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  1. Bioartificial liver (BAL) support systems have a potential effect to provide temporary support to bridge patients with acute liver failure to liver transplantation or spontaneous recovery. In the past decades, several BAL support systems have been conducted in clinical trials, but remained verified.

  2. 18 Φεβ 2021 · Considering hepatic encephalopathy, extracorporeal liver assist device (ELAD) may be the most effective option (SUCRA: 78%).

  3. 1 Νοε 1998 · In this article, we will review briefly the past experience with artificial liver support systems, examine the present status of the field, and summarize our own clinical studies with a hepatocyte-based artificial liver (Bioartificial liver; BAL).

  4. 15 Νοε 2018 · At the end of the last century, some artificial liver devices began to develop with the aim of being used as supportive therapy until liver transplantation (bridge-to-transplant) or liver regeneration (bridge-to-recovery).

  5. 12 Νοε 2008 · An anhepatic dog model is used to demonstrate the efficacy of a bioartificial liver assist device capable of replacing the metabolic function of the liver, and might provide hepatic support in patients awaiting transplantation or in fulminant hepatic failure.

  6. Bioartificial liver (BAL) device is one of the alternatives for liver failure which provides a curing method and support patients to recover from certain liver failure diseases.

  7. 12 Σεπ 2020 · Extracorporeal liverassist devices allow support, as a “bridge,” until a donor's liver becomes available or until the patients' liver can recover. 7 There are two main types of device: artificial and bioartificial. 2 Artificial liver devices use nonliving components to detoxify the blood or plasma. 2 Removal uses physical or chemical ...

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