Athlete Clinical Trial
Official title:
Gene Expression in Nutritional Intervened Athletes
Background: Exercise represents an important challenge for the homeostasis of the entire body that occurs on a cellular and systemic level in which micronutrients play an important role in regulating the processes that sustain athletic performance. Objective: The investigators measured changes in gene expression of whole blood in a group of athletes and sedentary participants and compared gene modulation before and after nutritional intervention with micronutrients. Methods: Blood samples were taken from thirteen athletes and thirteen sedentary age- and gender-matched participants. The study design was carried out over a period of 4 months where three time points were established: (T0) baseline conditions in the sedentary and athlete groups; (T2) after two months of supplementation; (T4) after two months in the absence of nutritional supplementation. Differential gene expression was evaluated in 112 genes using RT-qPCR analysis with the QuantStudioTM 12K Flex Real-Time PCR System.
Background: Exercise represents an important challenge for the homeostasis of the entire body that occurs on a cellular and systemic level in which micronutrients play an important role in regulating the processes that sustain athletic performance. Objective: The investigators measured changes in gene expression of whole blood in elite athletes and sedentary subjects and compared gene modulation before and after nutritional intervention with micronutrients. Methods: Thirteen elite athletes and thirteen sedentary controls were enrolled in the present study. Blood samples were taken from athletes and sedentary age- and gender-matched subjects. The study design was carried out over a period of 4 months where three time points were established: (T0) baseline conditions in the sedentary and handball groups; (T2) after two months of supplementation; (T4) after two months in the absence of nutritional supplementation. Differential gene expression was evaluated in 112 genes using RT-qPCR analysis with the QuantStudioTM 12K Flex Real-Time PCR System. ;
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