1 |
The Daedalus effect: changes in ethical questions relating to hepatitis B virus.  |
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2 |
Problems with animal models of chronic liver disease: suggestions for improvement in standardization.  |
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3 |
An improved model of acute liver failure based on transient ischemia of the liver.  |
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4 |
Animal models of fulminant hepatic failure:A critical evaluation  |
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5 |
Terblanche J, Hickman R. Animal models of fulminant hepatic failure. Dig Dis Sci 1991;36:770-774. |
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6 |
Hedrich HJ. Taxonomy and Stocks and strains. In The Laboratory Rat. 2nd ed. Amsterdam; Boston: Elsevier; 2006. |
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7 |
Cloning and characterization of cDNA encoding 3-methylcholanthrene inducible rat mRNA for UDP-glucuronosyltransferase.  |
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8 |
The Long–Evans Cinnamon rat: An animal model for Wilson’s disease  |
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9 |
High susceptibility of an analbuminemic congenic strain of rats with an F344 genetic background to induced bladder cancer and its possible mechanism.  |
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10 |
Cubero FJ, Arza E, Maganto P, et al. Expression of bilirubin UDP-glucuronosyltransferase (bUGT) throughout fetal development: intrasplenic transplantation into Gunn rats to correct enzymatic deficiency. Dig Dis Sci 2001;46:2762-2767. |
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11 |
Biochemical and molecular aspects of genetic disorders of bilirubin metabolism.  |
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12 |
Orthotopic liver transplantation for type I Crigler-Najjar syndrome  |
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13 |
Orthotopic liver transplantation for Crigler-Najjar type I disease in six children.  |
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14 |
Progressive histological damage in liver allografts following pediatric liver transplantation  |
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15 |
Gunn rat: a model for inherited deficiency of bilirubin glucuronidation.  |
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16 |
Inhibition of the copper incorporation into ceruloplasmin leads to the deficiency in serum ceruloplasmin activity in Long-Evans cinnamon mutant rat.  |
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17 |
New mutation causing hereditary hepatitis in the laboratory rat.  |
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18 |
A new rat model for the study of hepatocarcinogenesis  |
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19 |
Stat proteins and oncogenesis.  |
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20 |
Harmful effect of administration of copper on LEC rats.  |
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21 |
Hereditary low level of plasma ceruloplasmin in LEC rats associated with spontaneous development of hepatitis and liver cancer.  |
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22 |
Bennhold H. Two cases of familial analbuminemia. Mar Med 1959;38:863-872. |
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23 |
Analbuminemia in a neonate  |
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24 |
Failure of liver cirrhosis induction by thioacetamide in Nagase analbuminaemic rats.  |
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25 |
Establishment and characteristics of three analbuminemic congenic strains of rats.  |
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26 |
Organic anion transport study in mutant rats with autosomal recessive conjugated hyperbilirubinemia  |
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27 |
Canalicular transport of reduced glutathione in normal and mutant Eisai hyperbilirubinemic rats.  |
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28 |
A new rat mutant with chronic conjugated hyperbilirubinemia and renal glomerular lesions.  |
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29 |
Biliary excretion of bile acid conjugates in a hyperbilirubinemic mutant Sprague-Dawley rat  |
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30 |
Effects of organic anions and bile acids on biliary lipid excretion in hyperbilirubinemic mutant Sprague-Dawley rats  |
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31 |
Establishment of an albumin-deficient and jaundiced strain of rats.  |
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32 |
Tonnesen K. Experimental liver failure. A comparison between hepatectomy and hepatic devascularization in the pig. Acta Chir Scand 1977;143:271-277. |
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33 |
Extent of Hepatectomy in the Rat  |
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34 |
Progressive necrosis after hepatectomy and the pathophysiology of liver failure after massive resection  |
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35 |
Fischer M, Stotter L, Schmahl W, Gartmaier P, Erhardt W. Acute liver failure due to temporary hepatic ischemia in the pig. Acta Hepatogastroenterol (Stuttg) 1976;23:241-249. |
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36 |
Apoptosis after ischemia-reperfusion in human liver allografts  |
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37 |
Prostacyclin, thromboxane, and oxygen free radicals and postoperative liver function in human liver transplantation.  |
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38 |
Intermittent Anoxia Reduces Oxygen Free Radicals Formation During Reoxygenation in Rat Hepatocytes  |
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39 |
Up-regulation of oxygen-derived free radicals by interleukin-1 in hepatic ischemia/reperfusion injury.  |
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40 |
Prolonged bile duct obstruction: a new experimental model for cirrhosis in the rat.  |
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41 |
Chang ML, Yeh CT, Chang PY, Chen JC. Comparison of murine cirrhosis models induced by hepatotoxin administration and common bile duct ligation. World J Gastroenterol 2005;11:4167-4172. |
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42 |
Experimental hepatitis induced by D-galactosamine.  |
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43 |
Keppler D, Decker K. Mechanism of action of D-galactosamine in the liver. Verh Dtsch Ges Inn Med 1971;77: 1182-1185. |
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44 |
In-vitro preparation of experimental models of hepatitis with D-galactosamine and their modification by liver-repairing factors.  |
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45 |
Protection from T cell-mediated murine liver failure by phosphodiesterase inhibitors.  |
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46 |
The 55-kD tumor necrosis factor receptor and CD95 independently signal murine hepatocyte apoptosis and subsequent liver failure.  |
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47 |
Systemic and hepatic hemodynamic changes in acute liver injury.  |
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48 |
Acetaminophen hepatotoxicity.  |
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49 |
Liver necrosis from paracetamol.  |
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50 |
The chronic oral toxicity of paracetamol at the range of the LD50 (100 days) in albino rats.  |
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51 |
Acute Liver Necrosis Following Overdose Of Paracetamol  |
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52 |
Evidence that acetaminophen and N-hydroxyacetaminophen form a common arylating intermediate, N-acetyl-p-benzoquinoneimine.  |
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53 |
Acetaminophen-induced Hepatic Necrosis  |
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54 |
Metabolic oxidation of acetaminophen (Paracetamol) mediated by cytochrome P-450 mixed-function oxidase and prostaglandin endoperoxide synthetase in rabbit kidney  |
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55 |
Role of nitric oxide in acetaminophen-induced hepatotoxicity in the rat.  |
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56 |
Hepatotoxicity of acetaminophen in neonatal and young rats  |
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57 |
Hepatotoxicity of acetaminophen in neonatal and young rats  |
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58 |
Gregus Z, Madhu C, Goon D, Klaassen CD. Effect of galactosamine-induced hepatic UDP-glucuronic acid depletion on acetaminophen elimination in rats. Dispositional differences between hepatically and extrahepatically formed glucuronides of acetaminophen and other chemicals. Drug Metab Dispos 1988;16:527-533. |
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59 |
Hübner G. Ultrastructural liver damage caused by direct action of carbon tetrachloride in vivo and in vitro. Virchows Arch Pathol Anat Physiol Klin Med 1965;339:187-197. |
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60 |
Smith DH. Carbon tetrachloride toxicity. Br Med J 1965;2:1434. |
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61 |
Hepatocellular tolerance to carbon tetrachloride induced injury in the rat: a study of its nature and possible mode of evolution.  |
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62 |
Evidence of Hepatocyte Apoptosis in Rat Liver after the Administration of Carbon Tetrachloride  |
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63 |
Thioacetamide- and carbon tetrachloride-induced liver cirrhosis.  |
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64 |
Bone changes and mineral metabolism disorders in rats with experimental liver cirrhosis.  |
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65 |
New data on the question of lipoperoxidation in carbon tetrachloride poisoning.  |
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66 |
Slater TF, Strauli UD, Sawyer BC. Changes in liver nucleotide concentrations in experimental liver injury. 1. Carbon tetrachloride poisoning. Biochem J 1964;93:260-266. |
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67 |
A study of the relationships between carbon tetrachloride-induced lipid peroxidation and liver damage in rats pretreated with vitamin E  |
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68 |
Lipoperoxidation of rat liver microsomal lipids induced by carbon tetrachloride.  |
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69 |
Acute renal failure due to carbon tetrachloride poisoning.  |
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70 |
Carbon tetrachloride nephrotoxicity: a reassessment of pathophysiology based upon the urinary diagnostic indices.  |
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71 |
Role of the microsomal fad-containing monooxygenase in the liver toxicity of thioacetamide S-oxide  |
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72 |
Bruck R, Oren R, Shirin H, et al. Hypothyroidism minimizes liver damage and improves survival in rats with thioacetamide induced fulminant hepatic failure. Hepatology 1998;27:1013- 1020. |
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73 |
Cerebral metabolic and histological effects of thioacetamide-induced liver failure.  |
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74 |
Hepatic encephalopathy in thioacetamide-induced acute liver failure in rats: characterization of an improved model and study of amino acid-ergic neurotransmission.  |
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75 |
Serum amino acid changes in rats with thioacetamide-induced liver cirrhosis  |
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76 |
Phagocytic function and metabolite production in thioacetamide-induced liver cirrhosis: a comparative study in perfused livers and cultured Kupffer cells  |
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77 |
The development of an efficient rat hepatic cirrhosis model  |
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