Demo-Umgebung · Gesundheitsdaten sind synthetisch · Studien und laufende Trials sind echt (Europe PMC · ClinicalTrials.gov)
VITA LONGA Longevity Intelligence
Anmelden
Küchentisch im Morgengrauen mit Linsen-Kichererbsen-Schale, Wasserglas und weißem Pulver, daneben eine noch brennende Lampe

Deep Dive: Kreatin jenseits der Muskulatur

Kognition, Schlafentzug und warum die Dosis dort möglicherweise höher liegt.

Das Gehirn nutzt Kreatin als Energiepuffer, ähnlich wie Muskulatur. Daraus ergibt sich die Hypothese kognitiver Effekte, vor allem unter Belastungsbedingungen wie Schlafentzug oder mentaler Ermüdung.

Plus

Weiterlesen mit Plus

Der Rest dieses Beitrags gehört zum Plus-Paket für 9,90 € im Monat. Darin enthalten sind 76 weitere Beiträge, alle Programme und Webinare zum Mitgliederpreis.

Jederzeit kündbar. Die Kernaussagen unten bleiben frei lesbar.

Kernaussagen — auch ohne Abo

  • Kognitive Effekte am ehesten unter Schlafentzug und bei vegetarischer Kost.
  • Blut-Hirn-Schranke erfordert vermutlich höhere Dosen als 3–5 g.
  • Muskuläre Evidenz stark, kognitive Evidenz noch vorläufig.

Mehr zum Thema

Vertiefen Wie groß ist der Effekt von Kreatin auf das Gedächtnis wirklich? Die Meta-Analyse zeigt einen kleinen, mäßig gesicherten Effekt, mit Rechenbeispiel. · 3 Min. Nächster Schritt Wie viel Kreatin sollte ich nehmen – und für wen ist es nichts? Praktisch erklärt: Dosierung, Einnahme und wem von Kreatin abzuraten ist. · 3 Min. Querverbindung Welcher Omega-3-Index ist das Ziel und wann sollte ich nachmessen? Zielbereich, Zeitpunkt der nächsten Messung und welche Präparatform gut aufgenommen wird. · 3 Min.

Belege (5)

Open-Access-Publikationen mit offener Lizenz, direkt verlinkt.

The effects of creatine supplementation on cognitive function in adults: a systematic review and meta-analysis

●●●●● Frontiers in nutrition·2024· 21 Zitationen· cc by Original ↗
Abstract

<h4>Background</h4>This study aimed to evaluate the effects of creatine monohydrate supplementation on cognitive function in adults and explore its potential role in preventing and delaying cognitive impairment-related diseases.<h4>Methods</h4>Following the PRISMA 2020 guidelines, a systematic review with meta-analysis was conducted. Randomized controlled trials (RCTs) published between 1993 and 2024 were retrieved from PubMed, Scopus, and Web of Science databases. The study protocol was registered with PROSPERO (registration number: CRD42024533557). The impact of creatine supplementation on overall cognitive function, memory, executive function, attention, and information processing speed was assessed using standardized mean differences (SMD) and Hedge's g with 95% confidence intervals (CI).<h4>Results</h4>Sixteen RCTs involving 492 participants aged 20.8-76.4 years, including healthy individuals and patients with specific diseases, were selected. Creatine monohydrate was the form used in all included studies. Creatine supplementation showed significant positive effects on memory (SMD = 0.31, 95% CI: 0.18-0.44, Hedges's <i>g</i> = 0.3003, 95% CI: 0.1778-0.4228) and attention time (SMD = -0.31, 95% CI: -0.58 to -0.03, Hedges's <i>g</i> = -0.3004, 95% CI: -0.5719 to -0.0289), as well as significantly improving processing speed time (SMD = -0.51, 95% CI: -1.01 to -0.01, Hedges's <i>g</i> = -0.4916, 95% CI: -0.7852 to -0.1980). However, no significant improvements were found on

The effects of creatine supplementation on cognitive performance-a randomised controlled study

●●●●○ BMC medicine·2023· 16 Zitationen· cc by Original ↗
Abstract

<h4>Background</h4>Creatine is an organic compound that facilitates the recycling of energy-providing adenosine triphosphate (ATP) in muscle and brain tissue. It is a safe, well-studied supplement for strength training. Previous studies have shown that supplementation increases brain creatine levels, which might increase cognitive performance. The results of studies that have tested cognitive performance differ greatly, possibly due to different populations, supplementation regimens, and cognitive tasks. This is the largest study on the effect of creatine supplementation on cognitive performance to date.<h4>Methods</h4>Our trial was preregistered, cross-over, double-blind, placebo-controlled, and randomised, with daily supplementation of 5 g for 6 weeks each. We tested participants on Raven's Advanced Progressive Matrices (RAPM) and on the Backward Digit Span (BDS). In addition, we included eight exploratory cognitive tests. About half of our 123 participants were vegetarians and half were omnivores.<h4>Results</h4>Bayesian evidence supported a small beneficial effect of creatine. The creatine effect bordered significance for BDS (p = 0.064, η<sup>2</sup><sub>P</sub> = 0.029) but not RAPM (p = 0.327, η<sup>2</sup><sub>P</sub> = 0.008). There was no indication that creatine improved the performance of our exploratory cognitive tasks. Side effects were reported significantly more often for creatine than for placebo supplementation (p = 0.002, RR = 4.25). Vegetarians did not ben

Impact of Short-Term Creatine Supplementation on Muscular Performance among Breast Cancer Survivors

●●●●○ Nutrients·2024· 5 Zitationen· cc by Original ↗
Abstract

Breast cancer (BC) is one of the most common cancers in the United States. Advances in detection and treatment have resulted in an increased survival rate, meaning an increasing population experiencing declines in muscle mass and strength. Creatine supplementation has consistently demonstrated improvements in strength and muscle performance in older adults, though these findings have not been extended to cancer populations.<h4>Purpose</h4>The purpose of this study was to investigate the effects of short-term creatine supplementation on muscular performance in BC survivors.<h4>Methods</h4>Using a double-blind, placebo-controlled, randomized design, 19 female BC survivors (mean ± SD age = 57.63 ± 10.77 years) were assigned to creatine (SUPP) (<i>n</i> = 9) or dextrose placebo (PLA) (<i>n</i> = 10) groups. The participants completed two familiarization sessions, then two test sessions, each separated by 7 days, where the participants supplemented with 5 g of SUPP or PLA 4 times/day between sessions. The testing sessions included sit-to-stand power, isometric/isokinetic peak torque, and upper/lower body strength via 10 repetition maximum (10RM) tests. The interaction between supplement (SUPP vs. PLA) and time (Pre vs. Post) was examined using a group × time ANOVA and effect sizes.<h4>Results</h4>No significant effects were observed for sit-to-stand power (<i>p</i> = 0.471; η<sub>p</sub><sup>2</sup> = 0.031), peak torque at 60°/second (<i>p</i> = 0.533; η<sub>p</sub><sup>2</sup> =

Creatine monohydrate supplementation for older adults and clinical populations

●●●○○ Journal of the International Society of Sports Nutrition·2025· 16 Zitationen· cc by Original ↗
Abstract

<h4>Background</h4>The biological process of aging is typically associated with a decrease in muscle quantity, muscle performance (primarily strength), bone mass and architecture, functionality and neurological/cognitive function. From a healthy aging perspective, interventions that have the potential to overcome or attenuate these decrements are clinically relevant.<h4>Methods</h4>We conducted a narrative review on the efficacy of creatine monohydrate supplementation (CrM) in older adults.<h4>Results</h4>Accumulating research shows that CrM, primarily when combined with exercise training, is safe and has beneficial effects on measures of whole-body lean body mass, regional muscle size, muscle strength, bone area and thickness, functional ability, glucose kinetics, cognition and memory.<h4>Conclusion</h4>CrM has multiple benefits in older adults and may have application for treating age-related sarcopenia, osteoporosis, frailty, and those with metabolic and neuromuscular disorders.

Part II. Common questions and misconceptions about creatine supplementation: what does the scientific evidence really show?

●●●○○ Journal of the International Society of Sports Nutrition·2025· 13 Zitationen· cc by Original ↗
Abstract

Creatine monohydrate supplementation (CrM) is a safe and effective intervention for improving certain aspects of sport, exercise performance, and health across the lifespan. Despite its evidence-based pedigree, several questions and misconceptions about CrM remain. To initially address some of these concerns, our group published a narrative review in 2021 discussing the scientific evidence as to whether CrM leads to water retention and fat accumulation, is a steroid, causes hair loss, dehydration or muscle cramping, adversely affects renal and liver function, and if CrM is safe and/or effective for children, adolescents, biological females, and older adults. As a follow-up, the purpose of this paper is to evaluate additional questions and misconceptions about CrM. These include but are not limited to: 1. Can CrM provide muscle benefits without exercise? 2. Does the timing of CrM really matter? 3. Does the addition of other compounds with CrM enhance its effectiveness? 4. Does CrM and caffeine oppose each other? 5. Does CrM increase the rates of muscle protein synthesis or breakdown? 6. Is CrM an anti-inflammatory intervention? 7. Can CrM increase recovery following injury, surgery, and/or immobilization? 8. Does CrM cause cancer? 9. Will CrM increase urine production? 10. Does CrM influence blood pressure? 11. Is CrM safe to consume during pregnancy? 12. Does CrM enhance performance in adolescents? 13. Does CrM adversely affect male fertility? 14. Does the brain require a hig

Quellen aus Europe PMC, ausschließlich CC0, CC BY oder CC BY-SA. Der redaktionelle Text ist eine eigene Formulierung, keine Übernahme aus den Originalarbeiten.

Medizinische Prüfung: Dr. med. Anna Reuter, Fachärztin für Innere Medizin, 27. März 2026.