首页> 外文会议>Pacific Symposium on Biocomputing 2007 >METABOLIC FLUX PROFILING OF REACTION MODULES IN LIVER DRUG TRANSFORMATION
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METABOLIC FLUX PROFILING OF REACTION MODULES IN LIVER DRUG TRANSFORMATION

机译:肝药转化反应模块的代谢通量分析

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With appropriate models, the metabolic profile of a biological system may be interrogated to obtain both significant discriminatory markers as well as mechanistic insight into the observed phenotype. One promising application is the analysis of drug toxicity, where a single chemical triggers multiple responses across cellular metabolism. Here, we describe a modeling framework whereby metabolite measurements are used to investigate the interactions between specialized cell functions through a metabolic reaction network. As a model system, we studied the hepatic transformation of troglitazone (TGZ), an anti-diabetic drug withdrawn due to idiosyncratic hepatotoxicity. Results point to a well-defined TGZ transformation module that connects to other major pathways in the hepatocyte via amino acids and their derivatives. The quantitative significance of these connections depended on the nutritional state and the availability of the sulfur containing amino acids.
机译:使用适当的模型,可以查询生物系统的代谢状况,以获得重要的判别标志物以及对观察到的表型的机械洞察力。一种有前途的应用是药物毒性分析,其中一种化学物质会触发细胞代谢的多种反应。在这里,我们描述了一个建模框架,其中代谢物测量被用来研究通过代谢反应网络的专门细胞功能之间的相互作用。作为模型系统,我们研究了曲格列酮(TGZ)的肝转化,曲格列酮是由于特异性肝毒性而撤出的抗糖尿病药物。结果指向一个定义明确的TGZ转化模块,该模块通过氨基酸及其衍生物与肝细胞中的其他主要途径相连。这些联系的定量意义取决于营养状态和含硫氨基酸的可用性。

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