• Title/Summary/Keyword: Catalase activity

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Neurotoxicant (fenitrothion) alters superoxide dismutase, catalase, and peroxidase activities in Chironomus riparius Mg. (Diptera, Chironomidae) larvae

  • Park, Jin-Hee
    • Environmental Mutagens and Carcinogens
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    • v.21 no.2
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    • pp.67-71
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    • 2001
  • Effects of exposure to a neurotoxicant, fenitrothion on antioxidant enzyme activities in Chironomus riparius Mg. (Diptera, Chironomidae) larvae were evaluated under laboratory conditions. Exposure to this chemical led to an increase of cupper, zinc type superoxide dismutase and manganese type superoxide dismutase activities and to a decrease of glutathion peroxidase activity. An activation of catalase was observed in the larvae exposed to high fenitrothion concentration. The response of superoxide dismutase was rapid and sensitive to low chemical concentrations, but changes in catalase, total peroxidase and glutathion peroxidase were less sensitive. In this study, antioxidant enzyme activities in Chironomus riparius larvae were identified as pertinent biomarkers for environmental monitoring.

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Effects on Lipid Peroxidation and Antioxidants of Paraquat in the Liver of Senescence-Accelerated Mouse(SAM) (제초제인 Paraquat가 SAM의 간조직에서 항산화효소의 활성 및 지질과산화에 미치는 영향)

  • 양미경;박문숙
    • Journal of environmental and Sanitary engineering
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    • v.14 no.2
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    • pp.8-17
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    • 1999
  • This research employed a senescence-accelerated mouse(SAM) to explore the possibility that differences exist among the major antioxidatns, lipid peroxidation in terms of ability to protect such animal treatment PQ, SAM-R/1 and SAM-P/8 were administered with PQ(200ppm/Kg) orally. The toxicity of PQ on SAM was determined as a bioassays of SOD, catalase and lipid peroxidation in the mouse liver. The data show that the SOD activity was induced by paraqwuat terement in both SAM-R/1 and SAM-P/8. The degree of lipid peroxidation was increased with PQ treatment. This means that SOD rather than catalase may protect against oxygen radical toxicity. Finally, over data lead to the toxicity of PQ and its function may efect to the antioxidants including SOD, catalase and lipid peroxidation in both SAM-R/1 and SAM-P/8 .

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Antioxidant Enzymes of Strains Panax ginseng C.A. Mey. and Panax quinquefolius L.

  • Slepyan L.I.;Kirillova N.V;Strelkova M.A.
    • Proceedings of the Ginseng society Conference
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    • 2002.10a
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    • pp.502-508
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    • 2002
  • The strains of Panax ginseng C.A. Mey., P. quinquefolius L. and selected strains P. ginseng-B, P.ginseng-A, P. quinquefolius-C were investigated. Activities of SOD, catalase and peroxydase were determined by methods of Fridovich et al. (1979), Komov et al.(1975), Bovaird et al.(1982) respectively. Activities of SOD, catalase, peroxydase were investigated every day 5 in cycle of cultivation. For P. ginseng it was the 35 days, P. quinquefolius the 70 days, P. quinquefolius-C 90 days. P. ginseng-B 90 days, P. ginseng-A 60 days. The P. quinquefolius, P. quinquefolius-C, P. ginseng-B had clear differentiation and developed tracheid elements, which are absent in strain of P. ginseng. The peaks of protein content for P. ginseng (4.5 units/g) and for P. quinquefolius (3.5 units/g) were on day 10 and remained unchanged till the last cultivation. The strain P. ginseng-A had two peaks of protein content (2.5 mg/g) on day 15 and on day 30. For P. ginseng-B strain these peaks were on day 5 and day 40 (3.5 mg/g). Peroxydase activity peak (60 units/g) in P. ginseng strain was on day 10. This activity in P. ginseng-B had two peaks on day 15 and day 35 and reached 95 units/g , increasing to 150 units/g to day 80. In strain of P. ginseng-A was only one maximum of this activity -130 units/g on day 45. In P. quinquefolius peroxydase activity was 103 units/g on day 40, increasing to 135 units/g to day 90. For P. quinquefolius-C this activity peak was 136 units/g on day 60. Peroxydase activities for the upper and lower layers of biomass was different and varied considerably from 28-35 units/g in lower to 270-290 units/g for upper layer. The SOD activity had two peaks in P. ginseng strain the 80 units/g and the 70 units/g on day 20 and day 35 respectively. Activity of SOD in P. quinquefolius strain reached 53 units/g on day 40 and increased up to 83 units/g to day 60.The similar increase of SOD activity was marked for P. ginseng-B to 85 units/g on day 90. In P. ginseng strain the 6 molecular isoforms SOD was defined. One of them with RfO,6 was determined in all days of cycle, three other (Rf-0.43; 0.54;0.80) only on day 10 and day 20. The isoform of SOD with Rf-0,29 was detected only on day 10 and with Rf-0,35 only on day 35. The catalase activity decreased in all strains to the last days of cultivation. The changes of SOD, catalase and peroxydase activities reflect the differences between the strains of Panax ginseng and Panax quinquefolius and their selected forms. The correlation between maximum life span of strains and activities of their antioxydant enzymes were detected.

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Simultaneous and Sequential Co-Immobilization of Glucose Oxidase and Catalase onto Florisil

  • Gul, Ozyilmaz;Tukel, S. Seyhan
    • Journal of Microbiology and Biotechnology
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    • v.17 no.6
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    • pp.960-967
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    • 2007
  • The co-immobilization of Aspergillus niger glucose oxidase (GOD) with bovine liver catalase (CAT) onto florisil (magnesium silicate-based porous carrier) was investigated to improve the catalytic efficiency of GOD against $H_2O2$ inactivation. The effect of the amount of bound CAT on the GOD activity was also studied for 12 different initial combinations of GOD and CAT, using simultaneous and sequential coupling. The sequentially co-immobilized GOD-CAT showed a higher efficiency than the simultaneously co-immobilized GOD-CAT in terms of the GOD activity and economic costs. The highest activity was shown by the sequentially co-immobilized GOD-CAT when the initial amounts of GOD and CAT were 10 mg and 5 mg per gram of carrier. The optimum pH, buffer concentration, and temperature for GOD activity for the same co-immobilized GOD-CAT sample were then determined as pH 6.5, 50 mM, and $30^{\circ}C$, respectively. When compared with the individually immobilized GOD, the catalytic activity of the co-immobilized GOD-CAT was 70% higher, plus the reusability was more than two-fold. The storage stability of the co-immobilized GOD-CAT was also found to be higher than that of the free form at both $5^{\circ}C\;and\;25^{\circ}C$. The increased GOD activity and reusability resulting from the co-immobilization process may have been due to CAT protecting GOD from inactivation by $H_2O2$ and supplying additional $O_2$ to the reaction system.

Characterization of a peroxidase in excretory-secretory product of adult Parasonimus westermani (폐흡충 성충이 분비배설하는 anti-oxidant ensymes의 특성 관찰 및 peroxidase의 정제)

  • Chung, Young-Bae;Kong, Yoon;Cho, Seung-Yull;Kang, Shin-Yong;Choi, Byung-Chan;Lee, Hi-Sung
    • Parasites, Hosts and Diseases
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    • v.31 no.3
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    • pp.259-268
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    • 1993
  • When activity of peroxidase in auld Pnrqfonimn westermqni was monitored using o-dianisidine and $H_2O_2$ as substrates, its specific activity was 1.5 times higher In excretory-secretory product (ESP) than in crude extract. The one was purified by two purification steps of Sephacryl S-300 Superfine gel permeation and DEAE-Trisacryl M anion exchange chromatographies. Its activity increased 16.9 fold with 32.3% recovery. The enzyme was inhibited totally by 1 millimoles of dithiothreitol (DTT), 2-mercaptoethanol and azide. Molecular mass was 16 kDa in reducing SDS-polyacrylamide gel electrophoresis (PAGE) or 19 kDa in TSK-Blue gel filtration high performance liquid chromatography (HPLC). respectively. Special staining for peroxidase by diaminobenzidine on SDS-PAGE confirmed the activity. The peroxidase was less reactive to a paragonimiasis serum when observed by SDS-PAGE/immunoblot. In addition, specific activities of superoxide dismutase (SOD) and catalase were also identified in the ESP. High activities of these antioxidant enzymes in ESP indicate that they are parts of defense mechanisms against reactive oxygen intermediates from host.

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Biochemical Changes in Brassica Seedlings Due to Uniconazole Treatment (Brassica속 작물 유묘에서 생장억제제 Uniconazole 처리에 따른 생화학적 변화)

  • Park, Woo-Churl;Nam, Min-Hee
    • Applied Biological Chemistry
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    • v.38 no.3
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    • pp.202-206
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    • 1995
  • In order to obtain the basic data for clarifing the mechanism of cold tolerance in crops, we analyzed various biochemical changes according to the Uniconazole treatment in Brassica seedling. Peroxidase activity in the root fraction of Brassica seedling was about 3 to 4 times higher than that in hypocotyl fraction, while catalase activity in those fractions showed opposite trend to the peroxidase activity. The content of hydrogen peroxide in root fraction was higher than that of hypocotyl fraction as being a reciprocal proportion with catalase activity. Especially in all fractions, peroxidase· activity of 'Sandongchae' (B. campestris) seedling, known as cold tolerant, was two-fold higher than that of cold sensitive rape(B. napus). The elongation rate of hypocotyl after germination was faster in B. napus than in B. campestris. The application of Uniconazole at 0.3 to 1.0 ppm to B. napus suppressed 43 to 46% of hypocotyl elongation and increased 65 to 73% of peroxidase activity in hypocotyl fraction. The shortening rate of hypocotyl length due to Uniconazole treatment was positively correlated with the increasing rate of peroxidase activity in hypocotyl fraction. Superoxide dismutase was not induced upon Uniconazole treatment and has only 3 isozymes in any fractions. Its activity was observed in the order of cotyledon>root>hypocotyl fraction.

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감마선 조사전 홍삼 추출물의 투여가 생쥐 간에서의 Superoxide dismutase의 활성과 지질 과산화에 미치는 영향

  • Park, Yeong-Sun;Kim, Dong-Yun;Jang, Jae-Cheol;Kim, Dong-Jo;Jeon, Cheol
    • The Journal of Korean Society for Radiation Therapy
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    • v.5 no.1
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    • pp.142-151
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    • 1992
  • Radioprotective effects of a red ginseng extracts on antioxidant enzymes(Superoxide dismutase, catalase and peroxidase) activities relationship to lipid peroxidation were studied in the cytosol fraction of mice liver. The experiments were carried out on Irradiated (5.5 Gy, $^{\60}Co$) and non-irradiated ICR mice after treatment of red ginseng extracts (5.5mg/mouse ; ip), In wholebody irradiated mice, irradiation caused a decrease in the activity of all these enzymes(on Day 21) The activities of SOD, Catalase and Peroxidase of red ginseng extracts treated mice were enhanced by $35.4\%,\;20.2\%$ and $20.1\%$, compared with non-treated mice. The red ginseng extracts led to inhibited increase of malondialdehyde product by ionizing radiation. The enhanced activity of enzymes that removed free radicals generated by radiation and thereby indicate that ginseng probably plays on important role in radioprotective effect.

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Effects of Saururus chinensis Baill on Glutathione and Antioxidative Activity Against TCDD-treated Rats (환경 Hormone에 대한 삼백초의 Glutathione 및 항산화 활성 효과)

  • Ha, Bae-Jin
    • Journal of Food Hygiene and Safety
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    • v.18 no.3
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    • pp.161-165
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    • 2003
  • The effects of Saururus chinensis Baill administration on the biochemical parameters of function in liver of 2,3,7,8-tetrachlorodibenzo-p-dioxin (TCDD) treated rats were investigated. Saururus chinensis Baill (200mg/kg) was administered into rats intraperitoneally for four weeks, seven days after the injection of TCDD(1 ${\mu}g/kg$). We examined the antioxidative enzymatic activity by measuring the level of AST and ALT in serum and SOD, Catalase, GPx, GSH and GSSG in liver tissue of rats. STT group showed 70.7% of inhibitive effect in AST acrivity compared to TTA group. ALT level of STT group was decreased to the level of NTT group. SOD and Catalase in TTA group were lower than in NTT group, but SOD and Catalase in STT group were increased by 82% and 55.45% respectively compared to TTA group. GSH contents in STT group were 74.20% increased compared to TTA group. GSSG contents in STT group were 61.08% decreased compared to TTA group. These results suggest that Saururus Chinensis Baill has a potent hepathprotective effect against TCDD intoxicated rats.

Changes in ROS-Scavenging Enzyme Activity in Rice (Oryza sativa L.) Exposed to High Salinity

  • Koo, Jeung-Suk;Choo, Yeon-Sik;Lee, Chin-Bum
    • Journal of Ecology and Environment
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    • v.30 no.4
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    • pp.307-314
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    • 2007
  • We studied changes in the biochemical and physiological status and ROS-scavenging enzyme (superoxide dismutase, catalase and peroxidase) activity in leaves and roots of rice (Oryza sativa L.) plants exposed to high salinity. Under salt stress, the reduction in RWC (relative water content) in leaves was relatively severe in comparison with that of roots. The proline content was also significantly higher in leaves of rice plants following salt treatment. The activities of CAT and POX in roots increased with increasing NaCl concentration, but the activity of SOD decreased. These results suggest that the increase of endogenous proline is closely associated with the increase of CAT and POX activities, which may play important roles in salt tolerance. Therefore, we conclude that the alleviation of oxidative damage and increased resistance to salinity may result from the presence of efficient antioxidative systems.

Effects of Spermidine on the Senescence in Leaf Discs of Chinese Cabbage (Spermidine이 배추 잎 원형절편의 노쇠과정에 미치는 효과)

  • 신정림
    • Journal of Plant Biology
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    • v.31 no.2
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    • pp.155-164
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    • 1988
  • The rapid senescence of detached Chinese cabbage leaf discs in darkness is first manifested by a sharp rise in malondialdehyde content (indicated by distruption of membrane structure), then by a rise in peroxidase activity and a decrease in catalase activity, and ultimately by chlorophyll degradation. These changes in parameters besides the catalase activity during senescence were delayed by application of spermidine. Especially, 10-4M spermidine almost completely arrested chlorophyll degradation after incubaton over 5 days. Spermidine reduced the amount of ethylene produced by senescing leaf discs. Additionally, it also reduced IAA-induced ethylene production. Calcium ion (1mM, 10mM) supplied together with the spermidine diminished the spermidine action, indicating probable involvement of an initial ionic attachment mechanism. These results suggest that spermidine can be used as an anti-senescence agent for plants and that this agent may stabilize membrane structure through interaction with the negatively charged loci on the membrane and exert the influence during senescence.

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