synthesis by Upregulation of Inducible Nitric Oxide Synthase in Endothelial Cells

  • Rhee, Ki-Jong;Gwon, Sun-Yeong;Lee, Seunghyung
    • 대한의생명과학회지
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    • 제19권3호
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    • pp.180-187
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    • 2013
  • Hypoxia is an integral part of the environment during luteolysis. In this study we examined whether hypoxia could directly stimulate endothelial cells to produce nitric oxide (NO). Endothelial cells were cultured in hypoxic (5% $O_2$) or normoxic (20% $O_2$) conditions and the levels of total NO, inducible NO and endothelial NO was measured. We found that hypoxia but not normoxia upregulated NO production. The increased NO levels correlated with increased inducible NO synthase (iNOS) expression whereas expression of endothelial NOS (eNOS) expression remained constant. Addition of the iNOS specific inhibitor 1400W to hypoxic cultures prevented NO production suggesting that hypoxia-induced NO production in endothelial cells was due mainly to upregulation of iNOS. We also found that prostaglandin $F_{2{\alpha}}$ (PGF) production was unaffected by hypoxia suggesting that upregulation of NO was not due to increased synthesis of PGF. In summary, we report that endothelial cells cultured under hypoxic conditions produce NO via the iNOS pathway. This study provides the importance of the relation between the hypoxic environment and the induction of NO by endothelial cells during regression of the corpus luteum in the ovary.

Inhibition of Nitric Oxide Synthesis by Methanol and Butanol Extracts of Euonymus Alatus (Thunb.) Sieb in Murine Macrophages

  • Lee Hyo-Hyun;Park Young-Soo;Kim Ra-Young;Kim Dong-Il;Lee Tae-Kyun
    • 대한한의학회지
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    • 제26권1호
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    • pp.26-36
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    • 2005
  • Objective : Many traditional herbal remedies exhibit several beneficial effects including anti-inflammation. Euonymus alatus (Thunb.) Sieb (EA), known as Gui jun woo in Korea, has long been used in folk medicine to regulate Qi (bodily energy) and blood circulation, relieve pain, eliminate stagnant blood, and treat dysmenorrhea in oriental countries. The exact mechanism of the anti-inflammatory action of Euonymus alatus (Thunb.) Sieb (EA), however, has not been determined. Methods: Since there is increasing evidence that nitric oxide (NO) plays a crucial role in the pathogenesis of inflammatory diseases, this study was undertaken to address whether the methanol (MeOH) extract and its fractions of the bark of EA could modulate the expression of inducible NO synthase (iNOS) in thioglycollate-elicited murine peritoneal macrophages and murine macrophage cell line, RA W264.7 cells. Results: Stimulation of the peritoneal macrophages and RAW264.7 cells with $interferon-\gamma\;(IFN-\gamma)$ and lipopolysaccharide (LPS) resulted in increased production of NO in the medium. However, the butanol (BuOH) fraction of the MeOH extract of EA barks showed marked inhibition of NO synthesis in a dose-dependent manner. The inhibition of NO synthesis was reflected in the decreased amount of iNOS protein, as determined by Western blotting. The BuOH fraction did not affect the viability of RA W264.7 cells, as assessed by methylthiazol-2-yl-2, 5-diphenyl tetrazolium bromide (MTT) assay; rather, it reduced endogenous NO-induced apoptotic cell death via inhibition of NO synthesis in RAW264.7 cells. On the other hand, the MeOH and BuOH fraction showed no inhibitory effect on the synthesis of NO by RAW264.7 cells, when iNOS was already expressed by the stimulation with $IFN-\gamma$ and LPS. Conclusion: Collectively, these results demonstrate that the MeOH and BuOH fraction inhibits NO synthesis by inhibition of the induction of iNOS in murine macrophages.

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Effects of Corydalis Tuber on Synthesis of NO and $PGE_2$ in Murine Macrophage RAW 264.7 Cells Stimulated by LPS

  • Lee, Ki-Young;Park, Se-Keun;Kim, Jeong-Seon;Jang, Mi-Hyeon;Kim, Chang-Ju;Choi, Sun-Mi;Lee, Hye-Jung;Kim, Ee-Hwa
    • 동의생리병리학회지
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    • 제19권3호
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    • pp.785-791
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    • 2005
  • Corydalis Tuber has traditionally been used for the treatment of water retention in the body. Administration of the aqueous extract of Corydalis Tuber has been known to be effective for the control of pain and treatment of arthritis. It was reported that Corydalis Tuber possesses anti-inflammatory activity and modulates the intestinal immune system. The effect of Corydalis Tuber against LPS-stimulated expressions of COX-2, iNOS, and $IL-1{\beta}$ in cells of the murine RAW 264.7 macrophages was investigated using 3-(4,5-dimethylthiazol-2-yl)-2,5-diphenyltetrazolium bromide (MTT) assay, reverse transcription-polymerase chain reaction (RT-PCR), $PGE_2$ immunoassay, and NO detection. The aqueous extract of Corydalis Tuber was shown to suppress $PGE_2$ production by inhibition on the LPS-stimulated enhancement of COX-2 enzyme activity, $IL-1{\beta}$, and iNOS expression in the RAW 264.7 macrophages. Present results suggest that Corydalis Tuber exerts anti-inflammatory and analgesic effects probably by suppressing of COX-2, iNOS, and $IL-1{\beta}$ expressions, resulting in inhibition of $PGE_2$ synthesis. Corydalis Tuber has anti-inflammatory and analgesic effects probably by suppressing of COX-2, iNOS, and $IL-1{\beta}$ mRNA expressions, resulting in inhibition of $PGE_2$ and NO synthesis.

A Curcuminoid and Two Sesquiterpenoids from Curcuma zedoaria as Inhibitors of Nitric Oxide Synthesis in Activated Macrophages

  • Jang, Mi-Kyung;Lee, Hwa-Jin;Kim, Ji-Sun;Ryu , Jae-Ha
    • Archives of Pharmacal Research
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    • 제27권12호
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    • pp.1220-1225
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    • 2004
  • The overproduction of nitric oxide (NO) by inducible nitric oxide synthase (iNOS) is known to be responsible for vasodilation and hypotension observed in septic shock and inflammation. Inhibitors of iNOS, thus, may be useful candidates for the treatment of inflammatory diseases accompanied by overproduction of NO. In the course of screening oriental anti-inflammatory herbs for the inhibitory activity of NO synthesis, a crude methanolic extract of Curcuma zedoaria exhibited significant activity. The activity-guided fractionation and repetitive chromatographic procedures with the EtOAc soluble fraction allowed us to isolate three active compounds. They were identified as 1,7-bis (4-hydroxyphenyl)-1,4,6-heptatrien-3-one (1), procurcumenol (2) and epiprocurcumenol (3) by spectral data analyses. Their concentrations for the 50% inhibition of NO production $(IC_{50})$ in lipopolysaccharide (LPS)-activated macrophages were 8, 75, 77 ${\mu}M$, respectively. Compound 1 showed the most potent inhibitory activity for NO production in LPS-activated macrophages, while the epimeric isomers, compound 2 and 3 showed weak and similar potency. Inhibition of NO synthesis by compound 1 was very weak when activated macrophages were treated with 1 after iNOS induction. In the immunoblot analysis, compound 1 suppressed the expression of iNOS in a dose-dependent manner. In summary, 1,7-bis (4-hydroxyphenyl)-1,4,6-heptatrien-3-one from Curcuma zedoaria inhibited NO production in LPS-activated macrophages through suppression of iNOS expression. These results imply that the traditional use of C. zedoaria rhizome as anti-inflammatory drug may be explained at least in part, by inhibition of NO production.

해녀콩 (Canavalia lineata (THUNB.) DC.) 추출물의 항산화 효과 및 NO 생성 억제 효과 (Antioxidant Effects and Inhibitory Effect on NO Synthesis by Extracts of Canavalia lineata)

  • 부희정;이혜자;유은숙;정덕상;류기중;이선주
    • 생약학회지
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    • 제35권4호통권139호
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    • pp.338-345
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    • 2004
  • Scavenging effects of DPPH radical and hydroxyl radical, inhibition of linoleic acid oxidation, inhibition of NO synthesis and iNOS expression were tested with extracts and chromatographic subfractions of Canavalia lineata obtained at Jeju island. Chloroform extract and its subfractions gave moderate effects on scavenging DPPH radical and hydroxyl radical, They also inhibited linoleic acid oxidation, and NO synthesis. Inhibition of NO synthesis resulted from the repression of iNOS gene expression. Ethyl acetate extract and its subfractions showed excellent effects on scavenging DPPH radical and hydroxyl radical, while they were cytotoxic.

Nitric Oxide Synthesis is Modulated by 1,25-Dihydroxyvitamin D3 and Interferon-${\gamma}$ in Human Macrophages after Mycobacterial Infection

  • Lee, Ji-Sook;Yang, Chul-Su;Shin, Dong-Min;Yuk, Jae-Min;Son, Ji-Woong;Jo, Eun-Kyeong
    • IMMUNE NETWORK
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    • 제9권5호
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    • pp.192-202
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    • 2009
  • Background: Little information is available the role of Nitric Oxide (NO) in host defenses during human tuberculosis (TB) infection. We investigated the modulating factor(s) affecting NO synthase (iNOS) induction in human macrophages. Methods: Both iNOS mRNA and protein that regulate the growth of mycobacteria were determined using reverase transcriptase-polymerase chain reaction and western blot analysis. The upstream signaling pathways were further investigated using iNOS specific inhibitors. Results: Here we show that combined treatment with 1,25-dihydroxyvitamin D3 (1,25-D3) and Interferon (IFN)-${\gamma}$ synergistically enhanced NO synthesis and iNOS expression induced by Mycobacterium tuberculosis (MTB) or by its purified protein derivatives in human monocyte-derived macrophages. Both the nuclear factor-${\kappa}B$ and MEK1-ERK1/2 pathways were indispensable in the induction of iNOS expression, as shown in toll like receptor 2 stimulation. Further, the combined treatment with 1,25-D3 and IFN-${\gamma}$ was more potent than either agent alone in the inhibition of intracellular MTB growth. Notably, this enhanced effect was not explained by increased expression of cathelicidin, a known antimycobacterial effector of 1,25-D3. Conclusion: These data support a key role of NO in host defenses against TB and identify novel modulating factors for iNOS induction in human macrophages.

Effects of Liriope Platyphylla on LPS-stimulated Expression of COX-2 and iNOS in Mouse BV2 Microglial Cells

  • Park, Sang-Heup;Kim, Ee-Hwa;Park, Se-Keun;Jang, Mi-Hyeon;Choi, Sun-Mi;Lee, Eun-Yong
    • Journal of Acupuncture Research
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    • 제22권2호
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    • pp.147-154
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    • 2005
  • Objective: In this study, the effects of Liriope Platyphylla against LPS-induced inflammation was investigated. Methods: Cell viability was determined using the MTT assay. To identify expressions of COX-2 and iNOS mRNA, RT-PCR was performed. Assessment of PGE2 synthesis was performed using the PGE2 immunoassay. Measurement of NO synthesis was performed using the NO detection. Result : The MTT assay revealed that Liriope Platyphylla exerted no significant cytotoxicity in the microglial BV2 cells. RT-PCR analysis revealed that the mRNA levels of COX-2 and iNOS were significantly decreased in the LPS- and 5 mg/ml Liriope Platyphylla treated group. From the PGE2 immunoassay and NO detection, PGE2 and NO synthesis was significantly suppressed in the LPS- and 5 mg/ml Liriope Platyphylla treated group. Conclusion : In these study, Liriope Platyphylla was shown to suppress PGE2 and NO production by inhibiting LPS-stimulated enhancement of COX-2 enzyme activity and iNOS expression. It is very possible that Liriope Platyphylla can offer a valuable mode of therapy for the treatment of brain inflammatory diseases.

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Inhibitors of Inducible Nitric Oxide Synthase Expression from Artemisia iwayomogi

  • Ahn, Hanna;Kim, Ji-Yeon;Lee, Hwa-Jin;Kim, Yong-Kyun;Ryu, Jae-Ha
    • Archives of Pharmacal Research
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    • 제26권4호
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    • pp.301-305
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    • 2003
  • Nitric oxide (NO) is an important bioactive agent that mediates a wide variety of physiological and pathophysiological events. NO overproduction by inducible nitric oxide synthase (iNOS) results in severe hypotension and inflammation. This investigation is part of a study to discover new iNOS inhibitors from medicinal plants using a macrophage cell culture system. Two sesquiterpenes (1 and 2) were isolated from Artemisia iwayomogi (Compositae) and were found to inhibit NO synthesis ($IC_{50} 3.64 \mu g/mL and 2.81 \mu$g/mL, respectively) in lipopolysaccharide (LPS)-activated RAW 264.7 cells. Their structures were identified as 3-Ο-methyl-iso-secotanapartholide (1) and iso-secotanapartholide (2). Compounds 1 and 2 inhibited the LPS-induced expression of the iNOS enzyme in the RAW 264.7 cells. The inhibition of NO production via the down regulation of iNOS expression may substantially modulate the inflammatory responses.

Murine macrophage RAW264.7에서 과산화수소가 유발형 산화질소 합성효소의 발현에 미치는 영향 (The Effect of Hydrogen Peroxide on Inducible Nitric Oxide Synthase Expression in Murine Macrophage RA W264.7 Cells)

  • 안중현;송정섭
    • Tuberculosis and Respiratory Diseases
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    • 제47권2호
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    • pp.172-183
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    • 1999
  • 연구배경: 산화질소(${\cdot}NO$)는 여러 세포에서 산화질소 합성효소(NOS)에 의해서 생산되며 다양한 병태생리과정에 관여한다. 여러 cytokine들이 iNOS의 발현을 촉진시키고 산화질소 생산을 증가시킴으로써 염증반응을 증폭시키고 세포와 조직손상을 초래한다고 알려진 바, 과산화수소($H_2O_2$)가 세포내 NOS의 발현과 산화질소형성에 미치는 영향을 알아보고자 하였다. 방법: 마우스 대식세포주 RAW264.7에 여러 가지 cytokine과 세균 내독소 (LPS)로 자극을 준 세포군 이에 더하여 $H_2O_2$, NOS 억제제 (L-NAME) 및 항산화제 (catalase)등을 사용하여 세포를 자극한 후 생성된 산화질소 산화물의 농도를 측정하고 Northern analysis로 iNOS mRNA의 발현정도를 보아 다음과 같은 성적을 얻었다. 결과: Cytokine과 LPS 자극군에서 대조군보다 ${\cdot}NO$ 생산이 높았고, 이 자극군에 $H_2O_2$를 추가로 자극하였을 때 ${\cdot}NO$생산이 2 배 이상 유의하게 높았다. Cytokine 자극군에서 $H_2O_2$의 자극 농도에 따른 ${\cdot}NO$생산은 $H_2O_2$의 농도가 증가할수록 유의하게 증가하였다. LPS와 IFN-$\gamma$ 자극군에서 L-NAME을 같이 자극시에 ${\cdot}NO$의 양은 L-NAME의 농도증가에 따라 유의하게 감소하였고, Cytokine 및 $H_2O_2$자극군에서도 추가로 자극한 L-NAME 의 농도증가에 따라 ${\cdot}NO$의 양은 유의하게 감소하였다. Cytokine과 $H_2O_2$ 자극균에 catalase를 같이 자극 하였을 때 ${\cdot}NO$의 양은 유의하게 감소했고, Mercaptoethanol과 phenanthroline을 전처치하고 LPS와 IFN-$\gamma$$H_2O_2$로 자극한 군에서 이들의 전처치한 농도가 높을수록 ${\cdot}NO$의 양은 유의하게 Cytokine자극군과 IFN-$\gamma$, LPS 자극군에 $H_2O_2$를 추가 자극 후 Northern analysis 결과 $H_2O_2$는 iNOS mRNA 발현을 현저히 증가시켰다. 결론: 이상의 결과로 과산화수소가 cytokine과 내독소 등으로 자극된 마우스 대식세포에서 산화질소생산에 유의한 증폭효과를 나타냈고, iNOS mRNA 의 발현도 증가시켰음을 확인할 수 있었다.

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