2005
DOI: 10.1007/s00125-005-0099-x
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Changes in hepatic glycogen cycling during a glucose load in healthy humans

Abstract: Aims/hypothesis: Glycogen cycling, i.e. simultaneous glycogen synthesis and glycogenolysis, affects estimates of glucose fluxes using tracer techniques and may contribute to hyperglycaemia in diabetic conditions. This study presents a new method for quantifying hepatic glycogen cycling in the fed state. Glycogen is synthesised from glucose by the direct and indirect (gluconeogenic) pathways. Since glycogen is also synthesised from glycogen, i.e. glycogen→glucose 1-phosphate→glycogen, that synthesised through t… Show more

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Cited by 19 publications
(21 citation statements)
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“…Assuming that ϳ20 grams of glucose was taken up by the liver and converted to UDPG, then the contribution of UDPG flux from galactose could be as high as 10.4/30.4 ϭ 34%. However, similar G2/body water ratios (ϳ0.83) were also found during a hyperglycemic clamp, where glucose is the only carbohydrate source for hepatic glycogen synthesis and UDPG synthesis from galactose is negligible (28). These observations suggest that incomplete G6P-F6P exchange could also contribute to a reduced G2 enrichment.…”
Section: Discussionsupporting
confidence: 62%
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“…Assuming that ϳ20 grams of glucose was taken up by the liver and converted to UDPG, then the contribution of UDPG flux from galactose could be as high as 10.4/30.4 ϭ 34%. However, similar G2/body water ratios (ϳ0.83) were also found during a hyperglycemic clamp, where glucose is the only carbohydrate source for hepatic glycogen synthesis and UDPG synthesis from galactose is negligible (28). These observations suggest that incomplete G6P-F6P exchange could also contribute to a reduced G2 enrichment.…”
Section: Discussionsupporting
confidence: 62%
“…With [1-13 C]glucose, glycogen cycling dilutes the label at the level of UDPG resulting in an underestimate of the direct pathway contribution to glycogen synthesis. This is also true for the H]glucose tracer (28). Finally, transaldolase activity exchanges the bottom triose unit of F6P with glyceraldehyde-3-phosphate.…”
Section: Discussionmentioning
confidence: 68%
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