ObjectiveTo provide theoretical and technological support for further study of liver metabolism and disease by comparing the advantages and disadvantages of various artificial liver models (biological). MethodsLiteratures were searched and compared to summarize the requirement for liver donor, isolation, and culture of hepatocyte. ResultsIn the separation method of hepatocyte, mechanical separation method had no requirement for liver donor, and was easy to acquire hepatocyte, while the acquired hepatocyte would be destructed severely, and the survival rate was low. On the other hand, the restriction of the digestion of the hepatocytes to the liver cell samples was unlimited, while the key of the enzyme digestion method was to regulate the balance between enzyme concentration and digestion time, which was limited to function researches of hepatocyte, and research about the responds of hepatocyte against outside, and other few researches. Perfusion digestion method had been widely applied for animal test. The Ca2+, collagenase and perfusion rate, pH value, buffer, and intubation method all play vital roles. During the cultivation, we needed to choose different methods according to several experiments, and add different additives in the appropriate medium. Different biological reactors had different advantages, disadvantages, and applicable conditions. ConclusionsThe donor selection is based on various experimental purposes to harvest hepatocytes from different sources. Whether on the separation process or on the cultivation process, according to the specific circumstances, such as the concentration, perfusion time, and the choice of different kinds of culture medium, we can choose different kinds of bioreactors, but all kinds of methods are still remained with multiple insufficiencies, which require more researchers to improve.
Objective To summarize present situation and development of non-biological artificial liver. Method The related literatures about artificial liver treatment in recent years were reviewed. Results The current artificial liver which applied to clinic mainly are non-biological artificial liver, including plasma exchange, hemodialysis, hemofiltration, bilirubin adsorption, hemoperfusion, molecular adsorption recycling, etc. Because of the individual clinical cases, the individualized requirements for treatment are put forward. Single treatment of non-biological artificial liver is often unable to satisfy the individualized requirements, combined the advantages of each treatment so as to maximum therapeutic effect for patients has become a trend. Conclusion Combined treatment of non-biological artificial liver is superior to single treatment, individual treatment concept should be carried out in whole process of treatment.
Bioartificial liver support system (BALSS) provides a new way to treat liver failure and leaves more time for patients who are waiting for liver transplantation. It has detoxification function as well as the human liver, at the same time it can provide nutrition and improve the internal environment inside human body. Bioreactors and hepatocytes with good biological activity are the cores of BALSS which determine the treatment effect. However, in the course of prolonged treatment, the function and activity of hepatocytes might be greatly changed which could influence the efficacy. Therefore, it is very important to detect the status of the hepatocytes in BALSS. This paper presents some common indicators of cell activity, detoxification and synthetic functions, and also introduces the commonly detection methods corresponding to each indicator. Finally, we summarize the application of detection methods of the hepatocyte status in BALSS and discuss its development trend.
The main treatment strategies for hepatic failure include drug therapy, artificial liver support system, and liver transplantation. This article introduces the clinically commonly used non biological artificial liver techniques, including plasma exchange, continuous blood purification, plasma bilirubin adsorption, plasma diafiltration, repeatedly pass albumin dialysis, molecular adsorbent recirculating system, Prometheus system, etc; and discusses how to select different artificial liver techniques according to different clinical manifestation. At the same time, the progress of bioartificial liver in recent years is summarized, and the future development of artificial liver is prospected.