Randomized controlled trial2015

Creatine supplementation enhances corticomotor excitability and cognitive performance during oxygen deprivation

Turner CE, Byblow WD, Gant N

The Journal of neuroscience : the official journal of the Society for Neuroscience · 92 citations

Review labels

Funding not disclosed

Neutral facts our review recorded about how this study was done. They describe method, never whether we like the result.

How it was studied

Design
Randomized controlled trial (indexed by PubMed)
Studied in
People
Main outcome
Health markers and function

Who paid for it

Funding
Funding not disclosed

Publication

Published
2015-01-28 · J Neurosci · vol. 35 · issue 4 · pp. 1773–1780
Publisher
Society for Neuroscience
Cited
161 citations · more than 96% of similar papers · 4.8× the field average
Impact
Top 10% most cited in its field
References
51 works
Access
Open access (hybrid journal) · CC-BY-NC-SA
Research areas
Muscle metabolism and nutrition · Genetic Neurodegenerative Diseases · Advanced MRI Techniques and Applications
Keywords
Creatine, Neuroprotection, Creatine Monohydrate, Phosphocreatine, Hypoxia (environmental), Medicine, Placebo, Neuropsychology, Internal medicine, Anesthesia, Neuroscience, Endocrinology, Psychology, Oxygen, Cognition, Chemistry, Energy metabolism, Pathology
MeSH
motor cortex, ulnar nerve, humans, creatine, aspartic acid, neuroprotective agents, cognition disorders, neuropsychological tests, evoked potentials, motor, blood pressure, heart rate, neural conduction, dietary supplements, adult, middle aged, female, male, transcranial magnetic stimulation, young adult, hypoxia

3 authors

From NZ

  • Clare E. Turner
  • Winston D. ByblowUniversity of Auckland; Brain Research New Zealand
  • Nicholas Gant

Abstract

Impairment or interruption of oxygen supply compromises brain function and plays a role in neurological and neurodegenerative conditions. Creatine is a naturally occurring compound involved in the buffering, transport, and regulation of cellular energy, with the potential to replenish cellular adenosine triphosphate without oxygen. Creatine is also neuroprotective in vitro against anoxic/hypoxic damage. Dietary creatine supplementation has been associated with improved symptoms in neurological disorders defined by impaired neural energy provision. Here we investigate, for the first time in humans, the utility of creatine as a dietary supplement to protect against energetic insult. The aim of this study was to assess the influence of oral creatine supplementation on the neurophysiological and neuropsychological function of healthy young adults during acute oxygen deprivation. Fifteen healthy adults were supplemented with creatine and placebo treatments for 7 d, which increased brain creatine on average by 9.2%. A hypoxic gas mixture (10% oxygen) was administered for 90 min, causing global oxygen deficit and impairing a range of neuropsychological processes. Hypoxia-induced decrements in cognitive performance, specifically attentional capacity, were restored when participants were creatine supplemented, and corticomotor excitability increased. A neuromodulatory effect of creatine via increased energy availability is presumed to be a contributing factor of the restoration, perhaps by supporting the maintenance of appropriate neuronal membrane potentials. Dietary creatine monohydrate supplementation augments neural creatine, increases corticomotor excitability, and prevents the decline in attention that occurs during severe oxygen deficit. This is the first demonstration of creatine's utility as a neuroprotective supplement when cellular energy provision is compromised.

Abstract via Europe PMC. Copyright remains with the authors or publisher (CC BY-NC-SA).

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