Sex-Difference in Response to Resistance Exercise and Training Given the importance of muscular strength for athletic performance as well as for daily activities in the general population-including clinical populations-and the lack of data in both men and women, the aim of this study is to compare neuromuscular, intramuscular, and systemic adaptations in men and women in response to both acute and chronic resistance exercise. Specifically, the investigators will test the hypotheses that: the neuromuscular response to resistance exercise, including corticospinal excitability and motor unit activation patterns, differs between men and women; the hormonal response and exosome release following resistance exercise are reduced in women compared to men. Participants (n = 15 per group) will follow a supervised resistance training program for 8 weeks. Neuromuscular function of the knee extensor muscles, body composition, intramuscular adaptations, as well as blood profiles (hormonal and metabolic) and exosomes will be assessed before and after a single resistance exercise session and after the training period. This protocol will allow determination of both the acute and long-term effects of resistance exercise. Women's participation in sports is increasing, yet research in this area remains very limited. This project aims to better understand the mechanisms by which resistance training-a non-pharmacological and low-cost strategy-may induce different adaptations in men and women, and, where appropriate, to contribute to the development of sex-specific recommendations to maximize the health benefits of resistance training.
Study Type
INTERVENTIONAL
Allocation
NON_RANDOMIZED
Purpose
BASIC_SCIENCE
Masking
NONE
Enrollment
30
Supervised resistance exercise consisting exclusively of knee extension exercise on a leg extension machine. Acute exercise included 6 sets of 10 repetitions at 80% of one-repetition maximum (1RM).
Supervised resistance training consisting exclusively of knee extension exercise on a leg extension machine. Chronic exercise included 6 sets of 10 repetitions at 80% of one-repetition maximum (1RM). The program was carried out over 8 weeks (3x/week).
Blood samples were taken from the antecubital vein before and immediately after an acute resistance exercise session, and after the chronic resistance training period.
Biopsy were taken in the vastus lateralis before and immediately after an acute resistance exercise session, and after the chronic resistance training period.
Body composition analysis using dual-energy X-ray absorptiometry (DXA) before and after the chronic resistance training period.
One repetition maximum (1-RM) assessment before, after 4 weeks of training and at the end the chronic resistance training period.
Muscle thickness of the vastus lateralis assessed by ultrasonography before and after the chronic resistance training period.
Faculté des sciences de la motricité, Pl. Pierre de Coubertin 1
Louvain-la-Neuve, Belgium
Sex differences in protein expression of muscle mass regulation pathways assessed by western blot
Assessment of protein of expression muscle mass regulation pathways after acute exercise and chronic exercise using western blot (ratio of target protein to reference protein)
Time frame: Throughout the entire study, during approximately 11 months
Sex differences in mRNA levels in muscle mass regulation pathways assessed by RT-qPCR
Assessment of mRNA levels of muscle mass regulation pathways after acute exercise and chronic exercise usin RT-qPCR (fold change).
Time frame: Throughout the entire study, during approximately 11 months
Sex differences in metabolic status assessed by blood biomarkers
Assessment of metabolic blood parameters before and after acute exercise and chronic resistance training.
Time frame: Throughout the entire study, during approximately 11 months
Sex differences in hormonal status assessed by blood biomarkers
Assessment of hormonal blood parameters before and after acute exercise and chronic resistance training.
Time frame: Throughout the entire study, during approximately 11 months
Sex differences in extracellular vesicles regulation assessed by nanoparticle tracking analysis
Assessment of the concentration and size of circulating extracellular vesicles after acute exercise and chronic exercise using nanoparticle tracking analysis.
Time frame: Throughout the entire study, during approximately 11 months
Sex differences in extracellular vesicles regulation assessed by proteomic analysis
Assessment of protein expression of circulating extracellular vesicles after acute exercise and chronic exercise using proteomic analysis
Time frame: Throughout the entire study, during approximately 11 months
Sex differences in body composition assessed by dual-energy X-ray absorptiometry (DXA)
Comparison of fat mass and lean mass between men and women before and after the chronic resistance training.
Time frame: Throughout the entire study, during approximately 11 months
Sex differences in muscle thickness of the vastus lateralis assessed by ultrasonography
Comparison of vastus lateralis muscle thickness between men and women before and after the chronic resistance training.
Time frame: Throughout the entire study, during approximately 11 months
Sex differences in strength evolution assessed by one-repetition maximum (1-RM)
Comparison of maximal strength evolution between men and women before and after the chronic resistance training.
Time frame: Throughout the entire study, during approximately 11 months
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