• Title/Summary/Keyword: Sulfoximine

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The Acute Toxicity of 1,2,4-Trichlorobenzene in Sprague-Dawley Rats Depleted of Glutathione by Treatment with Buthionine Sulfoximine (BSO 유도 글루타치온 저감 흰쥐에서 1,2,4-trichlorobenzene의 급성독성)

  • 안영수
    • Toxicological Research
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    • v.12 no.1
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    • pp.29-34
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    • 1996
  • 1,2,4-trichlorobenzene (1,2,4-TCB) is used as a dye carrier, an intermediate in the syn[hesis of herbicides, aflame retardant, and for other purpose. After a single oral administration of 1,2,4-TCB (200 mg/kg, 400 mg/kg) in rats, toxic effects were studied by means of serum biochemical and hematological analysis, and liver calcium concentration. Administration of 1,2,4-TCB resulted in dose-dependent manner liver and kidney damage being suggested by increased serum alanine aminbtransferase (ALT) activities, liver calcium concentration and blood urea nitrogen (BUN). Pretreatment with DL-buthionine sulfoximine (BSO, 2 mmol/kg, i.p.) considerably decreased liver glatathione concentration, which was accompanied by markedly elevated serum ALT activites. It is well-known that toxicity of halogenated benzene such as bromobenzene, 1,4-dichlorobenzene is increased by pretreatment of phenobarbital, and protected by pretreatment of cytochrorn P450 inhibitor including metyrapone. However, there were no obvious alterations in toxicity of 1,2,4-TCB by pretreatment of phenobarbital or metyrapone. In comparison with control group, treatment groups exhibited significant changes in some parameters of hematological analysis but all hematological values remained within normal ranges.

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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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Aliphatic and Allyl Alcohol-Induced Liver Cell Toxicity and its Detoxification

  • Park, Su-Kyung;Lee, Wan-Koo;Park, Young-Hoon;Moon, Jeon-Ok
    • Toxicological Research
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    • v.14 no.2
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    • pp.157-161
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    • 1998
  • The mechanism of active aldehyde-induced liver disease and the enzymatic basis of detoxification were investigated using normal rat liver cell, Ac2F. Aliphatic alcohols including l-decyl alcohol, l-nonanol, l-heptanol, l-hexanol, l-propanol and allyl alcohol exerted a dose- and time-de-pendent toxicity to Ac2F cells. The extent of their toxicities in buthionine sulfoximine (inhibitor of glutathione synthesis) pretreated cells was greater than in pargyline (inhibitor of aldehyde dehydrogenase, ALDH). On the other hand, the toxicity of these alcohols were not affected by 4-methylpyrazole (inhibitor of alcohol dehydrogenase, ADH). These results suggest that the contents of glutathione (GSH) seems to be very important in protecting the cells from toxicants such as aliphatic alcohols.

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Protective effect of KR-32000 against hypoxia- and oxidative stress-induced cardiac cell death

  • Kim, Mi-Jeong;Yoo, Sung-Eun;Yi, Kiu-Yang;Lee, Sun-Kyung;Lee, Soo-Hwan;Baik, Eun-Joo;Moon, Chang-Hyun;Jung, Yi-Sook
    • Proceedings of the PSK Conference
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    • 2002.10a
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    • pp.297.3-298
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    • 2002
  • A benzopyranyl derivative. KR32000. synthesized as a plausible KATP opener. has been shown to exert cardioprotective effect in vivo myocardial infarct model. In this study. we investigated whether KR32000 can produce cardioprotective effect against hypoxia- and reactive oxygen species(ROS)-induced injury in heart-derived H9c2 cells. Hypoxic injury was induced by incubating cells in anaerobic chamber (glucose-free. serum-free DMEM. 85% N2. 5% CO2. 10% H2) and oxidative stress was induced by buthionine sulfoximine(BSO). (omitted)

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Effect of Arsenic Treatment and Pretreatment in Rat Liver Tissue (흰쥐 간조직에서의 비소처리 영향 및 비소 전처리 효과)

  • Ro, Mi-Kyeong;Sohn, Seong-Hyang;Boo, Moon-Jong;Kim, Ok-Yong
    • Applied Microscopy
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    • v.24 no.4
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    • pp.78-85
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    • 1994
  • Sodium arsenite ($NaAsO_2$) was injected to the rat subcutaneously for the study of the acute toxicity of arsenite on hepatocytes, and the effects of pretreatment of arsenite and glutathione on the lethalty of the arsenite treated rats. Arsenite treated rat hepatocytes showed vacuolated cytosol and shrinked nuclear and expanded perinuclear space and cytoplasmic membrane whirl. Rats pretreated with BSO (L-Buthionine-SR-Sulfoximine), less survived than arsenite treated alone. It means that glutathione acts as a protecting agent against the arsenite. Subcutaneous sublethal dose (10mg/kg body weight) treatment was showed the protecting activity to lethality of lethal dose (15mg/kg body weight) treated rat. 10mg/kg body weight sublethal dose effects appeared in six hours intervals of between treatments.

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PULMONARY XENOBIOTIC CONJUGATION IN THE ISOLATED PURFUSED RABBIT LUNG AND IN VITRO: EFFECT OF ETHANOL

  • Yang, C.Mierha;Carlson, Gary P.
    • Toxicological Research
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    • v.7 no.2
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    • pp.191-208
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    • 1991
  • Pulmonary conjugation pathways may be important for the metabolism of xenobiotics introduced via airways of systemically. The objective of this study was to determine the pulmonary conjugating capacity in both the isolated perfused rabbit lung (IPRL) and in vitro, and the ability of ethanol to alter the above. The IPRL was capable of conjugating glutathione (GSH) with either 1-chloro-2,4-dinitrobenzene (CDNB) of 1,2-epoxy-(p-nitrophenoxy) propane(ENP). The pulmonary GSH conjugation with ENP was inhibited by cibacron blue, indicating the presence of glutathione-S-transferase (GST) u and/or classes, but it was not altered by buthionine sulfoximine, a selective inhibitor of Gamma-glutamylcysteine synthetase.

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Quercetin 3-O-$\alpha$-arabinofuranoside protects heart-derived H9c2 cells against oxidative injury through maintaining MMP

  • Kim, Mi-Young;Jung, Yi-Sook;Kim, Young-Ho;Baik, Eun-Joo;Lee, Soo-Hwan;Moon, Chang-Hyun
    • Proceedings of the PSK Conference
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    • 2003.04a
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    • pp.143.1-143.1
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    • 2003
  • In this study. we investigated whether the cardioprotective effect shown by quercetin 3-O-$\alpha$-arabinofuranoside extracted from Lindera erythrocarpa against ROS-induced cell death in H9c2 cardiac myocytes. Cell death was induced by BSO, buthionine sulfoximine, which inhibits GSH level and subsequntly increase ROS level. Cell death was quntitatively determined by measuring lactate dehydrogenase (LDH) activity. (omitted)

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2-deoxy-D-Glucose Synergizes with Doxorubicin or L-Buthionine Sulfoximine to Reduce Adhesion and Migration of Breast Cancer Cells

  • Mustafa, Ebtihal H;Mahmoud, Huda T;Al-Hudhud, Mariam Y;Abdalla, Maher Y;Ahmad, Iman M;Yasin, Salem R;Elkarmi, Ali Z;Tahtamouni, Lubna H
    • Asian Pacific Journal of Cancer Prevention
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    • v.16 no.8
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    • pp.3213-3222
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    • 2015
  • Background: Cancer metastasis depends on cell motility which is driven by cycles of actin polymerization and depolymerization. Reactive oxygen species (ROS) and metabolic oxidative stress have long been associated with cancer. ROS play a vital role in regulating actin dynamics that are sensitive to oxidative modification. The current work aimed at studying the effects of sub-lethal metabolic oxidative stress on actin cytoskeleton, focal adhesion and cell migration. Materials and Methods: T47D human breast cancer cells were treated with 2-deoxy-D-glucose (2DG), L-buthionine sulfoximine (BSO), or doxorubicin (DOX), individually or in combination, and changes in intracellular total glutathione and malondialdehyde (MDA) levels were measured. The expression of three major antioxidant enzymes was studied by immunoblotting, and cells were stained with fluorescent-phalloidin to evaluate changes in F-actin organization. In addition, cell adhesion and degradation ability were measured. Cell migration was studied using wound healing and transwell migration assays. Results: Our results show that treating T47D human breast cancer cells with drug combinations (2DG/BSO, 2DG/DOX, or BSO/DOX) decreased intracellular total glutathione and increased oxidized glutathione, lipid peroxidation, and cytotoxicity. In addition, the drug combinations caused a reduction in cell area and mitotic index, prophase arrest and a decreased ability to form invadopodia. The formation of F-actin aggregates was increased in treated T47D cells. Moreover, combination therapy reduced cell adhesion and the rate of cell migration. Conclusions: Our results suggest that exposure of T47D breast cancer cells to combination therapy reduces cell migration via effects on metabolic oxidative stress.

Effect of Glutathione on Lead Induced Modulation of NO Synthesis in RAW 264.7 Cell (RAW 264.7 Cell에서 납에 의한 NO 생성의 조절에 미치는 Glutathione의 효과)

  • Oh, Gyung-Jae;Kwon, Keun-Sang;Yoon, Wook-Hee;Shin, Sae-Ron
    • Journal of Preventive Medicine and Public Health
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    • v.35 no.4
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    • pp.269-274
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    • 2002
  • Objectives : To evaluate the elect of glutathione(GSH) on lead induced modulation of nitric oxide(NO) synthesis, and to examine how lead modulates NO production in macrophages. Methods : This study was observed in a culture of RAW 264.7 cells, which originated from a tumor in a Balb/c mouse that was induced by the Abelson murine leukemia virus. The compounds investigated were lead chloride, N-acetyl-cystein(NAC), and Buthionine Sulfoximine( BSO). Results : ATP synthesis in RAW 264.7 cells was unchanged by each lead concentration exposure in a dose dependent manner. The NO synthesis was decreased when exposed to lead($PbCl_2$) concentration $0.5{\mu}M$. The presence of $300{\mu}M$ NAC, used as a pretreatment in the culture medium, caused the recovery of the lead induced decrease in NO synthesis, but in the presence of $300{\mu}M$ BSO as a pretreatment, there was no recoverey. Pretreatment with NAC and BSO had no affect on ATP synthesis at any of the lead concentrations used. Conclusions : These results indicated that GSH has a protective effect toward lead toxicity, and suggested that the inhibition of NO production in macrophage due to lead toxicity may be related to cofactors of iNOS (inducible nitric oxide synthase)

Gossypin Protects Primary Cultured Rat Cortical Cells from Oxidative Stress- and $\beta$-Amyloid-Induced Toxicity

  • Yoon, Injae;Lee, Kwang-Heun;Choi, Jungsook
    • Archives of Pharmacal Research
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    • v.27 no.4
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    • pp.454-459
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    • 2004
  • The present study investigated the effects of gossypin, 3,3',4',5,7,8-hexahydroxyflavone 8-glucoside, on the toxicity induced by oxidative stress or $\beta$-amyloid ($A_{\beta}$) in primary cultured rat cortical cells. The antioxidant properties of gossypin were also evaluated by cell-free assays. Gossypin was found to inhibit the oxidative neuronal damage induced by xanthinelxanthine oxidase or by a glutathione depleting agent, D,L-buthionine (S,R)-sulfoximine. In addition, gossypin significantly attenuated the neurotoxicity induced by $A_{{\beta}(25-35)}$. Furthermore, gossypin dramatically inhibited lipid peroxidation initiated by $Fe^{2+}$ and ascorbic acid in rat brain homogenates. It also exhibited potent radical scavenging activity generated from 1 ,1-diphenyl-2-picrylhydrazyl. These results indicate that gossypin exerts neuroprotective effects in the cultured cortical cells by inhibiting oxidative stress- and $A_{\beta}$-induced toxicity, and that the antioxidant properties of gossypin may contribute to its neuroprotective actions.