• Title/Summary/Keyword: Singlet oxygen

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Effect of Lactobacilli on Reactive Oxygen Scavenging and Immune Stimulation (유산균의 활성산소 소거 및 면역증강효과)

  • lee, Ho;Yang, Seung-Gak;Park, Soo-Nam;Jeon, Do-Yong
    • KSBB Journal
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    • v.7 no.4
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    • pp.290-295
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    • 1992
  • Reactive oxygen scavenging activity and immune stimulatory activity of lactobacilli were investigated by different free radical scavenging assays and Ig G assay. Lactobacilli culture (S/N) and its complex with $Mn^{2+}$ have significant effects in XOD assay and response to paraquat. Cell free extract significantly prevented the photohemolysis. Thus, it seems that each sample from lactobacilli has a different free radical scavening mechanism. Furthermore, it is assumed that cell free extract from lactobacilli activates antibody stimulation of B cell through a stimulation of T cell.

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Could Glucose Oxidase and Superoxide Dismutase Inhibit the Oxidation of Fats and Oils ? (글루코오스 산화효소와 수퍼옥사이드 디스뮤타제는 유지의 산화를 억제할 수 있는가?)

  • Han, Dae-Seok;Yi, Ock-Sook;Ahn, Byung-Hak;Shin, Hyun-Kyung
    • Korean Journal of Food Science and Technology
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    • v.23 no.4
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    • pp.517-519
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    • 1991
  • The effect of glucose oxidase (GO) and superoxide dismutase (SOD) on the oxidative stability of fish oil was investigated from oxygen content and peroxide value determinations of oil samples stored in vial. GO could inhibit the oxidation of the oil by removing headspace oxygen. When SOD was solubilized in the oil, peroxide value was slightly lower than that of a control, indicating that the enzyme also had an effect on retarding the oxidation.

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Anti-effects of Photodynamic Therapy in Peroxiredoxin IV-induced AMC-HN3 Cell Lines

  • Ahn, Jin-Chul;Kang, Jung-Wook;Kim, Dae-Sik;Hong, Seong-No
    • Biomedical Science Letters
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    • v.14 no.4
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    • pp.263-267
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    • 2008
  • Photodynamic therapy (PDT) is a treatment utilizing the generation of singlet oxygen and other reactive oxygen species (ROS), which selectively accumulate in target cells. Peroxiredoxin (prx) plays an important role in eliminating peroxides generated during metabolism. Prx exert protective antioxidant role in cells though peroxidase activity. The aim of present work is to investigate the cytotoxicity of photofrin-mediated PDT in prx IV-transfectant AMC-HN3 cell lines. We confirmed that PDT has an effect on ROS generation in prx IV-induced cell lines. Treatment of PDT in prx IV-HN3 cell lines inhibits cytotoxic effects. Prx IV-induced HN3 cell lines resists in cell death during PDT. Also, prx IV-HN3 cell lines treated PDT inhibited ROS generation in contrast with vector control. We indicated that prx IV-induced AMC-HN3 cell lines have a function as inhibitors during PDT.

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Protective Effect of Isoflavone, Genistein from Soybean on Singlet Oxygen Induced Photohemolysis of Human Erythrocytes ($^1O_2$으로 유도된 사람 적혈구의 광용혈에 있어서 대두의 아이소플라본인 제니스테인의 보호작용)

  • Park, Soo-Nam
    • Korean Journal of Food Science and Technology
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    • v.35 no.3
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    • pp.510-518
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    • 2003
  • Protective effects of natural components including genistein (4',5,7-trihydroxyisoflavone) from Glycine max MERRILL on the rose-bengal sensitized photohemolysis of human erythrocytes were investigated. Genistein $(10{\sim}100\;{\mu}m)$ suppressed photohemolysis in a concentration-dependent manner, and was more effective than the lipid peroxidation chain blocker, ${\alpha}$-tocopherol (Vit. E). Glycoside of genistein, genistin, the water-soluble antioxidant, L-ascorbate, and the iron chelator, myo-inositol hexaphosphoric acid dodecasodium salt (sodium phytate) did not exhibit protective effect against photohemolysis. L-Ascorbate and sodium phytate stimulated photohemolysis at high concentration $(500\;{\mu}m)$. ${\alpha}$-Carotene 3,3'-diol (lutein), a singlet oxygen $(^1O_2)$ quencher, exhibited pronounced protective effect, an indication that $^1O_2$ is important in photohemolysis sensitized by rose-bengal. Reactive oxygen scavenging activities $(OSC_{50})$ of natural antioxidants including genistein on reactive oxygen species (ROS) generated in $Fe^{3+}-EDTA/H_2O_2$ system using the luminol-dependent chemiluminescence assay were in the order of sodium phytate > L-ascorbate > ${\alpha}$-tocopherol > genistein > genistin. $OSC_{50}$ value of genistein, genistin, ${\alpha}$-tocopherol, L-ascorbate, and sodium phytate were 41.0, 109.0, 9.0, 5.2, and $0.56{\mu}m$ respectively. The order of free radical (1,1-diphenyl-2-picrylhydrazyl, DPPH) scavenging activity $(FSC_{50})$ was L-ascorbate > ${\alpha}$-tocopherol > genistein > genistin. These results indicate that genistein can function as an antioxidant in biological systems, particularly skin exposed to solar UV radiation by scavenging $^1O_2$ and other ROS, and to protect cellular membranes against ROS.

Vascular Cell Responses against Oxidative Stress and its Application

  • Ryoo, Sung-Woo;Lee, Sang-Ki;Kim, Cuk-Seong;Jeon, Byeong-Hwa
    • International Journal of Vascular Biomedical Engineering
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    • v.2 no.2
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    • pp.1-9
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    • 2004
  • The history of studies in biology regarding reactive oxygen species (ROS) is approximately 40 years. During the initial 30 years, it appeared that these studies were mainly focused on the toxicity of ROS. However, recent studies have identified another action regarding oxidative signaling, other than toxicity of ROS. Basically, it is suggested that ROS are reactive, and degenerate to biomolecules such as DNA and proteins, leading to deterioration of cellular functions as an oxidative stress. On the other hand, recent studies have shown that ROS act as oxidative signaling in cells, resulting in various gene expressions. Recently ROS emerged as critical signaling molecules in cardiovascular research. Several studies over the past decade have shown that physiological effects of vasoactive factors are mediated by these reactive species and, conversely, that altered redox mechanisms are implicated in the occurrence of metabolic and cardiovascular diseases ROS is a collective term often used by scientist to include not only the oxygen radicals($O2^{-{\cdot}},\;{^{\cdot}}OH$), but also some non-radical derivatives of oxygen. These include hydrogen peroxide, hypochlorous acid (HOCl) and ozone (O3). The superoxide anion ($O2^{-{\cdot}}$) is formed by the univalent reduction of triplet-state molecular oxygen ($^3O_2$). Superoxide dismutase (SOD)s convert superoxide enzymically into hydrogen peroxide. In biological tissues superoxide can also be converted nonenzymically into the nonradical species hydrogen peroxide and singlet oxygen ($^1O_2$). In the presence of reduced transition metals (e.g., ferrous or cuprous ions), hydrogen peroxide can be converted into the highly reactive hydroxyl radical (${^{\cdot}}OH$). Alternatively, hydrogen peroxide may be converted into water by the enzymes catalase or glutathione peroxidase. In the glutathione peroxidase reaction glutathione is oxidized to glutathione disulfide, which can be converted back to glutathione by glutathione reductase in an NADPH-consuming process.

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The DNA Damage by Fish Oil Perokidation Products 1. DNA Damage by the Peroxidation Products of Total Lipid Fraction Extracted from Mackerel (어유산화생성물의 DNA 손상작용 1. 총지질산화생성물의 DNA 손상작용)

  • KANG Jin-Hoon;BYUN Han-Seok;LEE Yong-Woo;KIM Seon-Bong;PARK Young-Ho
    • Korean Journal of Fisheries and Aquatic Sciences
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    • v.20 no.3
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    • pp.213-218
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    • 1987
  • The DNA damage mechanism by fish oil peroxidation was investigated through the model system of a DNA-mackerel lipid at $37^{\circ}C$. Mackerel lipid peroxidation products induced a great DNA damage with the increment of its concentration, and such DNA damage in all systems examined occurred below $100millieq{\cdot}/kg$ in POV (peroxide value) Singlet oxygen $(^1O_2)$ and superoxide anion${\cdot}O_2^-$ greatly participated in the DNA damage during peroxidation of mackerel lipid, while hydrogen peroxide$(H_2O_2)$ and hydroxyl radical $({\cdot}OH)$ did little show the DNA damage. From the results of the addition of several active oxygen scavengers to the DNA-lipid systems, singlet oxygen ana superoxide anion greatly affected to the increase of POV ana to the DNA damage by mackerel lipid peroxidation, respectively. It indicates that there was a close relationship between the effects of active oxygens in the mackerel lipid peroxidation and its DNA damage mechanism.

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Effects of Riboflavin-photosensitized Oxidation on the Formation of Volatile Compounds in Oleic Acid Model Systems (리보플라빈 광산화에 의한 올레산 모델시스템에서 휘발성 물질 발생연구)

  • Yang, Seung-Ok;Chang, Pahn-Shick;Lee, Jae-Hwan
    • Korean Journal of Food Science and Technology
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    • v.37 no.5
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    • pp.717-722
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    • 2005
  • Formation mechanisms of light-induced volatile compounds were studied using riboflavin-photosensitized oleic acid model systems. Volatile compounds in model systems with 4000 ppm riboflavin at $35^{\circ}C$ under light or in the dark for 39 hr were isolated and identified by a combination of solid phase microextraction (SPME), gas chromatography (GC), and mass spectrometry (MS). Total volatiles in oleic acid with riboflavin under light for 13, 26, and 39 hr increased by 90, 190, and 270%, respectively, compared to those in oleic acid without riboflavin under light. Total volatiles in samples without riboflavin under light or samples with riboflavin in the dark were not significant in tested conditions (p>10.05). Riboflavin did not act as a photosensitizer when it was dispersed in oleic acid. Heptane, octane, heptanal, octanal, nonanal, and 2-nonenal were significantly increased in riboflavin-photosensitized samples compared to those in samples without riboflavin (p<0,05). Light-induced volatile compounds including heptanal and 2-nonenal from oleic acid could be explained using singlet oxygen oxidation, the formation mechanism of which were not understood using triplet oxygen oxidation. These results will help to understand volatile formation in oleic acid containing foods stored under light.

Effect of Ulmus macrocapa Ethanolic Extracts on Anti-oxidant Activity and Melanin Synthesis in B16F1 Cells (B16F1세포에서 항산화 활성 및 멜라닌 합성에 대한 유백피 에탄올 추출물의 효능)

  • Kwon, Eun-Jeong;Park, Hye-Jung;Kim, Moon-Moo;Lee, Kyeong Rok;Hong, Il;Lee, Do Gyeong;Oh, Yunghee
    • Journal of Life Science
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    • v.24 no.9
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    • pp.946-951
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    • 2014
  • Melanin plays a key role in the protection of skin from ultraviolet light that generates reactive oxygen species (ROS), such as superoxide, hydroxyl radical, singlet oxygen and hydrogen peroxide. However, the ROS leading to the oxidation of lipids, proteins and DNA are involved in the overproduction of melanin that is known to cause melasma, age spots and freckles. Among the herb medicines, Ulmus macrocarpa used in this study was reported to contain flavonoids as a main component. The aim of this study is to investigate the whitening and anti-oxidant effects of Ulmus macrocarpa ethanolic extracts (UMEE) in B16F1 cells. UMEE below $3.12{\mu}g/ml$ did not show cytotoxicity. In an anti-oxidant experiment, UMEE showed not only high reducing power and scavenging activity on DPPH, but it was also observed that UMEE exhibit an inhibitory effect on lipid peroxidation. UMEE did not display an inhibitory effect on tyrosinase activity in vitro. However, UMEE inhibited melanin synthesis in B16F1 cells. In addition, UMEE reduced the expression levels of tyrosinase and tyrosinase-related protein-2 (TRP-2), which are key enzymes in melanogenesis. These results indicate that UMEE exert a whitening effect through the inhibition of both tyrosinase and TRP-2 expressions as well as anti-oxidant activity, suggesting that UMEE could have the functional potential for a whitening effect on the skin.

Antioxidant activities of licorice-derived prenylflavonoids

  • Kim, Hyo Jung;Seo, Ji-Yeon;Suh, Hwa-Jin;Lim, Soon Sung;Kim, Jong-Sang
    • Nutrition Research and Practice
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    • v.6 no.6
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    • pp.491-498
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    • 2012
  • Glycyrrhiza uralensis (or licorice) is a widely used Oriental herbal medicine from which the phenylflavonoids dehydroglyasperin C (DGC), dehydroglyasperin D (DGD), and isoangustone A (IsoA) are derived. The purpose of the present study was to evaluate the antioxidant properties of DGC, DGD, and IsoA. The three compounds showed strong ferric reducing activities and effectively scavenged DPPH, $ABTS^+$, and singlet oxygen radicals. Among the three compounds tested, DGC showed the highest free radical scavenging capacity in human hepatoma HepG2 cells as assessed by oxidant-sensitive fluorescent dyes dichlorofluorescein diacetate and dihydroethidium bromide. In addition, all three compounds effectively suppressed lipid peroxidation in rat tissues as well as $H_2O_2$-induced ROS production in hepatoma cells. This study demonstrates that among the three phenylflavonoids isolated from licorice, DGC possesses the most potent antioxidant activity, suggesting it has protective effects against chronic diseases caused by reactive oxygen species as well as potential as an antioxidant food additive.

Scavenging Effects of Free Radicals and Inhibitory Effects of Lipid Peroxidation of Bupleury Radix Aqua-Acupuncture Solution in Vitro (시호 약침제제의 자유기 소거능 및 지질과산화 억제효능에 관한 연구)

  • Moon Jin-Young;Lim Jong-Kook
    • Journal of Acupuncture Research
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    • v.15 no.2
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    • pp.135-145
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    • 1998
  • Bupleury radix has been used for the treatment of fever, liver disease, inflammation in traditional medicine. The present study was carried out to evaluate the antioxidant effects of Bupleury radix aqua-acupuncture solution (BRAS) in vitro. Oxygen derived free radicals produced in the course of normal aerobic life, such as superoxide anion radical($O_2^-$ ), hydroxyl radicaI( OH), hydrogen peroxide($H_2O_2$) and singlet oxygen($^1O_2$) can attack polyunsaturated fatty acid in cell membranes, enzymes, other cell compounds, and give rise to lipid peroxidation, DNA damage, lipofuscin accumulation, structure alteration of cell membrane and cell death. In this study, antioxidant effects of BRAS on lipid peroxidation were determined according to the method of TBA. BRAS inhibited markedly peroxidation of linoleic acid during the autoxidation, and also inhibited lipid peroxidation induced by hydroxyl radical derived from $H_2O_2-Fe^{2+}$ in rat liver homogenate. And BRAS showed 30% scavenging effect on DPPH radical, also exhibited a 30% inhibitory effect on superoxide generation from xanthine-xanthine oxidase system. In addition, BRAS protected the cell death induced by tert-butyl hydroperoxide(t-BHP) and significantly increased cell viability in the normal rat liver cell(Ac2F).

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