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.
Study Type
INTERVENTIONAL
Allocation
NON_RANDOMIZED
Purpose
TREATMENT
Masking
SINGLE
Enrollment
26
The multivitamin supplement (Multicentrum® (Pfizer, Spain) 1 tablet/day) will be maintained during 2 months
Universidad de Granada
Granada, Spain
Gene expression analysis
112 genes using RT-qPCR analysis with the QuantStudioTM 12K Flex Real-Time PCR System. Relative quantification was determined using the 2-ΔCT method. Cut-off punctuation was established as 1.5.
Time frame: 6 months
Anthropometric assessment - Height
Anthropometric assessment recorded data were height in centimetres (SECA® Model 274).
Time frame: 6 months
Anthropometric assessment - Weight
Anthropometric assessment recorded data were weight in kilograms (Tanita MC-980 Body Composition Analyzer MA Multifrequency Segmental, Barcelona, Spain).
Time frame: 6 months
Anthropometric assessment - BMI
Anthropometric assessment recorded data BMI was calculated calculated as weight/height\^2 and expressed kg/m2 equation.
Time frame: 6 months
Anthropometric assessment - Fat percentage
Anthropometric assessment recorded data BMI was measured by multifrequency bioelectrical impedance (Tanita MC-980 Body Composition Analyzer MA Multifrequency Segmental, Barcelona, Spain) and expressed in kilograms and as the percentage of body fat. Participants were informed in advance of the required conditions prior to the measurement: no alcohol less than 24 hours before the measurement, no vigorous exercise less than 12 hours prior to the measurement, no food or drink less than 3 hours prior to the measurement, and no urination immediately before the measurement. All measurements were taken simultaneously during the morning in fasting conditions.
Time frame: 6 months
Anthropometric assessment - Fat free mass
Anthropometric assessment recorded data fat free mass was measured by multifrequency bioelectrical impedance (Tanita MC-980 Body Composition Analyzer MA Multifrequency Segmental, Barcelona, Spain) and expressed in kilograms and as the percentage of fat-free mass. Participants were informed in advance of the required conditions prior to the measurement: no alcohol less than 24 hours before the measurement, no vigorous exercise less than 12 hours prior to the measurement, no food or drink less than 3 hours prior to the measurement, and no urination immediately before the measurement. All measurements were taken simultaneously during the morning in fasting conditions.
Time frame: 6 months
Anthropometric assessment - Muscle mass
Anthropometric assessment recorded data muscle mass was measured by multifrequency bioelectrical impedance (Tanita MC-980 Body Composition Analyzer MA Multifrequency Segmental, Barcelona, Spain) and expressed in kilograms. Participants were informed in advance of the required conditions prior to the measurement: no alcohol less than 24 hours before the measurement, no vigorous exercise less than 12 hours prior to the measurement, no food or drink less than 3 hours prior to the measurement, and no urination immediately before the measurement. All measurements were taken simultaneously during the morning in fasting conditions.
Time frame: 6 months
Biochemical parameters - Glucose
Biochemistry was performed after 12 hours of fasting first thing in the morning, by specialists puncturing the cubital vena cava (Venoject®). Glucose was measured and expressed in mg/dL. The reference value is established in 70 - 110 mg/dL.
Time frame: At baseline
Biochemical parameters - Creatinine
Biochemistry was performed after 12 hours of fasting first thing in the morning, by specialists puncturing the cubital vena cava (Venoject®). Creatinine was measured and expressed in mg/dL. The reference value is established in 0.5 - 0.9 mg/dL.
Time frame: At baseline
Biochemical parameters - Urea
Biochemistry was performed after 12 hours of fasting first thing in the morning, by specialists puncturing the cubital vena cava (Venoject®). Urea was measured and expressed in mg/dL. The reference value is established in 10 - 50 mg/dL.
Time frame: At baseline
Biochemical parameters - Uric acid
Biochemistry was performed after 12 hours of fasting first thing in the morning, by specialists puncturing the cubital vena cava (Venoject®). Uric acid was measured and expressed in mg/dL. The reference value is established in 2.4 - 5.7 mg/dL.
Time frame: At baseline
Biochemical parameters - Triglycerides
Biochemistry was performed after 12 hours of fasting first thing in the morning, by specialists puncturing the cubital vena cava (Venoject®). Triglycerides acid was measured and expressed in mg/dL. The reference value is established in 50 - 200 mg/dL. total cholesterol (mg/dL), total proteins (g/dL), transferrin (mg/dL) and albumin (mg/dL).
Time frame: At baseline
Biochemical parameters - Total cholesterol
Biochemistry was performed after 12 hours of fasting first thing in the morning, by specialists puncturing the cubital vena cava (Venoject®). Total cholesterol was measured and expressed in mg/dL. The reference value is established in 110 - 200 mg/dL.
Time frame: At baseline
Biochemical parameters - Total proteins
Biochemistry was performed after 12 hours of fasting first thing in the morning, by specialists puncturing the cubital vena cava (Venoject®). Total proteins were measured and expressed in mg/dL. The reference value is established in 6.6 - 8.7 g/dL.
Time frame: At baseline
Biochemical parameters - Transferrin
Biochemistry was performed after 12 hours of fasting first thing in the morning, by specialists puncturing the cubital vena cava (Venoject®). Transferrin was measured and expressed in mg/dL. The reference value is established in 200 - 360 mg/dL.
Time frame: At baseline
Biochemical parameters - Albumin
Biochemistry was performed after 12 hours of fasting first thing in the morning, by specialists puncturing the cubital vena cava (Venoject®). Albumin was measured and expressed in mg/dL. The reference value is established in 3.5 - 5.2 mg/dL.
Time frame: At baseline
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