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首页> 外文期刊>Transplantation: Official Journal of the Transplantation Society >Characterizing lung metabolism with carbon-13 magnetic resonance spectroscopy in a small-animal model: evidence of gluconeogenesis during hypothermic storage.
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Characterizing lung metabolism with carbon-13 magnetic resonance spectroscopy in a small-animal model: evidence of gluconeogenesis during hypothermic storage.

机译:在小动物模型中用碳13磁共振波谱表征肺部代谢:低温保存过程中糖异生的证据。

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摘要

Experimental evidence suggests storing lungs inflated with oxygen and with oxidizable substrate improves results of lung transplantation. Glucose is included in the low-potassium-dextran (LPD) solution Perfadex to achieve this goal. The authors hypothesized that other substrates might be more effective. Rat lungs were stored for 6 or 24 hr in LPD solution with the following carbon-13--labeled substrates: 5 mM glucose (Perfadex group), 32 mM pyruvate (pyruvate group), or both (combination group). Metabolism was assessed by magnetic resonance spectroscopy. Small amounts of exogenous glucose were oxidized in the Perfadex group. In contrast, exogenous pyruvate was the major substrate oxidized in the pyruvate and combination groups (P<0.01 vs. Perfadex). Carbon-13--labeled glucose and glycogen were detected in the pyruvate group, suggesting that gluconeogenesis and glycogen synthesis occur in glucose-deprived lungs. Lungs for transplantation metabolize substrates through both anabolic and catabolic pathways. These reactions may be important in designing improved solutions for lung preservation.
机译:实验证据表明,储存充满氧气和可氧化底物的肺可以改善肺移植的效果。低钾-葡聚糖(LPD)解决方案Perfadex中包含葡萄糖以实现此目标。作者假设其他底物可能更有效。将大鼠肺在具有以下碳13标记底物的LPD溶液中保存6或24小时:5 mM葡萄糖(Perfadex组),32 mM丙酮酸(丙酮酸组)或两者(组合组)。通过磁共振波谱评估代谢。 Perfadex组中少量的外源葡萄糖被氧化。相比之下,外源丙酮酸是丙酮酸和组合组中氧化的主要底物(相对于Perfadex,P <0.01)。在丙酮酸组中检测到了碳13标记的葡萄糖和糖原,表明糖原异生和糖原合成发生在葡萄糖缺乏的肺中。用于移植的肺通过合成代谢和分解代谢途径代谢底物。这些反应对于设计改良的肺部保存解决方案可能很重要。

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