生物人工肝装置
肝细胞
胶原酶
白蛋白
化学
乙二醇
肝功能
离体
细胞培养
生物化学
男科
生物
体外
内科学
医学
酶
有机化学
遗传学
作者
Timothy D. Sielaff,Michael Y. Hu,Sridhar Rao,Kristine E. Groehler,Daidre Olson,Henry J. Mann,Rory P. Remmel,Russell A. Shatford,Bruce Amiot,Wei‐Shou Hu,Frank B. Cerra
出处
期刊:Transplantation
[Wolters Kluwer]
日期:1995-05-01
卷期号:59 (10): 1459-1463
被引量:64
标识
DOI:10.1097/00007890-199505270-00017
摘要
Current bioartificial liver devices are based on the use of a large mass of hepatocytes exhibiting differentiated metabolic function. The pig has become a source of interest for the acquisition of such cells—however, harvesting a large mass of highly viable cells has met with difficulty. This study describes a technique for harvesting large quantities of hepatocytes at viabilities greater than 90% and also describes several features documenting differentiated function. Pigs, 6 to 10 kg body weight, underwent in situ two-step whole liver perfusion (ethylene glycol tetraacetic acid and collagenase) and ex vivo cell harvest. Harvests yielded an average of 19.5 billion cells with an average viability of 94.6%. Hepatocytes were then entrapped in type I collagen (3×105 cells/well) and cultured in serum-free media for 5 days. Pig hepatocytes produced stable amounts of albumin and maintained cytochrome P-450 and glucuronidation activity over 5 days, as shown by the metabolism of lidocaine and 4-methylumbelliferone. These data indicate that pig hepatocytes can be harvested with high yields and can retain viability and differentiated function over at least 5 days of culture, and therefore should prove to be an excellent source of hepatocytes for bioartificial liver devices.
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