Study2023Not in humans

Creatine Activity as a Neuromodulator in the Central Nervous System

Meftahi GH, Hatef B, Pirzad Jahromi G

Archives of Razi Institute · 14 citations

How it was studied

Design
Systematic review (classified by our AI screen)
Studied in
People, plus animal or lab work
Main outcome
Health markers and function

Who paid for it

Funding
Independent funding
University or hospital
Baqiyatallah University of Medical Sciences

Based on 1 listed funder(s).

Publication

Published
2023-07-24 · Arch Razi Inst · vol. 78 · issue 4 · pp. 1169–1175
Publisher
Razi Vaccine and Serum Research Institute
Cited
18 citations · more than 89% of similar papers · 2.3× the field average
References
55 works
Access
Open access (free to publish) · CC-BY
Research areas
Muscle metabolism and nutrition · Attention Deficit Hyperactivity Disorder · Diet and metabolism studies
Keywords
Creatine, Neuroprotection, Neuroscience, Phosphocreatine, Central nervous system, Creatine kinase, Medicine, Psychology, Internal medicine, Energy metabolism
MeSH
central nervous system, animals, creatine, neurotransmitter agents, neuroprotective agents, cognition

3 authors

From IR

  • Gholam Hossein MeftahiBaqiyatallah University of Medical Sciences
  • Boshra HatefBaqiyatallah University of Medical Sciences
  • Gila Pirzad JahromiBaqiyatallah University of Medical Sciences

Abstract

Creatine is a nutritional compound that potentially influences cognitive processing and neuroprotection. Recent evidence has demonstrated that similar to neurotransmitters, creatine is released in an excitotoxic and action potential-dependent manner and acts as a neuromodulator. Creatine deficiency syndromes are characterized by severe mental and developmental disorders. Studies have reported that brain creatine content could be enhanced with creatine supplementation. Nevertheless, there is still limited knowledge about the effects of creatine on the central nervous system. However, ample evidence has proved the neuroprotective effects of creatine on various mental aspects, such as cognition, memory skills, and spatial memory. The present review aimed to review available experimental data and clinical observations confirming creatine roles in the central transmission process. A systematic search in the literature was performed in PubMed, Scopus, Embase, Cochrane Library, Web of Science, and Google Scholar database using all available MeSH terms for Creatine, Phosphocreatine, Bioenergetics, Nervous system, Brain, Cognition, and Neuroprotection. Electronic database searches were combined and duplicates were removed. Here, first, creatine and its potential influence on cognitive health and performance were briefly reviewed. Next, the existing experimental and clinical evidence was specifically explored to understand how creatine could interact as a neurotransmitter in the nervous system. Studies have revealed that exogenous creatine supplementation decreases neuronal cell loss in experimental paradigms of neurological diseases. It was observed that creatine could interact with the N-methyl-D-aspartate receptor, Na+-K+-ATPase enzyme, GABAA receptor, serotonin 1A receptors, and presumably α1-adrenoceptor and play critical roles in the central transmission process which implies that creatine can be considered a neuromodulator.

Abstract via Europe PMC. Copyright remains with the authors or publisher.

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