Department of Chemical Engineering and Materials Science, University of Minnesota, Minneapolis, Minnesota 5545-1103, USA.
Biotechnol Bioeng. 1993 Jan 20;41(2):194-203. doi: 10.1002/bit.260410205.
We have developed a hepatocyte entrapment hollow fiber bioreactor for potential use as a bioartificial liver. Hepatocytes were entrapped in collagen gel inside the lumen of the hollow fibers. Medium was perfused through the intraluminal region after contraction of the hepatocyte-entrapment gel. Another medium stream, comparable to the patient's blood during clinical application, passed through the extracapillary space. Viability of hepatocytes remained high after 5 days as judged by the rate of oxygen uptake and viability staining. Urea and albumin synthetic activities were also sustained. Transmission electron microscopic examination demonstrated normal ultrastructural integrity of hepatocytes in such a bioreactor. With its sort-term, extracorporeal support of acute liver failure, the current bioreactor warrants further investigation.
我们开发了一种用于潜在生物人工肝的肝细胞包埋中空纤维生物反应器。肝细胞被包埋在中空纤维管腔中的胶原凝胶中。在肝细胞包埋凝胶收缩后,培养基通过内腔区域灌注。另一种培养基流,类似于临床应用中患者的血液,通过毛细血管外空间通过。通过氧摄取率和活力染色判断,肝细胞在 5 天后仍保持高活力。尿素和白蛋白合成活性也得以维持。透射电子显微镜检查显示,生物反应器中的肝细胞具有正常的超微结构完整性。这种生物反应器具有急性肝功能衰竭的短期体外支持作用,值得进一步研究。