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  3. Oleuropein supplementation increases resting skeletal muscle fractional PDH activity but does not influence whole-body metabolism: A randomized, double-blind, placebo-controlled trial in healthy, older males.

Oleuropein supplementation increases resting skeletal muscle fractional PDH activity but does not influence whole-body metabolism: A randomized, double-blind, placebo-controlled trial in healthy, older males.

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DOI
10.48620/85847
Publisher DOI
10.1016/j.tjnut.2025.02.015
PubMed ID
39993475
Abstract
Background
The polyphenol oleuropein activates mitochondrial calcium import, which increases pyruvate dehydrogenase (PDH) activity. Preclinically, this increase in PDH activity following oleuropein supplementation resulted in improved mitochondrial bioenergetics and fatigue resistance.Objective
This study aimed to examine the effects of acute and chronic oleuropein supplementation on muscle energy metabolism, whole-body substrate metabolism, strength, and fatigue resistance in older males.Methods
In a randomized, double-blind, placebo-controlled trial, 40 healthy older males (60±5y) received either placebo (PLA) or 100mg oleuropein from olive leaf extract (OLE) supplementation daily for 36 days. On day 1 and 36, muscle and blood samples were collected, and indirect calorimetry was performed, before and up to 120min following supplement intake. Leg strength and fatigue were measured before and after 29 days of supplementation. Results were analyzed using ANCOVA or robust ANCOVA.Results
OLE ingestion on day 1 and 36 increased plasma oleuropein metabolites (P<0.001). On day 1, no differences were observed in muscle PDH activity, mitochondrial respiration, or whole-body substrate metabolism 120min after acute OLE ingestion. RNA sequencing revealed upregulation of oxidative phosphorylation gene pathways (FDR<0.05), while PDH-Ser293-phosphorylation was higher after acute OLE vs PLA ingestion (P=0.015). Following chronic supplementation, fractional PDH activity was ∼25% greater in OLE vs PLA (49±14 vs 38±10%; P=0.016) with no differences in absolute PDH activity and PDH-Ser293-phosphorylation between groups. Mitochondrial respiration and protein content, whole-body substrate metabolism, leg strength and fatigue resistance, were not different between OLE vs PLA. Plasma LDL cholesterol was lower after chronic OLE vs PLA (P=0.043) with no differences in other blood metabolic markers.Conclusions
Chronic OLE supplementation resulted in higher skeletal muscle fractional PDH activity in healthy, older males, which may impact resting energy metabolism. Acute or chronic oleuropein supplementation do not modulate skeletal muscle mitochondrial respiration, muscle strength, muscle fatigue, or whole-body substrate metabolism.Clinical Trial Registration
Https://clinicaltrials.gov/study/NCT05217433. Registry: https://clinicaltrials.gov/study/NCT05217433.
Date Issued
2025-05
Publication Type
Article
Subject(s)
600 Technology > 610 Medicine & health
Subjects
Body composition by MRI
•
Mitochondrial calcium uniporter
•
Mitochondrial respiration
•
Muscle strength
•
Olea europaea L.
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Olive leaf extract
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Pyruvate dehydrogenase
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Whole-body substrate metabolism
Language(s)
en
Author(s)
Pinckaers, Philippe Jm
Petrick, Heather L
Horstman, Astrid Mh
Moreno-Asso, Alba
De Marchi, Umberto
Hendriks, Floris K
Kuin, Lisa Me
Fuchs, Cas J
Grathwohl, Dominik
Verdijk, Lex B
Zorenc, Antoine H
Senden, Joan Mg
Migliavacca, Eugenia
Metairon, Sylviane
Poquet, Laure
Morin-Rivron, Delphine
Karagounis, Leonidas G.  
Institute of Social and Preventive Medicine  
Holloway, Graham P
Feige, Jerome N
van Loon, Luc Jc
Additional Credits
Institute of Social and Preventive Medicine  
Journal
The Journal of Nutrition
Publisher
Elsevier
ISSN
1541-6100
0022-3166
Access(Rights)
open.access
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