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Hepatic reconstruction from fetal porcine liver cells using a radial flow bioreactor

Hepatic reconstruction from fetal porcine liver cells using a radial flow bioreactor

作     者:Yuji Ishii Ryota Saito Hideki Marushima Ryusuke Ito Taro Sakamoto Katsuhiko Yanaga 

作者机构:Department of Surgery the Jikei University School of Medicine 

出 版 物:《World Journal of Gastroenterology》 (世界胃肠病学杂志(英文版))

年 卷 期:2008年第14卷第17期

页      面:2740-2747页

核心收录:

学科分类:1002[医学-临床医学] 100201[医学-内科学(含:心血管病、血液病、呼吸系病、消化系病、内分泌与代谢病、肾病、风湿病、传染病)] 10[医学] 

基  金:Supported by Grants-In-Aid from the University Start-Up Creation Support System the Promotion and Mutual Aid Corporation for Private School of Japan the Japan Health Sciences Foundation, Research on Health Science on Drug Innovation, No. KH 71068 

主  题:Liver organoid Radial flow bioreactor Bioartificial liver Fetal porcine liver Hepatocyte growthfactor 

摘      要:AIM: To examine the efficacy of the radial flow bioreactor (RFB) as an extracorporeal bioartificial liver (BAL) and the reconstruction of liver organoids using embryonic pig liver cells. METHODS: We reconstructed the liver organoids using embryonic porcine liver cells in the RFB. We also determined the gestational time window for the optimum growth of embryonic porcine liver cells. Five weeks of gestation was designated as embryonic day (E) 35 and 8 wk of gestation was designated as E56. These cells were cultured for one week before morphological and functional examinations. Moreover, the efficacy of pulsed adminisbation of a high concentration hepatocyte growth factor (HGF) was examined. RESULTS: Both cell growth and function were excellent after harvesting on E35. The pulsed administration of a high concentration of HGF promoted the differentiation and maturation of these fetal hepatic cells. Microscopic examination of organoids in the RFB revealed palisading and showed that bile duct-like structures were well developed, indicating that the organoids were mini livers. Transmission electron microscopy revealed microvilli on the luminal surfaces of bile duct-like structures and junctional complexes, which form the basis of the cytoskeleton of epithelial tissues. Furthermore, strong expression of connexin (Cx) 32, which is the main protein of hepatocyte gap junctions, was observed. With respect to liver function, ammonia detoxification and urea synthesis were shown to be performed effectively. CONCLUSION: Our system can potentially be applied in the fields of BAL and transplantation medicine.

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