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Keyphrases
P-selectin Glycoprotein ligand-1 (PSGL-1)
100%
Soluble P-selectin
100%
Hepatic Ischemia-reperfusion Injury
100%
Liver
63%
Ischemia-reperfusion Injury
45%
Selectins
36%
Portal Vein
27%
Syngeneic
27%
P-selectin
27%
Reperfusion
27%
Isograft
27%
Hepatocyte Injury
27%
University of Wisconsin Solution
27%
University of Wisconsin
27%
Liver Transplantation
18%
Histologic
18%
Rat Liver
18%
Orthotopic Liver Transplantation
18%
Recipient Survival
18%
Neutrophil Infiltration
18%
Cold Ischemia
18%
Ischemia Model
18%
Transaminases
18%
Liver Ischemia
18%
Endothelial Cells
9%
Rat Model
9%
Blood Flow
9%
Tumor Necrosis Factor-α
9%
Cell Surface
9%
Alloantigen
9%
Transplantation
9%
Liver Allograft
9%
Endothelium
9%
Perfusion
9%
Interleukin-1β
9%
Kaplan-Meier
9%
Two-dose
9%
Cell Infiltration
9%
Local Production
9%
Early Graft Failure
9%
Long-term Survival
9%
Transplantation Model
9%
Leukocytes
9%
P-selectin Expression
9%
Estimation Method
9%
Sprague-Dawley Rats
9%
Specific Binding
9%
Hepatocytes
9%
Injury Model
9%
Translocated
9%
Polymorphonuclear Leukocytes
9%
Neutrophil Adhesion
9%
Hepatic Injury
9%
Bile Production
9%
E-selectin
9%
Poor Graft Function
9%
Warm Ischemia
9%
Cold Store
9%
Product-limit
9%
Transplant Survival
9%
Isolated Perfused Rat Liver
9%
Transplanted Liver
9%
Cell Adherence
9%
Subsequent Migration
9%
Survival Events
9%
Flow Production
9%
Hepatic Inflow Occlusion
9%
Vascular Intima
9%
Medicine and Dentistry
Reperfusion Injury
100%
P Selectin Glycoprotein Ligand 1
100%
Liver Ischemia
100%
Ischemia
36%
PADGEM Protein
36%
Selectin (Glycoprotein)
36%
Liver Graft
27%
Hepatocyte
27%
Isograft
27%
Viaspan
27%
Neutrophil
18%
Leukocyte
18%
Hepatic Portal Vein
18%
Neutrophil Chemotaxis
18%
Transaminase
18%
Liver Transplantation
9%
Tumor Necrosis Factor
9%
Alloantigen
9%
Allograft
9%
Endothelial Cell
9%
Ex Vivo
9%
Graft Survival
9%
Upregulation
9%
Bile
9%
Table Salt
9%
Long Term Survival
9%
Liver Injury
9%
Cell Surface
9%
Cellular Infiltration
9%
Hexachlorophene
9%
Interleukin 1
9%
Cell Adhesion
9%
Endothelial Leukocyte Adhesion Molecule 1
9%
Portal Vein Blood Flow
9%
Liver Cell Damage
9%
Tunica Intima
9%
Agricultural and Biological Sciences
Reperfusion Injury
100%
P-Selectin Glycoprotein Ligand-1
100%
Rat
63%
Ischemia
54%
Hepatocyte
36%
P-Selectin
36%
Selectin
36%
Neutrophil
27%
Portal Vein
27%
Syngenic
27%
Transaminase
18%
Leukocyte
18%
Endothelial Cells
9%
Table Salt
9%
Tumor Necrosis Factor
9%
Cell Adhesion
9%
Blood Flow
9%
E-Selectin
9%
Tumor Necrosis Factor Alpha
9%
Ex Vivo
9%
Tunica Intima
9%
Neutrophil Granulocyte
9%
Interleukin 1
9%
Immunology and Microbiology
Reperfusion
100%
P-Selectin Glycoprotein Ligand-1
100%
P-Selectin
36%
Selectin
36%
Solution and Solubility
27%
Syngenic
27%
Isograft
27%
Cold Ischemia
27%
Leukocyte
18%
Hepatic Portal Vein
18%
Neutrophil Chemotaxis
18%
Alloantigen
9%
Neutrophil
9%
Neutrophil Granulocyte
9%
Allograft
9%
Rat Model
9%
Perfusion
9%
Interleukin 1
9%
Upregulation
9%
Tumor Necrosis Factor Alpha
9%
Cell Surface
9%
Liver Transplantation
9%
Long Term Survival
9%
Sprague Dawley Rat
9%
Cell Infiltration
9%
Cell Adhesion
9%
E-Selectin
9%
Portal Vein Blood Flow
9%
Biochemistry, Genetics and Molecular Biology
Reperfusion
100%
P-Selectin Glycoprotein Ligand-1
100%
Hepatocyte
36%
P-Selectin
36%
Selectin
36%
Syngenic
27%
Cold Ischemia
27%
Viaspan
27%
Leukocyte
18%
Transaminase
18%
Neutrophil Chemotaxis
18%
Tumor Necrosis Factor
9%
Interleukin-1
9%
Rat Model
9%
Upregulation
9%
Tumor Necrosis Factor Alpha
9%
Cell Adhesion
9%
Perfusion
9%
Long Term Survival
9%
Neutrophil Granulocyte
9%
Cell Infiltration
9%
Sprague Dawley Rat
9%
E-Selectin
9%
Portal Vein Blood Flow
9%
Pharmacology, Toxicology and Pharmaceutical Science
Reperfusion Injury
100%
P Selectin Glycoprotein Ligand 1
100%
Liver Ischemia
100%
Ischemia
36%
P-Selectin
36%
Selectin (Glycoprotein)
36%
University of Wisconsin Solution
27%
Aminotransferase
18%
Liver Injury
9%
Rat Model
9%
Tumor Necrosis Factor
9%
Interleukin 1
9%
Sprague Dawley Rat
9%
Table Salt
9%
Hexachlorophene
9%
Long Term Survival
9%
Liver Cell Damage
9%
E-Selectin
9%
Alloantigen
9%