Although the use of melatonin in the transplantation field has been suggested, it has not been previously tested in a liver cold-storage model. We used a rat liver model to study (a) the dose-dependent effect of melatonin on bile production, and (b) the potential of melatonin to improve liver function after cold-storage. Male Wistar rats were perfused with Krebs-Henseleit bicarbonate buffer (KHB) at 37 degrees C without or with 25, 50, 100 and 200 microM melatonin. Each dose of melatonin stimulated bile production. For cold-storage studies, livers were flushed with either University of Wisconsin (UW) or Celsior solution and stored for 20 hr at 4 degrees C. Reperfusion (120 min) was performed with KHB at 37 degrees C. In subsequent studies, ...
ABSTRACTAim: The aim of this experimental study is to investigate the effects of N-ace- tylcysteine ...
Melatonin was discovered in 1958 by Aaron Lerner. Its name comes from the ability of melatonin to ch...
Background/Aims: The protective effect of melatonin against the damage inflicted by reactive oxygen ...
Although the use of melatonin in the transplantation field has been suggested, it has not been previ...
Melatonin, found at extremely high levels in the bile, is thought to protect bile duct cells from bi...
In a previous investigation we demonstrated that reperfusion with a melatonin-containing medium enha...
Restoring function after cold preservation is a critical issue in liver transplantation. Oxidative s...
Chronic organ-donor shortage has required the acceptance of steatotic livers for transplantation pur...
Reactive oxygen species (ROS) are considered main effectors of ischemia-reperfusion (I/R) injury in ...
The goal of this study was to evaluate the possible protective effects of melatonin against cholesta...
Bile duct ligation (BDL)-treated rats display cholestasis and liver damages. The potential protectiv...
Organ-donor shortage has led to the acceptance of steatotic livers for transplantation, despite of t...
The aim of this study was to assess the effect of melatonin and acetylsalicylic acid (ASA) on hepati...
Background and aims: Chronic organ-donor shortage led to the acceptance of steatotic livers for tran...
The objective was to assess the antioxidant effect of melatonin (MLT) on liver and lung tissues of a...
ABSTRACTAim: The aim of this experimental study is to investigate the effects of N-ace- tylcysteine ...
Melatonin was discovered in 1958 by Aaron Lerner. Its name comes from the ability of melatonin to ch...
Background/Aims: The protective effect of melatonin against the damage inflicted by reactive oxygen ...
Although the use of melatonin in the transplantation field has been suggested, it has not been previ...
Melatonin, found at extremely high levels in the bile, is thought to protect bile duct cells from bi...
In a previous investigation we demonstrated that reperfusion with a melatonin-containing medium enha...
Restoring function after cold preservation is a critical issue in liver transplantation. Oxidative s...
Chronic organ-donor shortage has required the acceptance of steatotic livers for transplantation pur...
Reactive oxygen species (ROS) are considered main effectors of ischemia-reperfusion (I/R) injury in ...
The goal of this study was to evaluate the possible protective effects of melatonin against cholesta...
Bile duct ligation (BDL)-treated rats display cholestasis and liver damages. The potential protectiv...
Organ-donor shortage has led to the acceptance of steatotic livers for transplantation, despite of t...
The aim of this study was to assess the effect of melatonin and acetylsalicylic acid (ASA) on hepati...
Background and aims: Chronic organ-donor shortage led to the acceptance of steatotic livers for tran...
The objective was to assess the antioxidant effect of melatonin (MLT) on liver and lung tissues of a...
ABSTRACTAim: The aim of this experimental study is to investigate the effects of N-ace- tylcysteine ...
Melatonin was discovered in 1958 by Aaron Lerner. Its name comes from the ability of melatonin to ch...
Background/Aims: The protective effect of melatonin against the damage inflicted by reactive oxygen ...