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Total Postprandial Hepatic Nonesterified and Dietary Fatty Acid Uptake Is Increased and Insufficiently Curbed by Adipose Tissue Fatty Acid Trapping in Prediabetes With Overweight

Excessive lean tissue uptake of fatty acids (FAs) is important in the development of insulin resistance and may be caused by impaired dietary FA (DFA) storage and/or increased nonesterified FA (NEFA) flux from adipose tissue intracellular lipolysis. Cardiac and hepatic total postprandial FA uptake o...

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Autores principales: Ye, Run Zhou, Montastier, Émilie, Noll, Christophe, Frisch, Frédérique, Fortin, Mélanie, Bouffard, Lucie, Phoenix, Serge, Guérin, Brigitte, Turcotte, Éric E., Carpentier, André C.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Diabetes Association 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9862339/
https://www.ncbi.nlm.nih.gov/pubmed/35748318
http://dx.doi.org/10.2337/db21-1097
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author Ye, Run Zhou
Montastier, Émilie
Noll, Christophe
Frisch, Frédérique
Fortin, Mélanie
Bouffard, Lucie
Phoenix, Serge
Guérin, Brigitte
Turcotte, Éric E.
Carpentier, André C.
author_facet Ye, Run Zhou
Montastier, Émilie
Noll, Christophe
Frisch, Frédérique
Fortin, Mélanie
Bouffard, Lucie
Phoenix, Serge
Guérin, Brigitte
Turcotte, Éric E.
Carpentier, André C.
author_sort Ye, Run Zhou
collection PubMed
description Excessive lean tissue uptake of fatty acids (FAs) is important in the development of insulin resistance and may be caused by impaired dietary FA (DFA) storage and/or increased nonesterified FA (NEFA) flux from adipose tissue intracellular lipolysis. Cardiac and hepatic total postprandial FA uptake of NEFA+DFA has, however, never been reported in prediabetes with overweight. In this study, 20 individuals with impaired glucose tolerance (IGT) and 19 participants with normal glucose tolerance (NGT) and normal fasting glucose underwent postprandial studies with whole-body positron emission tomography/computed tomography (PET/CT) with oral [(18)F]fluoro-thia-heptadecanoic acid and dynamic PET/CT with intravenous [(11)C]palmitate. Hepatic (97 [range 36–215] mmol/6 h vs. 68 [23–132] mmol/6 h, P = 0.03) but not cardiac (11 [range 4–24] mmol/6 h vs. 8 [3–20] mmol/6 h, P = 0.09) uptake of most sources of postprandial FA (NEFA + DFA uptake) integrated over 6 h was higher in IGT versus NGT. DFA accounted for lower fractions of total cardiac (21% [5–47] vs. 25% [9–39], P = 0.08) and hepatic (19% [6–52] vs. 28% [14–50], P = 0.04) uptake in IGT versus NGT. Increased adipose tissue DFA trapping predicted lower hepatic DFA uptake and was associated with higher total cardiac FA uptake. Hence, enhanced adipose tissue DFA trapping in the face of increased postprandial NEFA flux is insufficient to fully curb increased postprandial lean organ FA uptake in prediabetes with overweight (ClinicalTrials.gov; NCT02808182).
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spelling pubmed-98623392023-02-03 Total Postprandial Hepatic Nonesterified and Dietary Fatty Acid Uptake Is Increased and Insufficiently Curbed by Adipose Tissue Fatty Acid Trapping in Prediabetes With Overweight Ye, Run Zhou Montastier, Émilie Noll, Christophe Frisch, Frédérique Fortin, Mélanie Bouffard, Lucie Phoenix, Serge Guérin, Brigitte Turcotte, Éric E. Carpentier, André C. Diabetes Metabolism Excessive lean tissue uptake of fatty acids (FAs) is important in the development of insulin resistance and may be caused by impaired dietary FA (DFA) storage and/or increased nonesterified FA (NEFA) flux from adipose tissue intracellular lipolysis. Cardiac and hepatic total postprandial FA uptake of NEFA+DFA has, however, never been reported in prediabetes with overweight. In this study, 20 individuals with impaired glucose tolerance (IGT) and 19 participants with normal glucose tolerance (NGT) and normal fasting glucose underwent postprandial studies with whole-body positron emission tomography/computed tomography (PET/CT) with oral [(18)F]fluoro-thia-heptadecanoic acid and dynamic PET/CT with intravenous [(11)C]palmitate. Hepatic (97 [range 36–215] mmol/6 h vs. 68 [23–132] mmol/6 h, P = 0.03) but not cardiac (11 [range 4–24] mmol/6 h vs. 8 [3–20] mmol/6 h, P = 0.09) uptake of most sources of postprandial FA (NEFA + DFA uptake) integrated over 6 h was higher in IGT versus NGT. DFA accounted for lower fractions of total cardiac (21% [5–47] vs. 25% [9–39], P = 0.08) and hepatic (19% [6–52] vs. 28% [14–50], P = 0.04) uptake in IGT versus NGT. Increased adipose tissue DFA trapping predicted lower hepatic DFA uptake and was associated with higher total cardiac FA uptake. Hence, enhanced adipose tissue DFA trapping in the face of increased postprandial NEFA flux is insufficient to fully curb increased postprandial lean organ FA uptake in prediabetes with overweight (ClinicalTrials.gov; NCT02808182). American Diabetes Association 2022-09 2022-06-24 /pmc/articles/PMC9862339/ /pubmed/35748318 http://dx.doi.org/10.2337/db21-1097 Text en © 2022 by the American Diabetes Association https://www.diabetesjournals.org/journals/pages/licenseReaders may use this article as long as the work is properly cited, the use is educational and not for profit, and the work is not altered. More information is available at https://www.diabetesjournals.org/journals/pages/license.
spellingShingle Metabolism
Ye, Run Zhou
Montastier, Émilie
Noll, Christophe
Frisch, Frédérique
Fortin, Mélanie
Bouffard, Lucie
Phoenix, Serge
Guérin, Brigitte
Turcotte, Éric E.
Carpentier, André C.
Total Postprandial Hepatic Nonesterified and Dietary Fatty Acid Uptake Is Increased and Insufficiently Curbed by Adipose Tissue Fatty Acid Trapping in Prediabetes With Overweight
title Total Postprandial Hepatic Nonesterified and Dietary Fatty Acid Uptake Is Increased and Insufficiently Curbed by Adipose Tissue Fatty Acid Trapping in Prediabetes With Overweight
title_full Total Postprandial Hepatic Nonesterified and Dietary Fatty Acid Uptake Is Increased and Insufficiently Curbed by Adipose Tissue Fatty Acid Trapping in Prediabetes With Overweight
title_fullStr Total Postprandial Hepatic Nonesterified and Dietary Fatty Acid Uptake Is Increased and Insufficiently Curbed by Adipose Tissue Fatty Acid Trapping in Prediabetes With Overweight
title_full_unstemmed Total Postprandial Hepatic Nonesterified and Dietary Fatty Acid Uptake Is Increased and Insufficiently Curbed by Adipose Tissue Fatty Acid Trapping in Prediabetes With Overweight
title_short Total Postprandial Hepatic Nonesterified and Dietary Fatty Acid Uptake Is Increased and Insufficiently Curbed by Adipose Tissue Fatty Acid Trapping in Prediabetes With Overweight
title_sort total postprandial hepatic nonesterified and dietary fatty acid uptake is increased and insufficiently curbed by adipose tissue fatty acid trapping in prediabetes with overweight
topic Metabolism
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9862339/
https://www.ncbi.nlm.nih.gov/pubmed/35748318
http://dx.doi.org/10.2337/db21-1097
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