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Alterations of Na
+
homeostasis in hepatocyte reoxygenation injury
Rita Carini
, Maria Grazia De Cesaris
, Roberta Splendore
, Marco Bagnati
, Giorgio Bellomo
, Emanuele Albano
Dipartimento di Scienze della Salute
Risultato della ricerca
:
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Keyphrases
Hepatocytes
100%
Na +
100%
Deoxygenation
100%
Na+ Homeostasis
100%
Reoxygenation Injury
100%
Na+ Accumulation
50%
Glycine
33%
Cytotoxicity
33%
Ischemia-reperfusion Injury
33%
HCO3
33%
Monensin
16%
Ionophore
16%
Liver Transplantation
16%
Incubation Media
16%
Cell Death
16%
Ion Exchanger
16%
Antioxidant
16%
Hepatocyte Death
16%
Hepatocyte Injury
16%
Dimethyl
16%
Fructose
16%
Na+ Influx
16%
Cold Storage
16%
Amiloride
16%
Liver Graft
16%
Cellular Damage
16%
Intracellular Na+
16%
Nonfunctioning
16%
Na+ Content
16%
Buffer pH
16%
Cotransporter
16%
Na+ Distribution
16%
Primary Graft
16%
Resynthesis
16%
Medicine and Dentistry
Hepatocyte
100%
Sodium Ion
100%
Homeostasis
100%
Buffer
23%
Cytotoxicity
15%
Reperfusion Injury
15%
Liver Transplantation
7%
Monensin
7%
Cytoprotective Agent
7%
Adenosine Triphosphate
7%
Incubation
7%
Cell Death
7%
Cell Damage
7%
Antioxidant
7%
Liver Graft
7%
Fructose
7%
Cotransporter
7%
5 (N,n Dimethyl)amiloride
7%
Ionophore
7%
Cryopreservation
7%
Immunology and Microbiology
Homeostasis
100%
Reoxygenation
100%
Cytotoxicity
25%
Reperfusion
25%
Cell Death
12%
Liver Transplantation
12%
Cell Damage
12%
Cryopreservation
12%
Cotransporter
12%
Pharmacology, Toxicology and Pharmaceutical Science
Sodium Ion
100%
Buffer
23%
Reperfusion Injury
15%
Cytotoxicity
15%
Ionophore
7%
Monensin
7%
Cytoprotective Agent
7%
Adenosine Triphosphate
7%
Antioxidant
7%
Fructose
7%
Cotransporter
7%
5 (N,n Dimethyl)amiloride
7%