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dc.creatorKourtzidis I.A., Dolopikou C.F., Tsiftsis A.N., Margaritelis N.V., Theodorou A.A., Zervos I.A., Tsantarliotou M.P., Veskoukis A.S., Vrabas I.S., Paschalis V., Kyparos A., Nikolaidis M.G.en
dc.date.accessioned2023-01-31T08:45:45Z
dc.date.available2023-01-31T08:45:45Z
dc.date.issued2018
dc.identifier10.1113/EP086964
dc.identifier.issn09580670
dc.identifier.urihttp://hdl.handle.net/11615/75346
dc.description.abstractNew Findings: What is the central question of this study? The aim was to investigate the potential metabolic and redox mechanisms that impaired exercise performance after 21 days of supplementation with 300 mg (kg body weight)−1 of nicotinamide riboside in rats. What is the main finding and its importance? Nicotinamide riboside disturbed energy and redox metabolism and impaired exercise performance in heathy rats. Exogenously administered redox agents in heathy populations might lead to adverse effects. Abstract: Nicotinamide riboside is a recently discovered form of vitamin B3 that can increase NAD(P) levels. NAD(P) plays key roles in energy metabolism, and its main function is the transfer of electrons in various cellular reactions. Research in aged or diseased mice reported that nicotinamide riboside increases NAD(H) levels, reduces morbidity and improves health and muscle function. We have recently shown that in healthy young rats, chronic administration of nicotinamide riboside marginally non-significantly decreased exercise performance by 35% (P = 0.071). As a follow-up to this finding, we analysed samples from these animals, in an attempt to reveal the potential mechanisms driving this adverse effect, focusing on redox homeostasis and bioenergetics. Thirty-eight Wistar rats were divided into four groups: control (n = 10), exercise (n = 9), nicotinamide riboside (n = 10) and exercise plus nicotinamide riboside (n = 9). Nicotinamide riboside was administered for 21 days [300 mg (kg body weight)−1 daily]. At the end of administration, the exercise and the exercise plus nicotinamide riboside groups performed an incremental swimming performance test until exhaustion. Nicotinamide riboside supplementation increased the levels of NADPH in the liver (P = 0.050), increased the levels of F2-isoprostanes in plasma (P = 0.047), decreased the activity of glutathione peroxidase (P = 0.017), glutathione reductase (P < 0.001) and catalase (P = 0.024) in erythrocytes, increased the level of glycogen in the liver (P < 0.001) and decreased the concentration of glucose (P = 0.016) and maximal lactate accumulation in plasma (P = 0.084). These findings support the prevailing idea that exogenously administered redox agents in heathy populations might lead to adverse effects and not necessarily to beneficial or neutral effects. © 2018 The Authors. Experimental Physiology © 2018 The Physiological Societyen
dc.language.isoenen
dc.sourceExperimental Physiologyen
dc.source.urihttps://www.scopus.com/inward/record.uri?eid=2-s2.0-85052809899&doi=10.1113%2fEP086964&partnerID=40&md5=dbcc17123628fbc55a09cdd750b06e6d
dc.subjectcatalaseen
dc.subjectglucoseen
dc.subjectglutathione peroxidaseen
dc.subjectglutathione reductaseen
dc.subjectglycogenen
dc.subjectisoprostane derivativeen
dc.subjectlactic aciden
dc.subjectnad+ cell regeneratoren
dc.subjectnicotinamide adenine dinucleotide adenosine diphosphate ribosyltransferaseen
dc.subjectnicotinamide adenine dinucleotide phosphateen
dc.subjectnicotinamide ribosideen
dc.subjectreduced nicotinamide adenine dinucleotide phosphateen
dc.subjectsirtuinen
dc.subjectcatalaseen
dc.subjectglutathione peroxidaseen
dc.subjectglutathione reductaseen
dc.subjectnicotinamideen
dc.subjectnicotinamide adenine dinucleotideen
dc.subjectnicotinamide-beta-ribosideen
dc.subjectanimal cellen
dc.subjectanimal experimenten
dc.subjectanimal tissueen
dc.subjectArticleen
dc.subjectbioenergyen
dc.subjectbody weighten
dc.subjectcarbohydrate metabolismen
dc.subjectcontrolled studyen
dc.subjectdiet supplementationen
dc.subjectenergy metabolismen
dc.subjectenzyme activityen
dc.subjectenzyme assayen
dc.subjecterythrocyteen
dc.subjectexerciseen
dc.subjectfollow upen
dc.subjectglucose blood levelen
dc.subjectglycogenolysisen
dc.subjecthomeostasisen
dc.subjectnonhumanen
dc.subjectoxidation reduction stateen
dc.subjectprotein expressionen
dc.subjectraten
dc.subjectstudy designen
dc.subjectswimmingen
dc.subjectWistar raten
dc.subjectanalogs and derivativesen
dc.subjectanimalen
dc.subjectdrug effecten
dc.subjectenergy metabolismen
dc.subjectmaleen
dc.subjectmetabolismen
dc.subjectoxidation reduction reactionen
dc.subjectphysiologyen
dc.subjectAnimalsen
dc.subjectCatalaseen
dc.subjectEnergy Metabolismen
dc.subjectErythrocytesen
dc.subjectGlutathione Peroxidaseen
dc.subjectGlutathione Reductaseen
dc.subjectMaleen
dc.subjectNADen
dc.subjectNiacinamideen
dc.subjectOxidation-Reductionen
dc.subjectPhysical Conditioning, Animalen
dc.subjectRatsen
dc.subjectRats, Wistaren
dc.subjectBlackwell Publishing Ltden
dc.titleNicotinamide riboside supplementation dysregulates redox and energy metabolism in rats: Implications for exercise performanceen
dc.typejournalArticleen


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