• 제목/요약/키워드: Hydroxyl radical reaction

검색결과 130건 처리시간 0.026초

오존산화공정에서 수산화라디칼(OH.)의 생성속도 측정 (The estimation of Hydroxyl radical generation rate in Ozonation)

  • 권충일;공성호;배성렬
    • 한국지하수토양환경학회지:지하수토양환경
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    • 제6권1호
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    • pp.3-12
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    • 2001
  • 오존산화공정에서 수산화라디칼(OH.)의 생성속도가 다양한 실험조건(오존의 주입농도, 니트로벤젠의 농도, scavenger, pH, 과산화수소)에서 측정되었다. 니트로벤젠은 오존과의 직접적인 반응보다는 수산화라디칼에 의해 분해되었으며 분해속도는 오존과 니트로벤젠의 농도의 함수로 표현되었다. 또한 수산화라디칼 scavenger의 농도가 증가할수록 반응속도는 감소하였다. 실험상에서 얻은 모든 결과는 일차반응속도식을 따랐다. Probe compound와 scavenger를 이용한 경쟁적 방법을 사용하여 수산화라디칼을 측정하였는데, 그 결과 수산화라디칼의 생성속도는 오존의 농도에 선형적으로 비례하였으며, 오존 1몰당 수산화라디칼은 0.24몰이 생성되었다. 동일 오존농도에서 pH의 변화에 따른 수산화라디칼의 생성속도가 측정되었으며, (pH 10.2 ($0.91Ms^{-1}$) > pH 7.3($0.72Ms^{-1}$) > pH 5.6($0.67Ms^{-1}$) > pH 3.4($0.63Ms^{-1}$)) 중성이하의 pH에서보다 알칼리성 pH에서 수산화라디칼은 많이 발생됨을 알 수 있다. 또한 과산화수소의 첨가도 수산화라디칼의 생성속도를 증진시키는 결과를 낳았다. pH의 조절과 과산화수소의 첨가시 발생속도를 비교해보면 과산화수소를 첨가했을 때 수산화라디칼의 발생속도는 1.6배정도 더 크게 측정되었는데 이는 수산화라디칼을 발생시키는 데 있어서 과산화수소의 첨가가 pH의 조절보다는 더 좋은 증진제로써 작용할 수 있다는 것을 설명해준다. 이러한 결과들은 오염된 토양이나 지하수를 처리하기 위한 오존을 이용한 고급산화공정에 충분히 적용될 수 있을 것이라 판단된다.

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Alaternin and Emodin with Hydroxyl Radical inhibitory and/or Scavenging Activities and Hepatoprotective Activity on Tacrine-Induced Cytotoxicity in HepG2 Cells

  • Jung, Hyun-Ah;Chung, Hae-Young;Takaka, Yokezawa;Kim, Youn-Chul;Hyun, Sook-Kyung;Choi, Jae-Sue
    • Archives of Pharmacal Research
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    • 제27권9호
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    • pp.947-953
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    • 2004
  • The antioxidative and hepatoprotective potentials of two anthraquinones, alaternin (2-hydroxy-emodin) and emodin, to scavenge and/or inhibit hydroxyl radicals generated by the Fenton reaction and to protect tacrine-induced cytotoxicity in human liver derived HepG2 cells were evaluated, respectively. The inhibitory activity on hydroxyl radical generated in a cell-free chemical system (FeSO$_4$/$H_2O$$_2$) was investigated by a fluorescence spectrophotometer using a highly fluorescent probe, 2$^1$,7$^1$-dichlorofluorescein. The hydroxyl radical scavenging activity was determined by electron spin resonance spectroscopy using 5,5-dimethy-1-pyrroline-N-oxide as hydroxyl radicals trapping agents. Tacrine-induced HepG2 cell toxicity was determined by a 3-[4,5-dimethylthiazole-2yl]-2,5-diphenyltertrazolium bromide assay. Although the scavenging activity of alaternin on hydroxyl radical was similar to that of emodin in dose-dependent pat-terns, the inhibitory activity exhibited by the former on hydroxyl radical generation was stron-ger than that of the latter, with $IC_{50}$/ values of 3.05$\pm$0.26 $\mu$M and 13.29$\pm$3.20 $\mu$M, respectively. In addition, the two anthraquinones, alaternin and emodin showed their hepatoprotective activ-ities on tacrine-induced cytotoxicity, and the EC$_{50}$ values were 4.02 11M and 2.37 $\mu$M, respec-tively. Silymarin, an antihepatotoxic agent used as a positive control exhibited the EC$_{50}$ value of 2.00 $\mu$M. These results demonstrated that both alaternin and emodin had the simultaneous antioxidant and hepatoprotective activities.ies.

Protection by Carnosine and Homocarnosine against L-DOPA-Fe(III)-Mediated DNA Cleavage

  • Kang, Jung-Hoon
    • Bulletin of the Korean Chemical Society
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    • 제26권8호
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    • pp.1251-1254
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    • 2005
  • It has been proposed that oxidation of L-3,4-dihydroxyphenylalanine (DOPA) may contribute to the pathogenesis of neurodegenerative disease. In this study, L-DOPA-Fe(III)-mediated DNA cleavage and the protection by carnosine and homocarnosine against this reaction were investigated. When plasmid DNA was incubated with L-DOPA in the presence of Fe(III), DNA strand was cleaved. Radical scavengers and catalase significantly inhibited the DNA breakage. These results suggest that $H_2O_2$ may be generated from the oxidation of DOPA and then $Fe^{3+}$ likely participates in a Fenton’s type reaction to produce hydroxyl radicals, which may cause DNA cleavage. Carnosine and homocarnosine have been proposed to act as anti-oxidants in vivo. The protective effects of carnosine and homocarnosine against L-DOPA-Fe(III)-mediated DNA cleavage have been studied. Carnosine and homocarnosine significantly inhibited DNA cleavage. These compounds also inhibited the production of hydroxyl radicals in L-DOPA/$Fe^{3+}$ system. The results suggest that carnosine and homocarnosine act as hydroxyl radical scavenger to protect DNA cleavage. It is proposed that carnosine and homocarnosine might be explored as potential therapeutic agents for pathologies that involve damage of DNA by oxidation of DOPA.

Hydroxyl Radical-Mediated Commitment of HL-60 Cells to Differentiation: Modulation of Differentiation Process by Phosphodiesterase Inhibitors

  • Cho, Young-Jin;Ahn, Woong-Shick;Cha, Seok-Ho;Lee, Kweon-Haeng;Kim, Won-Il;Chung, Myung-Hee
    • The Korean Journal of Physiology and Pharmacology
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    • 제2권3호
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    • pp.369-376
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    • 1998
  • This report shows that hydroxyl radical, generated by a Fenton reaction involving adenosine $5'-diphosphate/Fe^{2+}$ complex ($5-15\;{\mu}M$) and $H_2O_2$ ($2\;{\mu}M$), induced differentiation of HL-60 cells in a dose- and time-dependent manner. This is evidenced by the increases in 12-O-tetradecanoylphorbol 13-acetate- and fMLP-stimulated superoxide production capability. The cells exposed to hydroxyl radical for defined periods (24∼96 hr) continued to differentiate even after the hydroxyl radical generating system had been removed. The differentiated cells displayed fMLP-stimulated calcium mobilization and increased expression of myeloid-specific antigen CD11b and CD14. The extent of the differentiation was markedly reduced by desferrioxamine ($100\;{\mu}M$), dimethylthiourea (5 mM), N,N'-diphenyl-1,4-phenylenediamine ($2\;{\mu}M$), and N-acetyl-L-cysteine (5 mM). The induction of differentiation by hydroxyl radical was enhanced by 3-isobutyl-1-methylxanthine ($200\;{\mu}M$) and Ro-20-1724 ($8\;{\mu}M$), and inhibited by dipyridamole (2 ${\mu}M$). These results suggest that hydroxyl radicals may induce commitment of HL-60 cells to differentiate into more mature cells of myelomonocytic lineage through specific signal-transduction pathway that is modulated by phosphodiesterase inhibitors.

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가감형방지황탕 열수 추출물이 항산화 작용에 미치는 영향 (Antioxidant Property of the Gagam-Hyungbang-Gihwang-tang Using Biochemical Markers of Carcinogenesis)

  • 한진수;박성식
    • 대한한의학회지
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    • 제26권3호
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    • pp.204-214
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    • 2005
  • Objectives : The verity extract of the Gagam-Hyungbang-Gihwang-tang (GHG) was assessed to determine the mechanisms of its antioxidant activity. Methods : The fellowing effects were measured : GHG exhibited a concentration-treatment; scavenging ${\alpha},\;{\alpha}-diphenyl-\beta-picrylhydrazyl$ (DPPH) radical, linoleic acid oxidation in a thiocyanate assay system, and superoxide anion, hydroxyl radical-induced DNA nicking. We investigated mRNA levels such as superoxide-dismutase. Results : The GHG extract showed dose-dependent free radical scavenging activity, including DPPH radicals, hydroxyl radicals, and superoxide anion, using different systems. The GHG was also found to be effective in protecting plasmid DNA against the strand breakage induced by hydroxyl radicals in Fenton's reaction mixture. Furthermore, SOD-1 mRNA expression levels increased in tat hepatoma H4IIE cells Conclusions : We expect that GHG will to helpful to the development of antioxidant activity treatments.

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Reaction of ferritin with hydrogen peroxide induces lipid peroxidation

  • Yoon, Hung-Hwan;Lee, Myeong-Seon;Kang, Jung-Hoon
    • BMB Reports
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    • 제43권3호
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    • pp.219-224
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    • 2010
  • Lipid peroxidation is known to be an important factor in the pathologies of many diseases associated with oxidative stress. We assessed the lipid peroxidation induced by the reaction of ferritin with $H_2O_2$. When linoleic acid micelles or phosphatidyl choline liposomes were incubated with ferritin and $H_2O_2$, lipid peroxidation increased in the presence of ferritin and $H_2O_2$ in a concentration-dependent manner. The hydroxyl radical scavengers, azide and thiourea, prevented lipid peroxidation induced by the ferritin/$H_2O_2$ system. The iron specific chelator desferoxamine also prevented ferritin/$H_2O_2$ systemmediated lipid peroxidation. These results demonstrate the possible role of iron in ferritin/$H_2O_2$ system-mediated lipid peroxidation. Carnosine is involved in many cellular defense processes, including free radical detoxification. In this study, carnosine, homocarnosine, and anserine were shown to significantly prevent ferritin/$H_2O_2$ system-mediated lipid peroxidation and also inhibited the free radical-generation activity of ferritin. These results indicated that carnosine and related compounds may prevent ferritin/$H_2O_2$ system-mediated lipid peroxidation via free radical scavenging.

Study on Validity of 1-D Spherical Model on Aqua-plasma Power Estimation With Electrode Structure

  • 윤성영;장윤창;김곤호
    • 한국진공학회:학술대회논문집
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    • 한국진공학회 2010년도 제39회 하계학술대회 초록집
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    • pp.74-74
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    • 2010
  • The aqua-plasma is the non-thermal plasma in electrical conductive electrolyte by generates the vapor film layer on the immersed metal electrode surface. This plasma can generate the hydroxyl radical by dissociate the water molecule with the plasma electron. To develop the plasma discharge device for high efficiency in the hydroxyl radical generation, proper model for estimation of plasma power is necessary. In this work, the 1-D spherical model was developed, considering temperature dependence material constants. The relation between the plasma power and hydroxyl generation was also studied by the comparison between the optical emission intensity from the hydroxyl radical using monochromator and estimated plasma power. First, the thickness of vapor layer thickness was estimated using the Navier-Stokes fluid equation in order to calculate the discharge E-field inside vapor layer. Using the E-field magnitude and power balance on the plasma generation, it was possible to estimate the plasma power. The plasma power was assumed to uniformly fill the vapor layer and the temperature of vapor layer was fixed in the boiling temperature of electrolyte, 375K. In the experiment, the aqua-plasma was discharged in the saline by applied the voltage on the bipolar electrode. The range of applied voltage was 234 to 280V-rms in the frequency of 380 kHz. Two type electrodes were produced with two ${\Phi}0.2$ tungsten. The plasma power was estimated from the V-I signal from the two high voltage probes and current probe. The estimated plasma power agreed with the profile of emission intensity when the plasma discharged between the metal electrode and vapor layer surface. However, when the plasma discharged between the metal electrodes, the increasing rate of emission intensity was lower than the increase of plasma power. It implies that the surface reaction is more sufficient rather than the volume reaction in the radical generation, due to the high density of water molecule in the liquid.

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DNA손상 및 돌연변이에 대한 명지버섯의 방어효능 (The Protective Effects of Ganoderma lucidum on the DNA Damage and Mutagenesis)

  • 이길수;공석경;최수영
    • Biomolecules & Therapeutics
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    • 제11권2호
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    • pp.139-144
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    • 2003
  • Ganoderma lucidum is commonly known as medically potent mushroom, which has been widely used in China and other oriental countries for the treatment of various diseases, including cancer. In this report, we investigated the anti-oxidant and protective effect of Ganodema lucidum extract (GLE) against the DNA damage induced by free radical and U.V. In the assay of cell growth inhibition, the inhibitory cell growth rate induced by hydroxyl radical was dose-dependently decreased by GLE. This results support that GLE has a detoxifying activity against cytotoxicity of hydroxyl radical in E. coli cell. GLE also protected ColE1 plasmid DNA damage in the concentration of 200$\mu\textrm{g}$ per reaction on the DNA fragmentation assay. The nuclear tailing by hydrogen peroxide in single cell gel electrophoresis(SCGE) was decreased by GLE in the concentration of 50$\mu\textrm{g}$/ml. These data indicate that Ganoderma lucidum has an anti-oxidative activity to hydrogen peroxide. The mutation rate after irradiation of U.V. was reduced by 50$\mu\textrm{g}$/ml GLE and total number of Rif (Rifampicin) resistant mutants was decreased in a concentration dependent manner when added the GLE exogenously in a culture media. According to the results, it is likely that GLE has not only an anti-oxidative activity to hydroxyl radical but also an anti-mutagenic activity to U.V. mutagenesis.