• Title/Summary/Keyword: reduced glutathione (GSH)

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Enact of Glutathione(GSH/GSSG) Contents of Fermented Ginseng on the ${\gamma}$-irradiated Liver of Mice (감마선을 조사한 생쥐 간에서 발효인삼이 Glutathione 함량에 미치는 영향)

  • Ko, In-Ho
    • The Journal of Korean Society for Radiation Therapy
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    • v.18 no.1
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    • pp.29-34
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    • 2006
  • Purpose: The radioprotective effects of white and fermented ginseng on liver damage induced by $^{60}Co\;{\gamma}$-ray were investigated. Materials and Methods: To one group of ICR male mice were given white(150 mg/kg/day for 7 days, orally) and fermented ginseng(150 mg/kg/day for 7 days, orally) before $^{60}Co\;{\gamma}$-ray irradiation. To another group were irradiated by 5 Gy(1.01 Gy/min) dose of $^{60}Co\;{\gamma}$-ray. Contrast group were given with saline(0.1 mL). The levels of reduced(GSH) and oxidized(GSSG) glutathione in liver tissue were measured. Results: In the fermented(150 mg/kg) and white ginseng(150 mg/kg) groups than irradiation group, the GSH levels were significantly increased, but the GSSG levels were significantly decreased. The ratio of GSSG/total GSH was significantly decreased in the fermented(150 mg/kg) and white ginseng(150 mg/kg) groups than irradiation group. Conclusion: In the fermented(150 mg/kg) groups than white ginseng(150 mg/kg) groups the GSH levels were significantly increased. The radioprotective effects of fermented(150 mg/kg) groups than white ginseng(150 mg/kg) groups were increased.

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The effect of Panax notoginseng saponins on oxidative stress induced by PCV2 infection in immune cells: in vitro and in vivo studies

  • Wang, Qiu-Hua;Kuang, Na;Hu, Wen-yue;Yin, Dan;Wei, Ying-Yi;Hu, Ting-Jun
    • Journal of Veterinary Science
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    • v.21 no.4
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    • pp.61.1-61.16
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    • 2020
  • Background: Panax notoginseng saponins (PNS) are bioactive substances extracted from P. notoginseng that are widely used to treat cardiovascular and cerebrovascular diseases and interstitial diseases. PNS have the functions of scavenging free radicals, anti-inflammation, improving blood supply for tissue and so on. Objectives: The aim of this study was to investigate the effects of PNS on the oxidative stress of immune cells induced by porcine circovirus 2 (PCV2) infection in vitro and in vivo. Methods: Using an oxidative stress model of PCV2 infection in a porcine lung cell line (3D4/2 cells) and mice, the levels of nitric oxide (NO), reactive oxygen species (ROS), total glutathione (T-GSH), reduced glutathione (GSH), and oxidized glutathione (GSSG) and the activities of xanthine oxidase (XOD), myeloperoxidase (MPO) and inducible nitric oxide synthetase (iNOS) were determined to evaluate the regulatory effects of PNS on oxidative stress. Results: PNS treatment significantly reduced the levels of NO and ROS, the content of GSSG and the activities of XOD, MPO, and iNOS (p < 0.05), while significantly increasing GSH and the ratio of GSH/GSSG in infected 3D4/2 cells (p < 0.05).Similarly, in the in vivo study, PNS treatment significantly decreased the level of ROS in spleen lymphocytes of infected mice (p < 0.05), increased the levels of GSH and T-GSH (p < 0.05), significantly decreased the GSSG level (p < 0.05), and decreased the activities of XOD, MPO, and iNOS. Conclusions: PNS could regulate the oxidative stress of immune cells induced by PCV2 infection in vitro and in vivo.

Radioprotective Effect of Ginseng Components on Antioxidant Enzymes, Glutathione and Lipid Peroxidation of Liver in ${\gamma}$-Irradiated Mice (홍삼 분획물이 감마선을 비사한 생쥐 간에서 항산화물질과 지질과산화에 미치는 방사선 보호효과)

  • 김동윤;장재철
    • Journal of Ginseng Research
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    • v.22 no.1
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    • pp.1-10
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    • 1998
  • In the present study, to determine whether the antioxidative components of Korean red ginseng protect against radiation damage and the possible relationship among the radioprotective effects and antioxidant actions, the effects of total saponin (200 mg/kg, ip) and lipophilic fraction (200 mg/kg, oral) preferment of mice on the survival ratio, major antioxidant enzymes (SOD, catalase and glutathione peroxidase) activities, glutathione levels and lipid peroxidation in the liver were exiled for 2 weeks after whole ${\gamma}$-body ${\gamma}$-irradiation (6.5 Gy). The 30-day survival ratio increased from 10% to 57% and 40% for mice treated with total saponin and lipophilic fraction, respectively. On day 14 after ${\gamma}$-irradiation, the ginseng total saponin pretreatment produced a slight increase of antioxidant enzymes activities and significantly Increased reduced glutathione (GSH) contents (p<0.05) in the liver compared with non-treated group. Pretreatment with ginseng total saponin significantly deceased GSSG/total GSH ratio (p<0.05) without change of GSSG in the liver and inhibited the radiation-induced incense in the hepatic malondialdehyde levels. (p<0.05) In these results, GSH plays an important role in the liver in several detoxifications and the reduction of lipid peroxides. Thus, it appears that total saponin of red ginseng exerts its radioprotective effect by accelerating the production of endogenous antioxidants, such as glutathione from radiation induced damages and thereby oxygen free radicals.

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Protective effects of Opuntia ficus-indica on Glutathione and Antioxidative Enzyme (Opuntia ficus-indica가 Glutathione 및 항산화 효소에 미치는 보호효과)

  • 전홍기;정영기;하배진
    • Journal of Life Science
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    • v.13 no.6
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    • pp.911-916
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    • 2003
  • The effects of Opuntia ficus-indica (OF) administration on the biochemical parameters of function in liver tissue and serum of $CCl_4$ treated rats were investigated. Opuntia ficus-indica (200 mg/kg) was administered into rats intraperitoneally for two weeks. $3.3m\ell$ of $CCl_4$$_4$ (50% $CCl_4$ : Olive oil = 1 : 1) was treated to rats on the 14th day and 15th day and they were operated on 15th day. We examined the antioxidative enzymatic activity by measuring the level of AST (Aspartate aminotransferase), ALT (Alanine aminotransferase), GSH (Glutathione reduced form), GSSG (Glutathione oxidezed form), GPx (GSH-peroxidase), SOD (Superoxide dismutase) and CAT (Catalase) in serum and liver tissue of rats. OFC administered group showed 24.8% of inhibitory effect in AST activity compared to $CCl_4$ -treated abnormal group (CTA). ALT level of OF administered group was decreased by 60.7% to the level of CTA. GSH, GSSG and GPx of OFC administered group were significantly higher than those of CTA group. SOD and CAT in OFC administered group were increased by 28.3% and by 16.9% respectively compared to those of CTA group.

Effects of 4-tert-octylphenol on glutathione-related antioxidant status in olive flounder Paralichthys olivaceus

  • Jee, Jung-Hoon;Keum, Yoo-Hwa;Bae, Jun Sung;Lee, Chae Won;Yang, Chan Yeong;Choi, Sang-Hoon;Kang, Ju-Chan;Park, Kwan Ha
    • Journal of fish pathology
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    • v.32 no.2
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    • pp.113-121
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    • 2019
  • Effects on glutathione-related antioxidant parameters were examined after a chronic exposure of olive flounder, Paralichthys olivaceus to dietary 4-tert-octylphenol (4-tert-OP). Fish were fed diets containing 4-tert-OP at 0, 1, 5 and 10 mg/kg diet for 6 weeks. Antioxidant parameters examined were reduced glutathione (GSH) contents and enzyme activities of glutathione reductase (GR), glutathione S-transferase (GST) and glutathione peroxidase (GPx) in tissue homogenates of the liver, kidney and gill. It was observed that all parameters examined increased although there were some differences in dose responses and temporal patterns in the increase. GSH contents increased after exposure to 4-tert-OP in the three organs examined. However, the GSH increase was evident only after 4 weeks in the liver whereas it was elevated after 2 weeks in the kidney and gill. GR activity exhibited a significant increase in response to 4-tert-OP at 1 mg/kg in all three organs, however, its activity returned to control levels when exposed to 5 and 10 mg/kg. Hepatic GST activity showed an earlier increase at week 2 in contrast to the kidney and gill where they increased after 4 weeks of 4-tert-OP exposure. Temporal patterns in GPx activity changes to 4-tert-OP exposure were dissimilar among the organs: hepatic activity increased from week 2 through week 6; renal activity increased transiently at week 2; gill levels were higher through weeks 4 - 6. The results suggest that elevation of several GSH-related antioxidant parameters can be considered as evaluation criteria for 4-tert-OP-induced oxidative stress in a fish.

Glutathione and Glutathione-Related Enzymes during Dictyostelium Development

  • Kim, Beom-Jun;Park, Chang-hoon;Kang, Sa-Ouk
    • Proceedings of the Korean Biophysical Society Conference
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    • 2002.06b
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    • pp.48-48
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    • 2002
  • Glutathione (GSH) is most prevalent reducing thiols in eukaryotic cells and known that participates in many cellular processes. It was found that total amount of glutathione and the ratio of reduced to oxidized glutathione during development of Dictyostelium discoideum increase at the initial stage of the aggregation of amoeba.(omitted)

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Glutathione Sulphydryl Contents and Antioxidant Activities of Lactobacillus spp. and Bacillus coagulans (Lactobacillus spp.와 Bacillus coagulans의 Glutathione Sulphydryl 함유율과 황산화 활성)

  • Byun, Jeong-Yeol;Yoon, Yeong-Ho
    • Journal of Dairy Science and Biotechnology
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    • v.22 no.2
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    • pp.91-97
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    • 2004
  • The antioxidative ability on the basis of reduced glutathione sulphydryl(GSH) level, the inhibition activities of linoleic acid peroxidation of cell free extract of Lactobacillus spp. and Bacillus spp. have been determined; Lactobacillus casei CU4114 contained the highest level of GSH among the probiotic strains with 25.15 ${\mu}$mole/g. Significantly high level of GSH occured in the intracellular cell free extract of Lactobacillus rhamnosus CU4201, Lactobacillus plantarum CU4203. The antioxidant activity and inhibition of linoleic acid peroxidation of cell free extract of Lactobacillus spp. and Bacillus spp. by thiobarbituric acid(TBA) assay have been shown to be significantly differed depending on the strains(P>0.01). Intracellular cell free extracts of L. acidophilus CU4111, L. casei CU4114, and strains of Bacillus coacillus revealed a significantly intensive inhibitory activity in the linoleic acid peroxidation reactions. Spearmans' rank correlation between inhibitory activity on linoleic acid peroxidation and cellular GSH levels of Lactobacillus spp. was analysed and the correlation quotient was 0.65 which means a significant positive correlation.

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Excess Taurine Induced Placental Glutathione S-transferase Positive Foci Formation in Rat

  • Kweon, Sang-Hui;Kim, Yoon;Choi, Hay-Mie;Kwon, Woo-Jung;Chang, Kyung-Ja
    • BMB Reports
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    • v.33 no.6
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    • pp.469-475
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    • 2000
  • The purpose of this study was to examine the chemopreventive potential of taurine at various levels on the diethylnitrosamine (DEN)·induced hepatocarcinogenesis. Male Sprague-Dawley rats were fed on diets containing 0, 1, 2, 3% taurine or 5% ${\beta}-alanine$ for taurine depletion. Then they were treated with DEN and 2/3 partial hepatectomy. The number of placental glutathione S-transferase positive ($GST-P^+$) foci, as a preneoplastic marker in the 1 % taurine group was lower than the control diet group. However the difference was insignificant. Although taurine diets reduced the thiobarbituric acid reactive substance (TBARS) level, the number of $GST-P^+$ foci was increased in 3% taurine diet group. The 1 % taurine diet increased the glutathione (GSH) level and GST activity, however they unfortunately did not suppress the foci formation. In the 3% taurine group, the GSH level and GSH peroxidase (GPx) activity were significantly decreased. Excess taurine supplementation of the pharmaceutical dose worked against hepatic chemoprevention, which might result from modulation of GPx activity and GSH utility. On the contrary, taurine might work as an antioxidant against TBARS production as the 1 % taurine diet increased GSH level. The potency of the cancer preventive effect of taurine still remains and further studies should investigate the effect of taurine with less than 1 % levels on the prevention of hepatic cancer.

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Effects of Reduced Glutathione on Non-Protein Sulfhydryl, Non-Protein Disulfide and Oxygen Consumption Rate of Mouse Duodenum Following Whole Body X-Irradiation (Reduced Glutathione 이 X-선전신조사(線全身照射)를 입은 마우스 십이지장(十二指腸)의 NP-SH, NP-SS 및 산소소비량(酸素消費量)에 미치는 영향(影響))

  • Lee, Joong-Kil;Choo, Young-Eun
    • The Korean Journal of Physiology
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    • v.5 no.2
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    • pp.55-62
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    • 1971
  • In an attempt to better understand the effects of whole body X-irradiation on the levels of non-protein sulfhydryl (NP-SH), non-protein disulfide (NP-SS) and oxygen consumption rate $(QO_2)$ of the mouse duodenum, and to clarify the possible radioprotective action of reduced glutathione (GSH), a whole body X-irradiation of 1,000r was given to albino mouse either singularly or immediately after injecting GSH intraperitoneally to mouse 1 mg per gm of body weight. NP-SH was measured by Ellman's method, NP-SS was measured by the electrolytic reduction method described by Dohan and Woodward, and $(QO_2)$ by the Warburg's standard manometric method. The experiment was performed at 1, 6, 12 and 24 hours post-irradiation, and the comparison was made with the control. The results thus obtained are summarized as follows: 1) Comparing with the intrinsic NP-SH level of $3.31{\pm}0.27{\mu}\;mol/gm$ wet weight in the duodenum of the normal mouse, either whale body X-irradiation or injection of GSH alone produced no significant change in NP-SH from the normal. However, when GSH was injected prior to X-irradiation, markedly elevated NP-SH levels were observed throughout the entire experiment with the highest value of $4.70{\pm}0.10$ at 6 experimental hours. 2) The normal value of NP-SS in the mouse duodenum was $1.57{\pm}0.17{\mu}\;mol/gm$ wet weight, while in the group where injection of GSH and X-irradiation were combined, NP-SS increased to $2.36{\pm}0.33$ at 12 hours and $2.15{\pm}0.53$ at 24 hours, showing the intermediate value between the GSH injection group and X·irradiation group. 3) The normal value of $(QO_2)$ was $4.16{\pm}0.73{\mu}l\;O_2/hr./gm$ D.W., and no noticeable change was observed comparing with the GSH injection group. However, in the group where X·irradiation alone was given, $(QO_2)$ of the duodenum increased significantly throughout the entire experiment with the highest value of $6.35{\pm}1.07$ at 6 experimental hours. When GSH was injected before X-irradiation was given, the levels of $(QO_2)$ were in the middle of the GSH injection group and X-irradiation group. 4) The above results suggest that GSH may be effective as a radioprotector in terms of NP-SH, NP-SS and $(QO_2)$ of the mouse duodenum.

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Comparison of Neurotoxicity Induced by Some Glutathione Depletors in Mouse Cortical Cell Cultures

  • Lee, Gee-Woon;Lee, Kuy-Sook;Park, Sah-Hoon;Bae, Choon-Sang;Kim, Jong-Keun
    • The Korean Journal of Physiology and Pharmacology
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    • v.4 no.3
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    • pp.177-183
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    • 2000
  • We examined the neurotoxic effects of 3 glutathione (GSH) depletors, buthionine sulfoximine (BSO), diethyl maleate (DEM) and phorone, under the presence of trolox, cycloheximide (CHX), pyrrolidine dithiocarbamate (PDTC) or MK-801 in primary mouse cortical cell cultures. All three depletors induced neuronal death in dose and exposure time dependent manner, and decreased total cellular GSH contents. The patterns of the neuronal death and the GSH decrements were dependent on the individual agents. DEM $(200\;{\mu}M)$ induced rapid and irreversible decrement of the GSH. BSO (1 mM) also decreased the GSH irreversibly but the rate of decrement was more progressive than that of DEM. Phorone (1 mM) reduced the GSH content to 40% by 4 hr exposure, that is comparable to the decrement of BSO, but the GSH recovered and reached over the control value by 36 hr exposure. BSO showed a minimal neurotoxicity $(0{\sim}10%)$ at the end of 24 hr exposure, but marked neuronal cell death at the end of 48 hr exposure. The BSO (1 mM)-induced neurotoxicity was markedly inhibited by trolox or CHX and partially attenuated by MK-801. DEM induced dose-dependent cytotoxicity at the end of 24 hr exposure. Over the doses of $400\;{\mu}M,$ glial toxicity also appeared. DEM $(200\;{\mu}M)-induced$ neurotoxicity was markedly inhibited by trolox or PDTC. Phorone (1 mM) induced moderate neurotoxicity (40%) at the end of 48 hr exposure. Only CHX showed significant inhibitory effect on the phorone-induced neurotoxicity. These results suggest that the GSH depletors induce neuronal injury via different mechanisms and that GSH depletors should be carefully employed in the researches of neuronal oxidative injuries.

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