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与人类肝移植中的组织氧合相比,线粒体内吡啶核苷酸氧化还原状态的延迟氧化。

Delayed oxidation of intramitochondrial pyridine nucleotide oxido reduction state as compared with tissue oxygenation in human liver transplantation.

作者信息

Tokuka A, Tanaka A, Kitai T, Tanaka K, Yamaoka Y, Ozawa K

机构信息

Second Department of Surgery, Faculty of Medicine, Kyoto University, Japan.

出版信息

Transpl Int. 1994;7 Suppl 1:S496-8. doi: 10.1111/j.1432-2277.1994.tb01428.x.

Abstract

Intra- and post-operative oxygenation of graft liver and subsequent oxidation of the intramitochondrial redox state of pyridine nucleotide were studied in liver transplantation from living related donors with the arterial ketone body ratio (AKBR), the ratio of oxidized flavoprotein to reduced pyridine nucleotide (FP/PN ratio), and oxygen saturation of hemoglobin in liver tissue (hepatic SO2). The subjects involved in this study consisted of 20 pediatric patients. Hepatic SO2 was measured by near-infrared tissue spectroscopy. FP/PN ratio was measured by two-dimensional fluorometric scanning. Tissue oxygenation was normalized at the end of the operation. By contrast, AKBR remained at a low value at the end of the operation. At 24 and 48 h after the operation, the AKBR values increased to near the control value, indicating that it took 24 h for the intramitochondrial redox state to be normalized. The FP/PN ratio also remained at a low value at the end of the operation as compared with the control value. In conclusion, the observed delay in oxidation of the intramitochondrial redox state as compared with tissue oxygenation indicated the transition of the redox state associated with the changes in the metabolic state, and suggested the important role of microcirculation in the normalization of the redox state.

摘要

在活体亲属供肝肝移植中,通过动脉酮体比(AKBR)、氧化型黄素蛋白与还原型吡啶核苷酸的比值(FP/PN比值)以及肝组织中血红蛋白的氧饱和度(肝SO2),研究了移植肝的术中和术后氧合情况以及随后线粒体内吡啶核苷酸氧化还原状态的变化。本研究的对象包括20名儿科患者。肝SO2通过近红外组织光谱法测量。FP/PN比值通过二维荧光扫描测量。手术结束时组织氧合恢复正常。相比之下,手术结束时AKBR仍处于低值。术后24小时和48小时,AKBR值升至接近对照值,表明线粒体内氧化还原状态恢复正常需要24小时。与对照值相比,手术结束时FP/PN比值也处于低值。总之,与组织氧合相比,观察到的线粒体内氧化还原状态氧化延迟表明氧化还原状态随代谢状态变化而转变,并提示微循环在氧化还原状态恢复正常中起重要作用。

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