Investigation of metabolic objectives in cultured hepatocytes

被引:22
作者
Uygun, Korkut [1 ]
Matthew, Howard W. T. [1 ]
Huang, Yinlun [1 ]
机构
[1] Wayne State Univ, Dept Chem Engn & Mat Sci, Detroit, MI 48202 USA
关键词
flux balance analysis; hepatocytes; metabolic objective identification;
D O I
10.1002/bit.21237
中图分类号
Q81 [生物工程学(生物技术)]; Q93 [微生物学];
学科分类号
071005 ; 0836 ; 090102 ; 100705 ;
摘要
Using optimization based methods to predict fluxes in metabolic flux balance models has been a successful approach for some microorganisms, enabling construction of in silico models and even inference of some regulatory motifs. However, this success has not been translated to mammalian cells. The lack of knowledge about metabolic objectives in mammalian cells is a major obstacle that prevents utilization of various metabolic engineering tools and methods for tissue engineering and biomedical purposes. In this work, we investigate and identify possible metabolic objectives for hepatocytes cultured in vitro. To achieve this goal, we present a special data-mining procedure for identifying metabolic objective functions in mammalian cells. This multi-level optimization based algorithm enables identifying the major fluxes in the metabolic objective from MFA data in the absence of information about critical active constraints of the system. Further, once the objective is determined, active flux constraints can also be identified and analyzed. This information can be potentially used in a predictive manner to improve cell culture results or clinical metabolic outcomes. As a result of the application of this method, it was found that in vitro cultured hepatocytes maximize oxygen uptake, coupling of urea and TCA cycles, and synthesis of serine and urea. Selection of these fluxes as the metabolic objective enables accurate prediction of the flux distribution in the system given a limited amount of flux data; thus presenting a workable in silico model for cultured hepatocytes. It is observed that an overall homeostasis picture is also emergent in the findings.
引用
收藏
页码:622 / 637
页数:16
相关论文
共 39 条
[1]  
[Anonymous], 1995, TR9601 U MAR DEP MAT
[2]   Mathematical modeling and analysis in biochemical engineering: Past accomplishments and future opportunities [J].
Bailey, JE .
BIOTECHNOLOGY PROGRESS, 1998, 14 (01) :8-20
[3]   Optimization-based framework for inferring and testing hypothesized metabolic objective functions [J].
Burgard, AP ;
Maranas, CD .
BIOTECHNOLOGY AND BIOENGINEERING, 2003, 82 (06) :670-677
[4]   Metabolic flux analysis of cultured hepatocytes exposed to plasma [J].
Chan, C ;
Berthiaume, F ;
Lee, K ;
Yarmush, ML .
BIOTECHNOLOGY AND BIOENGINEERING, 2003, 81 (01) :33-49
[5]   Metabolic flux analysis of hepatocyte function in hormone- and amino acid-supplemented plasma [J].
Chan, C ;
Berthiaume, F ;
Lee, K ;
Yarmush, ML .
METABOLIC ENGINEERING, 2003, 5 (01) :1-15
[6]   Application of multivariate analysis to optimize function of cultured hepatocytes [J].
Chan, C ;
Hwang, D ;
Stephanopoulos, GN ;
Yarmush, ML ;
Stephanopoulos, G .
BIOTECHNOLOGY PROGRESS, 2003, 19 (02) :580-598
[7]   THE BIOCHEMISTRY OF ALCOHOL-INDUCED FATTY LIVER [J].
DAY, CP ;
YEAMAN, SJ .
BIOCHIMICA ET BIOPHYSICA ACTA-LIPIDS AND LIPID METABOLISM, 1994, 1215 (1-2) :33-48
[8]   L-serine in disease and development [J].
De Koning, TJ ;
Snell, K ;
Duran, M ;
Berger, R ;
Poll-The, BT ;
Surtees, R .
BIOCHEMICAL JOURNAL, 2003, 371 :653-661
[9]  
Edgar T.F., 2001, Optimization of Chemical Processes
[10]   In silico predictions of Escherichia coli metabolic capabilities are consistent with experimental data [J].
Edwards, JS ;
Ibarra, RU ;
Palsson, BO .
NATURE BIOTECHNOLOGY, 2001, 19 (02) :125-130