Chan Christina, Hwang Daehee, Stephanopoulos Gregory N, Yarmush Martin L, Stephanopoulos George
Department of Chemical Engineering and Material Science, Michigan State University, East Lansing, Michigan 48824, USA.
Biotechnol Prog. 2003 Mar-Apr;19(2):580-98. doi: 10.1021/bp025660h.
Understanding the metabolic and regulatory pathways of hepatocytes is important for biotechnological applications involving liver cells, including the development of bioartificial liver (BAL) devices. To characterize intermediary metabolism in the hepatocytes, metabolic flux analysis (MFA) was applied to elucidate the changes in intracellular pathway fluxes of primary rat hepatocytes exposed to human plasma and to provide a comprehensive snapshot of the hepatic metabolic profile. In the current study, the combination of preconditioning and plasma supplementation produced distinct metabolic states. Combining the metabolic flux distribution obtained by MFA with methodologies such as Fisher discriminant analysis (FDA) and partial least squares or projection to latent structures (PLS) provided insights into the underlying structure and causal relationship within the data. With the aid of these analyses, patterns in the cellular response of the hepatocytes that contributed to the separation of the different hepatic states were identified. Of particular interest was the recognition of distal pathways that strongly correlated with a particular hepatic function. The hepatic functions investigated were intracellular triglyceride accumulation and urea production. This study illustrates a framework for optimizing hepatic function and a possibility of identifying potential targets for improving hepatic functions.
了解肝细胞的代谢和调节途径对于涉及肝细胞的生物技术应用非常重要,包括生物人工肝(BAL)装置的开发。为了表征肝细胞中的中间代谢,应用代谢通量分析(MFA)来阐明原代大鼠肝细胞暴露于人血浆后细胞内途径通量的变化,并提供肝脏代谢谱的全面概况。在当前研究中,预处理和血浆补充的组合产生了不同的代谢状态。将MFA获得的代谢通量分布与诸如Fisher判别分析(FDA)和偏最小二乘法或投影到潜在结构(PLS)等方法相结合,为数据中的潜在结构和因果关系提供了见解。借助这些分析,确定了导致不同肝脏状态分离的肝细胞细胞反应模式。特别令人感兴趣的是识别与特定肝功能密切相关的远端途径。所研究的肝功能是细胞内甘油三酯积累和尿素产生。本研究阐明了优化肝功能的框架以及识别改善肝功能潜在靶点的可能性。