Murakami S, Ijima H, Ono T, Kawakami K
Department of Chemical Engineering, Faculty of Engineering, Graduate School, Kyushu University, Fukuoka, Japan.
Int J Artif Organs. 2004 Feb;27(2):118-26. doi: 10.1177/039139880402700207.
In this study, a co-culture system of hepatocytes and bone marrow cells (BMCs) was developed and characterized for the expression and maintenance of ammonia metabolism and albumin secretion activities. A culture medium supplemented with epidermal growth factor, insulin, L-proline, hydrocortisone and 20% (v/v) heat-inactivated fetal bovine serum was developed. In addition to adhesive bone marrow cells, the co-existence of non-adhesive bone marrow cells was effective in expressing liver-specific functions for at least 3 weeks. On the other hand, experiments with Transwell in which cultured cells were separated by a semi-permeable membrane, suggested that soluble factors secreted by BMCs are the key components in the functional enhancement of cells. Furthermore, direct contact between hepatocytes and BMCs enhanced the formation of spheroids and the expression of liver specific functions. These results indicate that this co-culture system is promising in, for example, bioartificial liver, regenerative medicine, and liver function simulator applications.
在本研究中,开发了一种肝细胞与骨髓细胞(BMCs)的共培养系统,并对其氨代谢表达和维持以及白蛋白分泌活性进行了表征。开发了一种补充有表皮生长因子、胰岛素、L-脯氨酸、氢化可的松和20%(v/v)热灭活胎牛血清的培养基。除了黏附性骨髓细胞外,非黏附性骨髓细胞的共存对于至少3周表达肝脏特异性功能是有效的。另一方面,使用Transwell进行的实验(其中培养的细胞被半透膜分隔)表明,BMCs分泌的可溶性因子是细胞功能增强的关键成分。此外,肝细胞与BMCs之间的直接接触增强了球体的形成和肝脏特异性功能的表达。这些结果表明,这种共培养系统在例如生物人工肝、再生医学和肝功能模拟器应用方面很有前景。