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A Kinetic Model of Whole-Body Glucose Metabolism with Reference to the Domestic Dog (Canis lupus familiaris)

机译:参照家犬的全体内葡萄糖代谢动力学模型

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摘要

A new two-pool model to describe glucose kinetics in the steady state is presented. The pools are plasma glucose, Q 1, and tissue glucose, Q 2 (both µmol). The flows (all µmol/min) into the plasma pool (Pool 1) are absorbed glucose entry from dietary sources, labelled glucose infusion, and hepatic glucose production. There is one flow out of Pool 1, glucose uptake by the tissues. Inflows to the tissues pool (Pool 2) are from plasma and glycogenolysis. Outflows from Pool 2 are to plasma, glucose oxidation, and glycogenesis and other metabolism. Application of the model was illustrated using experimental data derived from healthy adult Labrador Retrievers in the fasted and fed (repeated meal feeding) states. In general, model derived estimates of glucose kinetics were representative of normal glucose metabolism, where rates of glucose production and uptake are similar and act to maintain blood glucose concentrations. Furthermore, estimates of within tissue glucose cycling indicated glycogenolysis in fasting and glycogenesis when fed. In the fasted state, model outputs were consistent with those reported in the canine literature derived using a single pool model.
机译:提出了一种描述稳态葡萄糖动力学的新的两池模型。这些库是血浆葡萄糖Q 1和组织葡萄糖Q 2(均为μmol)。流入血浆池(池1)的流量(全部µmol / min)是从饮食来源吸收的葡萄糖,标记的葡萄糖输注和肝葡萄糖生成。池1流出一股,组织吸收了葡萄糖。组织池(池2)的流入来自血浆和糖原分解作用。从库2流出的是血浆,葡萄糖氧化,糖原生成和其他新陈代谢。使用从健康成人拉布拉多犬在禁食和进食(重复进食)状态下获得的实验数据说明了该模型的应用。通常,模型得出的葡萄糖动力学估计值代表正常的葡萄糖代谢,其中葡萄糖的产生和摄取速率相似,并起维持血糖浓度的作用。此外,对组织内葡萄糖循环的估计表明进食时禁食和糖原的糖原分解。在禁食状态下,模型输出与使用单池模型得出的犬类文献中报道的输出一致。

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