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A metabolic flux analyis to quantify the hepatic metabolism during defatting

机译:脱脂过程中的代谢通量分析以量化肝脏代谢

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Macrosteatotic livers, with hepatocytes that have accumulated lipids in the form of large lipid droplets, have been shown to be at a significant risk for primary graft nonfunction due to increased sensitivity to ischemia reperfusion (I/R) injury in the transplantation process. Nearly 30% of donated livers are discarded annually due to their macrosteatotic state. Our lab has previously demonstrated that a cocktail of defatting agents can clear excess lipid storage in fatty livers, thus providing a new means to recondition donated livers that would otherwise be discarded. Currently, however, the process is highly rate-limited and therefore not yet translatable to the workflow of transplant surgeries. To identify reaction-rate limited metabolic pathways in the defatting process, a metabolic flux analysis (MFA) was conducted. The changes in metabolic reaction fluxes of macrosteatotic HepG2 hepatocytes undergoing defatting were elucidated. We hope the insights from the MFA will allow us to metabolically optimize hepatic function in the macrosteatotic state and potentially identify novel metabolic supplements for a more rapid defatting of marginal donor livers.
机译:由于在移植过程中对缺血再灌注(I / R)损伤的敏感性增加,具有大量脂质液滴形式积累的脂质的肝细胞的巨脂肝已显示出原发性移植物无功能的重大风险。每年有近30%的捐赠肝脏由于处于大脂肪状态而被丢弃。我们的实验室以前已经证明,脱脂剂混合物可以清除脂肪肝中过多的脂质,从而为修复捐赠的肝脏提供了新的手段,否则这些肝脏将被丢弃。但是,目前,该过程受到速率的高度限制,因此尚不能转换为移植手术的工作流程。为了确定脱脂过程中反应速率受限的代谢途径,进行了代谢通量分析(MFA)。阐明了脱脂大脂肪肝HepG2肝细胞代谢反应通量的变化。我们希望来自MFA的见解将使我们能够在大脂肪状态下代谢优化肝功能,并有可能确定新的代谢补充剂以使边缘供体肝脏更快地脱脂。

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