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Glycogen synthesis in human gastrocnemius muscle is not representative of whole-body muscle glycogen synthesis.

机译:人腓肠肌中糖原的合成不能代表全身肌肉糖原的合成。

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The introduction of (13)C magnetic resonance spectroscopy (MRS) has enabled noninvasive measurement of muscle glycogen synthesis in humans. Conclusions based on measurements by the MRS technique assume that glucose metabolism in gastrocnemius muscle is representative for all skeletal muscles and thus can be extrapolated to whole-body muscle glucose metabolism. An alternative method to assess whole-body muscle glycogen synthesis is the use of [3-(3)H]glucose. In the present study, we compared this method to the MRS technique, which is a well-validated technique for measuring muscle glycogen synthesis. Muscle glycogen synthesis was measured in the gastrocnemius muscle of six lean healthy subjects by MRS and by the isotope method during a hyperinsulinemic-euglycemic clamp. Mean muscle glycogen synthesis as measured by the isotope method was 115 +/- 26 mumol . kg(-1) muscle . min(-1) vs. 178 +/- 72 mumol . kg(-1) muscle . min(-1) (P = 0.03) measured by MRS. Glycogen synthesis rates measured by MRS exceeded100% of glucose uptake in three of the six subjects. We conclude that glycogen synthesis rates measured in gastrocnemius muscle cannot be extrapolated to whole-body muscle glycogen synthesis.
机译:(13)C磁共振波谱(MRS)的引入已实现了人类肌肉糖原合成的非侵入性测量。基于MRS技术的测量得出的结论假设腓肠肌的葡萄糖代谢代表所有骨骼肌,因此可以推断为全身肌肉的葡萄糖代谢。评估全身肌肉糖原合成的另一种方法是使用[3-(3)H]葡萄糖。在本研究中,我们将该方法与MRS技术进行了比较,MRS技术是一种经过充分验证的用于测量肌肉糖原合成的技术。在高胰岛素-正常血糖钳夹过程中,通过MRS和同位素方法测量了六名瘦弱健康受试者的腓肠肌的肌肉糖原合成。用同位素法测定的平均肌肉糖​​原合成为115 +/- 26摩尔。 kg(-1)肌肉。 min(-1)对178 +/- 72 mumol。 kg(-1)肌肉。 MRS测量的min(-1)(P = 0.03)。在六个受试者中的三个受试者中,通过MRS测量的糖原合成率超过了100%的葡萄糖摄取。我们得出结论,腓肠肌中测得的糖原合成速率不能外推至全身肌肉糖原合成。

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