급성 알코올 간독성을 유발한 생쥐에 있어서 으름 열매 추출물의 간 기능 보호효과

논문상세정보
' 급성 알코올 간독성을 유발한 생쥐에 있어서 으름 열매 추출물의 간 기능 보호효과' 의 주제별 논문영향력
논문영향력 선정 방법
논문영향력 요약
주제
  • 음료기술
  • acute alcohol-induced liver injury
  • akebia quinata
  • glutathione
  • nadphoxidase4
  • tumor necrosis factor alpha
동일주제 총논문수 논문피인용 총횟수 주제별 논문영향력의 평균
224 0

0.0%

' 급성 알코올 간독성을 유발한 생쥐에 있어서 으름 열매 추출물의 간 기능 보호효과' 의 참고문헌

  • Tissue sulthydryl groups
    Ellman GL Arch. Biochem. Biophys 82 : 70 ~ 77 [1959]
  • The role of gut-derived bacterial toxins and free radicals in alcohol-induced liver injury
    Thurman RG Gastroenterol. Hepatol 13 : S39 ~ S50 [1998]
  • The NOX family of ROS-generating NADPH oxidases: physiology and pathophysiology
    Bedard K Physiol. Rev 87 : 245 ~ 313 [2007]
  • TRIF and IRF-3 binding to the TNF promoter results in macrophage TNF dysregulation and steatosis induced by chronic ethanol
    Zhao XJ Immunol 181 : 3049 ~ 3056 [2008]
  • Structure - activ-ity relationship of oleanane disaccharides isolated from Akebia quinata versus cytotoxicity against cancer cells and NO inhibi-tion
    Jung HJ Biol. Pharm. Bull 27 : 744 ~ 747 [2004]
  • Saponins and triterpenes from callus tissues of Akebia trifoliate and comparision with the constituents of other Lardiza-balaceous callus tissues
    Ikuta A Nat. Prod 58 : 1378 ~ 1383 [1995]
  • S-adenosylmethionine in alcoholic liver cirrhosis: a randomized, placebo- controlled, double-blind, multicenter clinical trial
    Mato JM Hepatol 30 : 1081 ~ 1089 [1999]
  • S-Adenosylmethionine in cell growth, apoptosis and liver cancer
    Lu SC Gastroenterol. Hepatol 23 : s73 ~ s77 [2008]
  • Role of TNF-alpha in ethanol-induced hyperhomocysteinemia and murine alcoholic liver injury
    Ji C Hepatology 40 : 442 ~ 451 [2004]
  • Research advances in eth-anol metabolism
    Ramchandani VA Pathol. Biol 49 : 676 ~ 682 [2001]
  • Regulation of hepatic glutathione synthesis: current con-cepts and controversies
    Lu SC Faseb 13 : 1169 ~ 1183 [1999]
  • Recent advances in alcoholic liver disease IV. dysregulated cytokine metabolism in alcoholic liver disease
    McClain CJ Physiol. Gas-trointest. Liver Physiol 287 : 497 ~ 502 [2004]
  • Protec-tive effect of glutathione against lipopolysaccharide-induced inflammation and mortality in rats
    Sun S Inflamm. Res 55 : 504 ~ 510 [2006]
  • Prevention of human cancer by modulation of chronicinflammatory processes
    Ohshima H Mutat. Res 591 : 110 ~ 122 [2005]
  • Platelet-derived growth factor C induces liver fibrosis, steatosis, and hepatocellular carcinoma
    Campbell JS Natl. Acad. Sci 102 : 3389 ~ 3394 [2005]
  • Pericarp saponins of Akebia quinata Decne. I. Glycosides of hederagenin and oleanolic acid
    Higuchi R Chem. Pharm. Bull 24 : 1021 ~ 1032 [1976]
  • Pathophysiological basis for antioxi-dant therapy in chronic liver disease
    Medina J Drugs 65 : 2445 ~ 2461 [2005]
  • Oxidative stress and oval cell accumulation in mice and humans with alcoholic and nonalco-holic fatty liver disease
    Roskams T Pathol 163 : 1301 ~ 1311 [2003]
  • Overexpression of manganese superoxide dismutase prevents alcoholinduced liver injury in the rat
    Wheeler MD Biol. Chem 276 : 36664 ~ 36672 [2001]
  • NADPH oxidase signal transduces angiotensin II in hepatic stellate cells and is critical in hepatic fibrosis
    Bataller R Clin. Invest 112 : 1383 ~ ­1394 [2003]
  • Mechanisms of inhibition of free-radical processes in mutagenesis and carcinogensis
    Simic MG Mutat. Res 202 : 377 ~ 386 [1988]
  • Mechanisms and cell signaling in alco-holic liver disease
    Beier JL Biol. Chem 39 : 1249 ~ 1264 [2010]
  • Liver fibrosis and hepatocyte apoptosis are attenuated by GKT137831, a novel NOX4/NOX1inhibitor in vivo
    Jiang JX Free Radic. Biol. Med 53 : 289 ~ 296 [2012]
  • Liver cell enlargement induced by chronic alcohol consumption: studies on its causes and conse-quences
    Israel Y Clin. Biochem 15 : 189 ~ 192 [1982]
  • Knock-out of the mouse glutamate cysteine ligase catalytic subunit (Gclc) gene: embryonic lethal when homozygous, and proposed model for moderate glutathione deficiency when heterozygous
    Dalton TP Biochem. Biophys. Res. Commun 279 : 324 ~ 329 [2000]
  • Interferon regula-tory factor 3 and type I interferons are protective in alcoholic liver injury in mice by way of crosstalk of parenchymal and myeloid cells
    Petrasek J Hepatology 53 : 649 ~ 660 [2011]
  • In vitro and in vivo inhibitory effect of ethanol and acetaldehyde on O6-methylgua-nine transferase
    Espin N Carcinogenesis 9 : 761 ~ 766 [1988]
  • Hepatic lipid peroxidation and mitochondrial sus-ceptibility to peroxidative attacks during ethanol inhalation and withdrawal
    Rouach H Biochem. Biophys. Acta 753 : 439 ~ 444 [1983]
  • Glutathione metabolism during aging and in Alzheimer disease
    Liu H Ann. N. Y. Acad. Sci 1019 : 346 ~ 349 [2004]
  • Glutathione depletion and recovery after acute ethanol administration in the aging mouse
    Vogt BL Biochem. Phar-macol 73 : 1613 ~ 1621 [2007]
  • Gender differences in alcohol metabolism: Relationship to liver volume and effect of adjusting for body mass
    Kwo PY Gastroenterology 115 : 1552 ~ 1557 [1998]
  • Ethanol-derived immuno reactive species formed by radical mechanisms
    Moncade C Mol. Phaemacol 46 : 786 ~ 791 [1994]
  • Ethanol increases hepatocyte water vol-ume
    Wondergem R Alcohol. Clin. Exp. Res 18 : 1230 ~ 1236 [1994]
  • Ethanol and liver: recent advances in the mech-anisms of ethanol-induced hepatosteatosis
    Zeng T Arch. Toxicol 83 : 1075 ~ 1081 [2009]
  • Essential role of tumor necrosis factor alpha in alcohol-induced liver injury in mice
    Yin M Gastroenterology 117 : 942 ~ 952 [1999]
  • Effects of oral S-adenosyl-L-methionine on hepatic glutathione in patients with liver disease
    Vendemiale G Gastroenterol 24 : 407 ~ 415 [1989]
  • Disulfide reduction in rat liver. I. Evidence for the pres-ence of nonspecific nucleotide-dependent disulfide reductase and GSH-disulfide transhydrogenase activities in the high-speed supernatant fraction
    Tietze F Arch. Biochem. Biophys 138 : 177 ~ 188 [1970]
  • Cytotoxic and Apoptotic Effects of Saponins from Akebia quinata on HepG2 Hepatocarcinoma Cells
    강혜숙 한국식품저장유통학회지 17 (3) : 311 ~ 319 [2010]
  • Changes in S-adenosylmethionine and GSH homeostasis during endotoxemia in mice
    Ko KS Lab Invest 88 : 1121 ~ 1129 [2008]
  • Biogenic 4-hydroxy-2-nonenal activates transcrip-tion factor AP-1 but not NF-kappa B in cells of the macrophage lineage
    Camandola S Biofactors 6 : 173 ~ 179 [1997]
  • Association of liver steatosis with lipid oversecretion and hypotriglyceridaemia in C57BL/6j mice fed trans-10, cis-12-linoleic acid
    Degracea P FEBS. Lett 546 : 335 ~ 339 [2003]
  • Antinociceptive and Anti-Inflammatory Effects of the Saponin and Sapogenins Obtained from the Stem of Akebia quinata
    박희준 Journal of Medicinal Food 8 (1) : 78 ~ 85 [2005]
  • Anti-biotics prevent liver injury in rats following long-term exposure to ethanol
    Adachi Y Gastroenterology 108 : 218 ~ 224 [1995]
  • Analysis of relative gene expression data using real-time quantitative PCR and the 2(-Delta Delta C(T)
    Livak KJ Methods 25 : 402 ~ 408 [2001]
  • Alcoholic steatohepatitis
    Stickel F Best. Pract. Res. Clin. Gastroenterol 24 : 683 ~ 693 [2010]
  • Alcoholic liver disease: pathogenesis and new therapeutic targets
    Gao B Gastroenterology 141 : 1572 ~ 1585 [2011]
  • Alcohol ingestion, liver glutathione and lipoperoxidation: metabolic interrelations and pathological impli-cations
    Videla LA Life Sci 31 : 2395 ~ 2407 [1982]
  • Acute ethanol administration oxidatively damages and depletes mitochondrial DNA in mouse liver, brain, heart, and skeletal muscles: protective effects of antioxidants
    Abdellah M Pharmacol. Exp. Ther 298 : 737 ~ 743 [2001]
  • Acute and chronic hepatic steatosis lead to in vivo lipid peroxidation in mice
    Lettron P Hepatol 24 : 200 ~ 208 [1996]
  • Acetylcarnitine-mediated inhibition of etha-nol oxidation in hepatocytes
    Cha YS Alcohol 12 : 289 ~ 294 [1995]
  • A triterpene from Akebia quinata callus tissue
    Ikuta A Phytochemistry 27 : 3809 ~ 3810 [1988]
  • A rapid and sensitive method for the quantitation of microgram quantities of protein utilizing the principle of protein-dye binding
    Bradford M Anal. Biochem 72 : 248 ~ 254 [1976]
  • A physiologically based model for ethanol and acetaldehyde metabolism in human beings
    Umulis DM Alcohol 35 : 3 ~ 12 [2005]