Effect of age, diet, and tissue type on PCr response to creatine supplementation
Marina Yazigi Solis1, Guilherme Giannini Artioli2,3, Maria Concepción García Otaduy1
1School of Medicine, University of São Paulo, Sao Paulo, Brazil.
Insights
Creatine supplementation effectively increased muscle phosphorylcreatine (PCr) in children and the elderly, with vegetarians showing better responses than omnivores. Brain PCr remained unaffected, highlighting the need for tailored creatine protocols based on age, diet, and tissue.
Area of Science:
- Exercise Physiology
- Nutritional Biochemistry
- Biomedical Imaging
Background:
- Creatine supplementation is popular for enhancing physical performance.
- Individual responses to creatine supplementation, particularly phosphorylcreatine (PCr) levels, can vary.
- Factors like age, dietary habits, and the specific tissue examined may influence PCr responses.
Purpose of the Study:
- To investigate whether PCr responses to creatine supplementation differ based on age, diet, and tissue.
- To compare the efficacy of a standardized creatine supplementation protocol across different demographic and dietary groups.
- To assess the impact of creatine supplementation on PCr levels in both muscle and brain tissues.
Main Methods:
- A single-blind study involving placebo and creatine (0.3 g·kg-1·day-1 for 7 days) administration.
- Phosphorus magnetic resonance spectroscopy (31P-MRS) was used to measure PCr concentrations.
- Participants included children, omnivorous adults, vegetarian adults, and elderly individuals.
Main Results:
- Muscle PCr significantly increased in children and the elderly, but not in omnivorous adults.
- Vegetarians exhibited significant increases in muscle PCr, unlike omnivores.
- Elderly individuals showed greater PCr increases than children and omnivores; children showed greater increases than omnivores.
- Brain PCr levels were not significantly altered by creatine supplementation in any group.
- Muscle PCr increases ranged from +10.3% to +27.6%, while brain PCr changes were minimal (-0.7% to +3.9%).
Conclusions:
- Standardized creatine supplementation protocols elicit variable PCr responses depending on age, diet, and tissue.
- Muscle PCr accumulation is influenced by these factors, with older individuals and vegetarians responding more favorably.
- Brain PCr appears unresponsive to this supplementation protocol, suggesting tissue-specific effects.
- Personalized creatine supplementation strategies are necessary to optimize PCr levels in specific tissues and populations.
Abstract:
Creatine/phosphorylcreatine (PCr) responses to creatine supplementation may be modulated by age, diet, and tissue, but studies assessing this possibility are lacking. Therefore we aimed to determine whether PCr responses vary as a function of age, diet, and tissue. Fifteen children, 17 omnivorous and 14 vegetarian adults, and 18 elderly individuals ("elderly") participated in this study. Participants were given placebo and subsequently creatine (0.3 g·kg-1·day-1) for 7 days in a single-blind fashion. PCr was measured through phosphorus magnetic resonance spectroscopy (31P-MRS) in muscle and brain. Creatine supplementation increased muscle PCr in children (P < 0.0003) and elderly (P < 0.001), whereas the increase in omnivores did not reach statistically significant difference (P = 0.3348). Elderly had greater PCr increases than children and omnivores (P < 0.0001 for both), whereas children experienced greater PCr increases than omnivores (P = 0.0022). In relation to diet, vegetarians (P < 0.0001), but not omnivores, had significant increases in muscle PCr content. Brain PCr content was not affected by creatine supplementation in any group, and delta changes in brain PCr (-0.7 to +3.9%) were inferior to those in muscle PCr content (+10.3 to +27.6%; P < 0.0001 for all comparisons). PCr responses to a standardized creatine protocol (0.3 g·kg-1·day-1 for 7 days) may be affected by age, diet, and tissue. Whereas creatine supplementation was able to increase muscle PCr in all groups, although to different extents, brain PCr was shown to be unresponsive overall. These findings demonstrate the need to tailor creatine protocols to optimize creatine/PCr accumulation both in muscle and in brain, enabling a better appreciation of the pleiotropic properties of creatine.NEW & NOTEWORTHY A standardized creatine supplementation protocol (0.3 g·kg-1·day-1 for 7 days) effectively increased muscle, but not brain, phosphorylcreatine. Older participants responded better than younger participants whereas vegetarians responded better than omnivores. Responses to supplementation are thus dependent on age, tissue, and diet. This suggests that a single "universal" protocol, originally designed for increasing muscle creatine in young individuals, may lead to heterogeneous muscle responses in different populations or even no responses in tissues other than skeletal muscle.
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