• Title/Summary/Keyword: oxidative enzymes

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Processed Panax ginseng, Sun Ginseng, Decreases Oxidative Damage Induced by tert-butyl Hydroperoxide via Regulation of Antioxidant Enzyme and Anti-apoptotic Molecules in HepG2 Cells

  • Lee, Hye-Jin;Kim, Jin-Hee;Lee, Seo-Young;Park, Jeong-Hill;Hwang, Gwi-Seo
    • Journal of Ginseng Research
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    • v.36 no.3
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    • pp.248-255
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    • 2012
  • Potential antioxidant effect of processed ginseng (sun ginseng, SG) on oxidative stress generated by tert-butyl hydroperoxide (t-BHP) was investigated in HepG2 cells. 3-(4,5-Dimethylthiazol-2-yl)-2,5-diphenyltetrazolium bromide assay and lactate dehydrogenase (LDH) leakage test demonstrated that SG dose-dependently prevents a loss of cell viability against t-BHP-induced oxidative stress. Also, SG treatment dose-dependently relieved the increment of activities of hepatic enzymes, such as aspartate aminotrasferase and alanine aminotransferase, and lipid peroxidation mediated by t-BHP treatment in HepG2 cells. SG increased the gene expression of antioxidant enzymes such as superoxide dismutase, catalase, and glutathione peroxidase. However, high dose of SG treatment caused decrease in mRNA level of glutathione peroxidase as compared to low dosage of SG-treated cells. The gene expression of glutathione reductase was found to be slightly increased by SG treatment. In addition, SG extract attributed its hepaprotective effect by inducing the mRNA level of bcl-2 and bcl-xL but reducing that of bax. But, the gene expression of bad showed no significant change in SG-treated HepG2 cells. These findings suggest that SG has hepatoprotective effect by showing reduction of LDH release, activities of hepatic enzymes and lipid peroxidation and regulating the gene expression of antioxidant enzymes and apoptosis-related molecules against oxdative stress caused by t-BHP in HepG2 cells.

Changes of Oxidative Enzymes and Fatty Acid Composition of Bifidobacterium adolescentis and B. longum under Anaerobic and Aerated Conditions. (산소의 Stress에 따른 Bifidobacterium adolescentis와 Bifidobacterium longum의 산화효소의 활성과 세포 지방산 조성의 변화)

  • 신순영;박종현
    • Microbiology and Biotechnology Letters
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    • v.26 no.1
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    • pp.7-14
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    • 1998
  • To study the oxygen tolerance mechanism of bifidobacteria, we have studied the growth of cells, the activities of the enzymes which were related with oxygen, such as catalase, superoxide dismutase(SOD), NADH oxidase, and NADH peroxidase, and cellular fatty acid compositions of Bifidobacterium adolescentis and B. longum under anaerobic and aerated (microaerobic and aerobic) conditions. B. longum grew relatively well under the microaerobic conditions, whereas the growth of B. adolescentis was inhibited under the same aerated conditions. B. adolescentis had extremely low level of NADH oxidative enzymes while B. longum had the relatively high level of NADH oxidative enzymes, whose activities were dramatically increased from 3.7 to 11.4 times by microaerobic condition but not in B. adolescentis. The activity of SOD was unexpectedly high in B. adolescentis compared with in B. longum under anaerobic and aerated conditions. The activities of catalase were not detected in all samples tested in this study. We also found that normal $C_{l6:0}$ and $C_{18:1}$ were the major fatty acids in B. adolescentis and B. longum under anaerobic and aerated conditions. 2.2-14.1% $C_{l9:0}$ cyclo fatty acid was detected only in B. longum and the fatty acid was increased by the addition of the aeration. The $C_{l9:0}$ cyclic fatty acid was identified as a cis 9, 10-methylene octadecanoic acid, which was different from lactobacillic acid in the cyclized site. 6.6%-24.6% of dimethyl acetals (DMA) which came from plasmalogen were observed in the B. adolescentis and B. longum grown under anaerobic condition, and the components were notably decreased in the cells grown under the aerated conditions. It is believed that NADH oxidative enzymes play an important role to detoxify oxygen metabolites of Bifidobacteriurn spp. under anaerobic and microaerobic conditions. Independently from oxidative enzymes, it seems that oxygen stress may induce the change of the level of cellular fatty acids showing an increase of $C_{l9:0}$ cyclo in B. longum and a decrease of $C_{l8:1}$ of plasmalogen in B. longum and B. adolescentis to adapt in environment.

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Can antioxidants be effective therapeutics for type 2 diabetes?

  • Park, Soyoung;Park, So-Young
    • Journal of Yeungnam Medical Science
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    • v.38 no.2
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    • pp.83-94
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    • 2021
  • The global obesity epidemic and the growing elderly population largely contribute to the increasing incidence of type 2 diabetes. Insulin resistance acts as a critical link between the present obesity pandemic and type 2 diabetes. Naturally occurring reactive oxygen species (ROS) regulate intracellular signaling and are kept in balance by the antioxidant system. However, the imbalance between ROS production and antioxidant capacity causes ROS accumulation and induces oxidative stress. Oxidative stress interrupts insulin-mediated intracellular signaling pathways, as supported by studies involving genetic modification of antioxidant enzymes in experimental rodents. In addition, a close association between oxidative stress and insulin resistance has been reported in numerous human studies. However, the controversial results with the use of antioxidants in type 2 diabetes raise the question of whether oxidative stress plays a critical role in insulin resistance. In this review article, we discuss the relevance of oxidative stress to insulin resistance based on genetically modified animal models and human trials.

Effects of Kimchi Solvent Fractions on Anti-oxidative Enzyme Activities of Heart, Kidney and Lung of Rabbit Fed a High Cholesterol Diet (김치 용매획분이 고 콜레스테롤 식이를 섭취한 토끼의 심장, 신장 및 폐의 항산화 효소계 활성에 미치는 영향)

  • 전혜년;김현주;송영옥
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.32 no.2
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    • pp.250-255
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    • 2003
  • The effects of dichlorornethane (CH$_2$C$_2$), ethylacetate (EtOAc) or water ($H_2O$) fraction of Korean cabbage kimchi on anti-oxidative enzyme activities of the heart, kidney and lung of rabbit fed 1% cholesterol diet for 16 weeks were studied. The amount of kimchi fraction added to the 100 g of diet was 8.3 mg of CH$_2$C1$_2$,5.6mg of EtOAc, and 221.9 mg of $H_2O$, which are equivalent to 5% of freeze-dried kimchi in the diet. Each group had 6 rabbits and rabbit was housed individually. Lipid peroxide values for the heart was the highest followed by lung and kidney. But the activities of catalase and GSH-px were the lowest in the heart and the highest in the kidney. Activities of anti -oxidative enzymes (catalase, GSH-px, Mn-SOD, Cu, Zn-SOD) of rabbits fed kimhi solvent fractions added diets were lower than those of the control which fed 1% cholesterol diet. Among kimchi groups, CH$_2$Cl$_2$ group showed the lowest (p<0.05) enzymes activities. Lipid accumulation in these organs fed diets with kimchi solvent fractions, especially with CH$_2$C1$_2$fraction, were lower than that of the control. Therefore, production of the lipid free radicals might be suppressed and the activities of anti -oxidative enzymes responsible for removing the free radicals seemed to be lowered in kimch frachoin-fed rabbits.

A Review of Journals on the Aging Skeletal Muscle (골격근의 노화에 대한 고찰)

  • Kwon, Oh-Bong;Song, Yun-Kyung;Lim, Hyung-Ho
    • The Journal of Korea CHUNA Manual Medicine
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    • v.4 no.1
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    • pp.55-65
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    • 2003
  • The purpose of this article was to contribute to the knowledge of physiological and pathological changes of aging skeletal muscles, and of therapic method. By aging there were changes of distribution of muscle fibers, the loss of muscle mass, the loss of the number of muscle fibers, the loss of glycolysis capacity, the decrease of the oxidative enzymes and muscle vascularization in the skeletal muscles. And as a pathological change, the exhaustive maximal exercise increased oxidative stress that led to oxidative damage which were shown to be implicated in promoting aging. The property of intensity and duration exercise is important not only in keeping human health and physical fitness from oxidative stress, but also for the maintenance of well-being and quality of life.

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The protective effects of trace elements against side effects induced by ionizing radiation

  • Hosseinimehr, Seyed Jalal
    • Radiation Oncology Journal
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    • v.33 no.2
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    • pp.66-74
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    • 2015
  • Trace elements play crucial role in the maintenance of genome stability in the cells. Many endogenous defense enzymes are containing trace elements such as superoxide dismutase and metalloproteins. These enzymes are contributing in the detoxification of reactive oxidative species (ROS) induced by ionizing radiation in the cells. Zinc, copper, manganese, and selenium are main trace elements that have protective roles against radiation-induced DNA damages. Trace elements in the free salt forms have protective effect against cell toxicity induced by oxidative stress, metal-complex are more active in the attenuation of ROS particularly through superoxide dismutase mimetic activity. Manganese-complexes in protection of normal cell against radiation without any protective effect on cancer cells are more interesting compounds in this topic. The aim of this paper to review the role of trace elements in protection cells against genotoxicity and side effects induced by ionizing radiation.

Upstream Regulators and Downstream Effectors of NADPH Oxidases as Novel Therapeutic Targets for Diabetic Kidney Disease

  • Gorin, Yves;Wauquier, Fabien
    • Molecules and Cells
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    • v.38 no.4
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    • pp.285-296
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    • 2015
  • Oxidative stress has been linked to the pathogenesis of diabetic nephropathy, the complication of diabetes in the kidney. NADPH oxidases of the Nox family, and in particular the homologue Nox4, are a major source of reactive oxygen species in the diabetic kidney and are critical mediators of redox signaling in glomerular and tubulointerstitial cells exposed to the diabetic milieu. Here, we present an overview of the current knowledge related to the understanding of the role of Nox enzymes in the processes that control mesangial cell, podocyte and tubulointerstitial cell injury induced by hyperglycemia and other predominant factors enhanced in the diabetic milieu, including the renin-angiotensin system and transforming growth factor-${\beta}$. The nature of the upstream modulators of Nox enzymes as well as the downstream targets of the Nox NADPH oxidases implicated in the propagation of the redox processes that alter renal biology in diabetes will be highlighted.

The Changes of Antioxidant Enzymes in the Lung of Alloxan-induced Diabetic Rats (알록산 유도 당뇨흰쥐의 폐에서 황산화계의 변화)

  • 최형호;고광삼;임동윤
    • YAKHAK HOEJI
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    • v.39 no.6
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    • pp.654-660
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    • 1995
  • The present study was attempted to investigate the mechanism of oxidative cellular injuries which occur in diabetic rats by determining changes of antioxidant enzymes activity in the lung of alloxan-induced diabetic rats, the contents of glutathione in the lung, liver, blood samples, and ${\gamma}$-glutamylcysteine synthetase activities in the liver. Superoxide dismutase activities (SOD), including Cu, Zn-SOD and Mn-SOD, decreased in the lung of diabetic rats compared with those of normal control rats. However, activities of catalase and glutathione peroxidase(GPX) activities were not affected in the lung of diabetic rats. In diabetic rats, glutathione contents in the lung, liver, and blood samples, as well as the activities of ${\gamma}$-glutamylcysteine synthetase in the livers which is known to be the key enzyme of glutatione biosynthesis, decreased significantly. From these experimental results, it is thought that the decrease in SOD activities in the lung, glutathione contents and ${\gamma}$-glutamylcysteine synthetase activities in some tissues in alloxan-induced diabetic rats may be the crucial cause of vullnerability to oxidative cellular injuries.

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