• Title/Summary/Keyword: Benzylalcohol or aldehyde dehydrogenase

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Effect of the Combination of Ethanol with Toluene Treatment for a Short Time Period on the Toluene Metabolizing Enzyme Activity (흰쥐에 Toluene과 Alcohol의 병행투여가 Toluene 대사 효소활성에 미치는 영향)

  • 윤종국;전재현;신중규
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.25 no.6
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    • pp.976-980
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    • 1996
  • To elucidate the effect of acute ethanol pretreatment on some toluene metabolizing enzyme activities, rats were divided into 4groups: control, alcohol-treated, toluene-treated, rat's and toluene-treated rats pretreated with ethanol. The alcohol or toluene-treated rats showed the significantly increased activities of hepatic aniline hydroxylase(AH) and aminopyrine demethylase(AD) compared to the control group. And the toluene-treated rats pretreated with ethanol showed somewhat decreased tendency of these enzyme activities compared to only toluene-treated rats. Liver benzylalcohol or aldehyde dehydrogenase activities were higher in alcohol or toluene-treated rats than those of the control group. The toluene-treated rats showed the decreased tendency of benzylalcohol dehydrogenase activities by the pretreatment of alcohol. Furthermore, toluene treated-rats showed the markedly decreased activity of benzaldehyde dehydrogenase by the ethanol pretreat-ment. On the other hand, hepatic xanthine oxidase activity in toluene-treated animals pretreated with ethanol was significantly higher than those of the toluene alone-treated rats. These results indicate that the combination of ethanol with toluene treatment for a short period of time possibly results in decreased activity of some toluene metabolizing enzymes in rats.

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Effect of Circadian Rhythms on the Toluene Metabolism in Rats (흰쥐에 있어서 Toluene 대사에 미치는 주.야 시차의 영향)

  • 류종일;윤종국;신중규
    • Biomedical Science Letters
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    • v.5 no.1
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    • pp.67-74
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    • 1999
  • To investigate the effect of the circadian variations on the toluene metabolism, 50% toluene in olive oil (0.2 m1/100 g body weight) was intraperitoneally administered to the rats every other day for 6 days both in the night; 24:00 and the day; 12:00. Each group of animals was sacrificed at 8 hr after last injection of toluene. Hepatic microsomal aniline hydroxylase activity was more increased in control rats of night phase than those of day phase. On the other hand, the activities of hepatic benzylalcohol dehydrogenase in control rats of night phase showed the similiar value with that in those of day phase and in case of toluene treatment, these enzyme activities in rats of night phase were rather more decreased than those of day phase. Furthermore, hepatic benzaldehyde dehydrogenase activities were more or less higher in the control rats of night phase than those of day phase and by toluene treatment, enzyme activities of rats of night phase were somewhat decreased than those of day phase. in vitro, benzylalcohol or benzaldehyde inhibited the activities of benzylalcohol or aldehyde dehydrngenase prepared from the rats liver supematant. There were no differences in urinary hippuric acid contents between the night phase and day phase both in the control and toluene treated group. The increasing rate of liver weight per body weight (%), serum xanthine oxidase activities were higher in rats of night phase than in those of day phase by toluene treatment. In conclusion, these results indicate that the producing rate of benzylalcohol and benzaldehyde from toluene may be higher in rats of night phase than those of day phase.

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Effect of Hepatic Damage on the Toluene Metabolism in Carbon Tetrachloride Pretreated-Rats (흰쥐에 있어서 톨루엔 대사에 미치는 간손상의 영향)

  • Cha, Sang-Eun;Yoon, Chong-Guk;Lee, Sang-Il
    • Toxicological Research
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    • v.14 no.3
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    • pp.321-328
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    • 1998
  • This study was performed to evaluate the effect of liver damage on toluene metabolism in rats pretreated with carbon tetachloride. Liver damage in rats was induced by administration of 0.1ml of carbon tetrachloride per 100g of body wight intraperitoneally every day for four weeks except the last day before sacrifice. One day before sacrifice, toluene was administered to the animals instead of carbon tetrachloride. Rats were sacrificed at the 1st, the 2nd, the 3rd and the 4th week after the first administration of carbon tetachloride. Based on the histopathological findings, liver weight and serum alanine aminotransferase, the $CCl_4$-preteated group was found to have gradual severe liver damage. Especially the degree of liver injury became increasingly severe throughout the whole course of the experiment. The contnts of hippuric acid in urine lower in the all groups pretreated with $CCl_4$than that of the control. The contents of hepatic cytochrome P450(CYP), benzylalcohol dehydrogenase and benzaldehyde dehydrogenase activities were decreased in $CCl_4$-pretreated rats than those of the control. The $CCl_4$treated animals showed the gradual decreased activities of these enzyme as injection times elapsed. Km values of the benzylalcohol dehydrogenase in pooled liver samples from $CCl_4$-pretreated or control groups were similar. On the other hand, Vmax values of the $CCl_4$-pretreated group was lower than of the control. Therefore, it can be concluded that reduction of the toluene metabolism in damaged rat liver induced with $CCl_4$was due to the inhibition of CYP content, bezylalcohol and benzaldehyde dehydrogenase activities which related with toluene metabolic enzyme system.

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Effect of Ethanol-pretreatment on the Liver Xanthine Oxidase Activity in Xylene-treated Rats (에탄올 전처치한 흰쥐에 Xylene 투여가 간조직 중 Xanthine Oxidase 활성 변동에 미치는 영향)

  • 윤종국;이상희;전태원
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.27 no.4
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    • pp.739-744
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    • 1998
  • To evaluate an effect of ethanol pretreatment on the liver xanthine oxidase(XO) activity, 0.25ml of xylene(50% in olive oil) per 100g body weight was daily given four days to the rats at 2hrs after aministration of ethanol each day, while each control group(ethanol, xylene, olive oli) was treated as the same dose described as above. The animals were sacrificed at 24hrs after last injection. Xylene-treated rats showed the more decreased activity of liver XO compared to the control. But the pretreatment of ethanol to the xylene-treated rats enhanced the liver XO activity. Furthermore, the xylene-treated rats led to more increased Vmax value in liver XO compared to the only xylene-treated rats. On the other hadn, hepatic aldehyde dehydrogenase activity was more decreased in xylene-treated rats pretreated with ethanol than in xylene-treated rats. And the intermediated xylene metabolites, methyl benzylalcohol or aldehyde inhibited the XO activity "in vitro". In conclusion, the phenomenon that pretreatment of ethanol to the xylene-treated rats led to the enhancement of liver XO activity, may be due to an influence of acetaldehyde.taldehyde.

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Effect of Toluene Application to Skin on the Liver Injury in Rats

  • Chae, Soon-Nim;Lee, Sang-Hee;Yoon, Chong-Guk
    • Biomedical Science Letters
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    • v.7 no.1
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    • pp.47-51
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    • 2001
  • To investigate an effect of the topical toluene application to .at skin on the liver injury, toluene (35 mg/$cm^2$) was sequentially applied for 3 or 5 days to rat skin and then the animals were sacrificed. 5 day toluene-treated rats showed the slight increase of live. weight per body weight(%) compared with control. Serum levels of xanthine oxidase and alanine aminotransferase activity were significantly increased both in 3 days and 5 days toluene-treated animals compared with control. In the histopathological findings, cytoplasmic degeneration of hepatocytes around the central vein was noted in the liver of rats applied with toluene to the skin. These results indicate toluene application to rat skin feds to somewhat slight liver injury. On the other hand, the hepatic benzylalcohol or aldehyde dehydrogenase activities were significantly decreased by toluene application to rat skin. In conclusion, the liver min was induced by toluene application to rat skin, and it can be hypothesized that accumulation of benzaldehyde in liver cell may be responsible for liver injury.

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