• Title/Summary/Keyword: Galactosamine

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The Therapeutic Effects of Korean Red Ginseng on Carbon Tetrachloride- and Galactosamine-induced Hepatotoxicity in Rats (홍삼의 사염화탄소 및 갈락토사민 유발 간독성에 대한 치료효과)

  • Lee, Chung-Kyu;Han, Yong-Nam;Kim, Na-Young;Choi, Jong-Won
    • Journal of Ginseng Research
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    • v.27 no.1
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    • pp.11-16
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    • 2003
  • In this study, we investgated the effect of Red Ginseng (KRG) on liver damage induced by carbon tetrachloride (CTC) and galactosamine (GalN) in rats using indicator enzymes such as serum alanine/aspartate aminotransferases, sorbital dehydrogenase, lactate dehydrogenase, and ${\gamma}$-glutamyltransferase. Treatment of KRG restored these enzyme activities to near normal level compared to CTC or GalN treatment alone. Treatment of KRG also enhanced hepatic microsomal enzyme system, malondialdehyde formation, and depletion of reduced glutathione content, which were reduced by CTC or GalN. We also found that the decreased activities of glutathione S-transferase and glutathine reductase but not ${\gamma}$-glutamycysteine synthetase after KRG treatment restored to normal level. These results indicate that KRG has potent therapeutic activity against CTC- and GalN-induced hepatotoxicity in rat.

Hepatoprotective Activity of Salidroside Isolated from Acer Termentosum Max on D-galactosamine Induced Hepatotoxicity in Rats (산겨릅나무에서 분리한 salidroside의 간보호 효과)

  • Kim, Sung-Hoon;Park, Hee-Juhn;Choi, Jon-Won
    • Journal of Physiology & Pathology in Korean Medicine
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    • v.22 no.6
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    • pp.1525-1531
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    • 2008
  • Acer tegmentosum Max which is one of the specialized wildness medicinal herbs in gangwon province, has been widely used for hepatitis, liver cirrhosis, hepatic cancer, leukemia, diabetes mellitus, renal necrosis and edema, etc. In this study, the antioxidative and hepatoprotective effects of in vitro and in vivo were investigated in order to evaluate the possibility as hepatoprotective agents. Oral administration of methanol and butanol extact of Acer tegmentosum Max to d-galactosamine (D-GaIN) induced experimental liver injured rats was significantly reduced activities of marker enzymes(AST, ALT) and LDH activity in serum. Salidroside(Sal) isolated from the BuOH extract of Acer termentosum Max potenty showed the scavenzing effect on DPPH and inhibitory effect on lipid peroxidation. And significantly decrcease of MDA level in liver and activities of SOD GSH-Px and catalase were significantly improved by the treatment of Sal. Results of this study revealed that Sal could afford a significant protection in the alleviation of D-GaIN-induced hepatocellular injury.

Protective Effect of Pterocarpus santalinus on Galactosamine Induced Liver Damage

  • Dhanabal, S.P.;Syamala, G.;Elango, K.;Suresh, B.
    • Natural Product Sciences
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    • v.12 no.1
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    • pp.8-13
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    • 2006
  • The present study was carried out to investigate the hepatoprotective effect of the extract of Pterocarpus santalinus Linn on acute hepatotoxicity induced in Wistar albino rats by a single dose of Galactosamine (400 mg/kg). Suspensions of methanolic extract of heartwood of P. santalinus (200 and 400 mg/kg) in 0.3% Carboxy Methyl Cellulose (CMC) were administered p.o. to experimental animals and hepatoprotective activity was monitored by estimating aspartate amino transferase (ASAT, GOT), alanine amino transferase (ALAT, GPT), alkaline phosphatase (ALP), total bilirubin (TB), lactate dehydrogenase (LDH), total cholesterol (TC), triglycerides (TGL), albumin, total protein (TP) levels. The methanolic extract significantly reduced the elevation of serum transaminases and alterations of biochemical parameters induced by hepatotoxin, and alleviated the degree of liver damage. The results were supported by histopathological studies of liver samples showing regeneration of hepatocytes in treated animals. Silymarin (25 mg/kg), a known hepatoprotective drug was used for comparison. Based on the results obtained, it can be concluded that P. santalinus exerts hepatoprotective activity and may serve as a useful adjuvant in several clinical conditions associated with liver damage.

Hepatoprotective Effects of Brassica rapa (Turnip) on d-Galactosamine Induced Liver Injured Rats (순무의 d-galactosamine 유발 간장해 보호효과)

  • Choi, Hyuck-Jae;Han, Myung-Joo;Baek, Nam-In;Kim, Dong-Hyun;Jung, Hae-Gon;Kim, Nam-Jae
    • Korean Journal of Pharmacognosy
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    • v.37 no.4 s.147
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    • pp.258-265
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    • 2006
  • Brassica rapa L. (Turnip) which is one of the specialized crops in Ganghwa island, has been used for diuretic, digestive, and curative for jaundice, etc. In this study, the anti oxidative effects and hepatoprotective effects of turnip in vitro and in vivo were investigated in order to evaluate the possibility as hepatoprotective agents. Ethanol extract of turnip potently showed the scavenging effect on DPPH and inhibitory effect on lipid peroxidation. Oral administration of turnip extract to dgalactosamine-induced experimental liver injured rats was significantly reduced the serum AST, ALT and LDH enzyme activities. And the decrease of catalase and SOD activities in liver microsolmal cytosol was significantly improved by the treatment of turnip. Based on these findings, it is presumed that ethanol extract of turnip may have the hepatoprotective effect on d-galactosamine-induced hepatotoxicity rat.

Development of Apoptosis Model and Bioimmune Responses and Morphological Characterization in Experimental Animal II. Activities of Serum Hepatic Enzyme and Histological Findings between Apoptosis and Hepatic Tumorigenesis (실험동물에서 apoptosis의 모델개발과 생체면역반응 및 형태학적 특징 II. Apoptosis 및 hepatic tumorigenesis 과정에서의 혈청 간 효소활성치 및 조직소견)

  • 강정부;하우송;곽수동;김지경
    • Journal of Veterinary Clinics
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    • v.16 no.1
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    • pp.108-117
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    • 1999
  • Hepatic tumorigenesis was induced by ad libitum feeding of diethylnitrosamine (DEN) only. We could also observe hepatic tumor induction in 100% of DEN treated rats without any other cocarcinogen. The liver specific enzyme activities (AST, ALT, ALP, ${\gamma}$-GTP) were significantly increased (P<0.05) in all treated groups compared to control and induced apoptosis groups. In histopathological analysis, the altered foci, hyperplastic nodules, neoplastic nodules, adenomas and carcinomas were observed in liver tumors induced by administration of DEN in rats. Lipopolysaccharide-induced apoptosis in D-galactosamine sensitized mice was investigated in hepatocytes in vivo. Typical morphological changes of apoptosis were detectable in liver 12 hr and 24 hr after the injection of Lipopolysaccharide (5 $\mu\textrm{g}$) and D-galactosamine (20 mg) to mice. It was suggested that organ specific enzyme activities and morphological findings might be very useful for understanding the role of hepatic tumorigenesis including the apoptotic cell death.

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Protective and Therapeutic Effects of Malloti Cortex Extract on Carbon Tetrachloride- and Galactosamine-induced Hepatotoxicity in Rats (예덕나무피엑스의 사염화탄소 및 갈락토사민 유발 간독성에 대한 보호 및 치료효과)

  • 임화경;김학성;최홍석;최종원
    • Biomolecules & Therapeutics
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    • v.7 no.1
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    • pp.35-43
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    • 1999
  • Hepatoprotective effects of Malloti cortex extract (MCE) from Mallotus japonicus against the carbon tetrachloride (CCl$_{4}$) and galactosamine (GalN) were investigated. Whereas serum aspartate aminotransferase and alanine aminotransferase levels were markedly elevated after CCl$_{4}$ and GalN administration, pretreatment and posttreatment with MCE before and after the injection of CCl$_{4}$ and GalN resulted in decreases in elevated serum aminotransferase activities. Whereas CCl$_{4}$ and GalN treatment caused 3~7 fold increases in sorbitol dehydrogenase and ${\gamma}$-glutamyltransferase activities, pretreatment and posttreatment with MCE resulted in the blocking of CCl$_{4}$ and GalN-induced liver toxicity. The hepatoprotective effect of MCE was in part due to MCE-induced elevation of hepatic glutathione levels. Pretreatment and posttreatment with MCE also reduced increased lipid peroxidation induced by CCl$_{4}$ and GalN. These results suggest that MCE may be useful for the prevention and therapy of hepatotoxic pathogenesis. It is presumed that protective and therapeutic effects of MCE due to be inducible glutathione S-transferase and glutathione reductase activities, involving in glutathione-medicated detoxication and maintainment of glutathione content, respectively.

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Study on Hepatoprotective and Antioxidant Activities of Korean Red Ginseng-Mixed Formula (홍삼복합제의 보간 및 항산화 작용에 대한 연구)

  • Kang, Chang-Hee;Kim, Dong-Hee;Ryu, Shi-Yong;Kim, Sung-Hoon
    • Korean Journal of Pharmacognosy
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    • v.31 no.4
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    • pp.383-389
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    • 2000
  • GRF (Korean Red Ginseng mixed formula) consists of six herbs such as Ginseng Radix rubra Koreana, Lycii Fructus, Artemisiae Capillaris Herba, Poria, and Glycyrrhizae Radix and Hoveniae Fructus. For the evaluation of hepatoprotective effect of GRF, the study was performed on protective effect against hepatic damage induced by galactosamine in vitro and ccl4 in vivo and also elucidate antioxidant activity. In vitro assay with 1.1 mM galactosamine, protection (%) was 44% (GR), and 58% (GRF-A) at 50 ug/ml. GRF effectively protected fatty degenertion and necrosis in murine hepatic damage induced by ccl4. For the -antioxidant study, GRF inhibited hemolysis of erythrocyte and decolored DPPH (2,2-diphenyl-l-picrylhydrazyl) free radical in a dose dependent manner more effetively than GR alone in vitro. GRF and GR significantly suppressed the time course $(1\;hr{\sim}6\;hr)-level$ of MDA (malondialdehyde) following AAPH (2,2'-azo-bis-(2-amidino -propane) dihydrochloride) treatment in vivo as compared with control data. From the results it can be concluded GR and GRF exerted the hepatoprotective effect by dint of antioxidant activity.

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Experimental Study on the protective effects of Jiyusaenggan-Tang on liver injury. (지유생간탕(地楡生肝湯)이 흰쥐의 간(肝)에 미치는 영향(影響))

  • Ko, Heung;Kim, Young-Chul;Lee, Jang-Hun;Woo, Hong-Jung;Kim, Byung-Woon
    • The Journal of Korean Medicine
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    • v.16 no.1 s.29
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    • pp.209-226
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    • 1995
  • In order to investigate the protective effects of Jiyusaenggan-Tang by F-I(Jiyusaenggan-Tang aspirated by distilled water), F-II(Non-polysaccharides in Jiyusaenggan-Tang) and F-III(Polysaccharides in Jiyusaenggan-Tang), experimental studies were performed in mice with liver injury induced by $CCI_4$, and d-galactosamine. The results were summarized as follows : 1. The increases of the serum GOT activities in mice induced by $CCI_4$ were inhibited significantly by the administration of highly concentrated FIII. The increases of the serum GPT, LDH, and ALP activities in mice induced by $CCI_4$ were inhibited significantly by the administration of highly concentrated FI and FIII. 2. The increases of the serum total-cholesterol and triglyceride activities in mice induced by $CCI_4$ were inhibited significantly by the administration of highly concentrated FI, FII and FIII. 3. On liver injury induced by the $CCI_4$, the activities of GOT, GPT, ALP, LDH were inhibited by highly concentrated FIII, F-I, F-II, and F-I, F-II, F-III on total cholesterol level and F-III, F-I, F-II on triglyceride level in order of their efficacies. And F-III is considered to be the most effective component. 4. The increases of the serum GOT, GPT activities in mice induced by d-galactosamine were inhibited significantly by the administration of FI and FIII. The increases of the serum LDH, ALP activities in mice induced by d-galactosamine were inhibited significantly by the administration of FI and FIII. 5. The increases of the serum Total-cholesterol, Triglyceride activities in mice induced by d-galactosamine were inhibited significantly by the administration of FI, FII and FIII. 6. The increases of the serum GOT, GPT activities in mice induced by d-galactosamine were inhibited significantly in F-III administrated group and then F-I in order of efficacies. FII does not showed significant effect, on inhibiting the activities of serum GOT and GPT levels. The activity of ALP was inhibited by F-III, F-I, F-II, LDH by F-III, F-I in order of efficacies, and F-II did not showed significant effect on LDH activity. The triglyceride level was decreased significantly by F-III, F-II, F-I and the total cholesterol level by F-II, F-I, F-III in order of their efficacies. Judging from the above results, it is considered that Jiyusaenggan-Tang has protective effect against liver injury, and that Polysaccharides in Jiyusaenggan-Tang is more effective.

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The effects of Injinhotang-sihosogantang-gagambang on liver injury (인진호탕합시호소간탕가감방(茵陳蒿湯合柴胡疏肝湯加減方)이 간손상(肝損傷)에 미치는 영향(影響))

  • Kim Tae-Sik;Kang Jae-Chun
    • Journal of Society of Preventive Korean Medicine
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    • v.3 no.2
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    • pp.183-210
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    • 1999
  • In order to investigate the protective effect of Injinhotanghapsihosogantang-gagambang on the liver injury of rats induced by $CCl_4$ and d-galactosamine, the serum transaminase(GOT&GPT) alkaline phosphatase(ALP), lactic dehydrogenase(LDH) for enzyme activities, triglyceride for serum component, liver weight and glutathione S-transferase(GST), Superoxide dimutase(SOD) were measured. All animals were divided into 5 groups, those were normal group(untreated), control group(treated with vehicle 0.9% Saline solution), sample I group(10mg/kg administrated), sample II group(30mg/kg administrated), Silymarin 200 administrated group. The results were as follows: 1. The inhibitory effects of the serum GOT activities in rats induced by $CCl_4$ were noted in both sample I (p<0.001) and sample II group(p<0.001). In serum GPT activities, sample I (p<0.01) and sample II group(p<0.01). 2. The inhibitory effects of the serum LDH activities in rats induced by $CCl_4$ were noted in both sample I (p<0.001) and sample II group(p<0.001). 3. The increased effects of the serum ALP activities in rats induced by $CCl_4$ were not recognized. 4. The inhibitory effects of the serum triglyceride content level in rats induced by $CCl_4$ were inhibited in only sample II group(p<0.05). 5. The increased effects of the liver weight level in rats induced by $CCl_4$ were inhibited in both sample I (p<0.05) and sample II group(p<0.05). 6. The inhibitory effects of the GST activities in rats induced by $CCl_4$ were not recognized. In SOD activities, both sample I (p<0.05) and sample II group(p<0.001) showed the inthbitory effects. 7. The inhibitory effects of in the serum GOT, GPT activities in rats induced by d-galactosamine were not recognized. 8. The increases of the serum LDH level in rats induced by d-galactosamine were noted in both sample I (p<0.01) and sample II group(p<0.001). 9. The inhibitory of the serum triglyceride content level in rats induced d-galactosamine were noted in only sample II group(p<0.05). According to the above results, it is considered that Injinhotanghapsihosogantang-gagambang has protective effect against liver injury in rats induced by $CCl_4$ and d-galactosamine.

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Effects of Daebangpungtang on galactosamine induced hepatoxity in rats (대방풍탕(大防風湯)이 galactosamine으로 유도(誘導)한 간중독(肝中毒) 흰쥐에 미치는 영향(影響))

  • Kim Jang-Hyun
    • The Journal of Pediatrics of Korean Medicine
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    • v.11 no.1
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    • pp.183-204
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    • 1997
  • In order to study the effects of Daebangpungtang on galactosamine induced hepatoxity in rats, the experimental rats divided five groups (Normal, Control, Sample A, B, C groups). Under the same condition, normal and control groups were administered normal saline for 16 days, control group was injected to abdomen with galactosamine at 8th day (800mg/kg). Sample A group was administered the Daebangpungtang aqueous solution($200m{\ell}/kg$ p.o) for 8 days and injected galactosamine(800mg/kg i.p) for the last day and was administered normal saline for 8 days. Sample B group was treated as same as group A for 8 days, and then was administered the Daebangpungtang aqueous solution($200m{\ell}/kg$ p.o) forfurther 8 days. Sample C group was administered the Daebangpungtang aqueous solution($200m{\ell}/kg$ p.o) for 16 days. The activity of GOT, GPT, ${\gamma}$-GTP, ALP, LDH and total bilirubin in serum were measured at 8th and last day. The results were obtained as follows: 1. The activity of serum GOT of the sample A group decreased effectively at the 8th day and sample B group decreased effectively at 16th day as compared with the control group. 2. The activity of serum GPT of the sample A group decreased effectively at the 8th and 16th day and sample B group decreased effectively at 16th day as compared with the control group. 3. The activity of serum ${\gamma}$-GTP of the sample B group decreased effectively at the 16th day as compared with the control group. 4. The activity of serum ALP of the sample A group increased respectively at the 8th and 16th day and sample B group decreased effectively at 16th day as compared with the control group. 5. The activity of serum LDH of the sample A, B groups decreased effectively at 16th day as compared with the control group. 6. The activity of serum total bilirubin of the sample A, B groups decreased effectively at 16th day as compared with the control group. 7. The activity of GOT, GPT, ${\gamma}$-GTP, ALP, LDH and total bilirubin in serum of the sample C group were analogous with thats of normal group.

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