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ABSTRACT PHYSCIAL ACTIVITY AND EXECUTIVE FUNCTIONING IN COLLEGE STUDENTS INTRODUCTION: Regular physical activity may increase neurological development, which has been shown to increase cognitive functioning in older adults and those with dementia. Studies have also shown physical activity and exercise may positively affect executive functioning in children. Little is known

ABSTRACT PHYSCIAL ACTIVITY AND EXECUTIVE FUNCTIONING IN COLLEGE STUDENTS INTRODUCTION: Regular physical activity may increase neurological development, which has been shown to increase cognitive functioning in older adults and those with dementia. Studies have also shown physical activity and exercise may positively affect executive functioning in children. Little is known about the influence of physical activity on executive functioning in college students between the ages of 18-21 years, a population that is traditionally thought of as healthy. Therefore, the purpose of this study is to explore the association between physical activity and executive functioning in college-aged students. We hypothesize that regular physical activity is positively associated with executive functioning scores and that this association is independent of adiposity. METHODS: Twenty males and 29 females (19.5 ± 0.1 yrs. old) participated in this study. Physical activity was assessed using the International Physical Activity Questionnaire (IPAQ). Executive function was assessed by Stroop Color and Word Association Test (Stroop) and Trail Making Test A & B. A verbal ability test (analogies, synonyms, antonyms) was given in order to control for intelligence. Body composition was determined by a Tanita TBF-300 Body Composition Analyzer. RESULTS: Partial correlations between physical activity/inactivity measures and measures of executive functioning were generally small (r-values ≤ 0.2) and not significant. However, there was a significant inverse correlation between log moderate physical activity minutes per week and Stroop interference scores (r=0.50, p=0.01). Also, a trend towards significance was noted for the correlation between sitting minutes per week and Stroop interference scores (r=0.4 p=0.08) CONCLUSION: These results suggest that in college students, moderate physical activity is inversely associated with executive functioning while sitting time may be positively associated with executive functioning. These findings are in contrast to previous studies in children and older adults, and may indicate a unique relationship between physical activity/inactivity and executive functioning in college students. Future studies to further examine this population in greater depth are warranted.
ContributorsBurks, Hillary (Author) / Shaibi, Gabriel (Thesis advisor) / Swan, Pamela (Committee member) / Limbers, Christine (Committee member) / Arizona State University (Publisher)
Created2012
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Obesity impairs skeletal muscle maintenance and regeneration, a condition that can progressively lead to muscle loss, but the mechanisms behind it are unknown. Muscle is primarily composed of multinucleated cells called myotubes which are derived by the fusion of mononucleated myocytes. A key mediator in this process is the cellular

Obesity impairs skeletal muscle maintenance and regeneration, a condition that can progressively lead to muscle loss, but the mechanisms behind it are unknown. Muscle is primarily composed of multinucleated cells called myotubes which are derived by the fusion of mononucleated myocytes. A key mediator in this process is the cellular fusion protein syncytin-1. This led to the hypothesis that syncytin-1 could be decreased in the muscle of obese/insulin resistant individuals. In contrast, it was found that obese/insulin resistant subjects had higher syncytin-1 expression in the muscle compared to that of the lean subjects. Across the subjects, syncytin-1 correlated significantly with body mass index, percent body fat, blood glucose and HbA1c levels, insulin sensitivity and muscle protein fractional synthesis rate. The concentrations of specific plasma fatty acids, such as the saturated fatty acid (palmitate) and monounsaturated fatty acid (oleate) are known to be altered in obese/insulin resistant humans, and also to influence the protein synthesis in muscle. Therefore, it was evaluated that the effects of palmitate and oleate on syncytin-1 expression, as well as 4E-BP1 phosphorylation, a key mechanism regulating muscle protein synthesis in insulin stimulated C2C12 myotubes. The results showed that treatment with 20 nM insulin, 300 µM oleate, 300 µM oleate +20 nM insulin and 300 µM palmitate + 300 µM oleate elevated 4E-BP1 phosphorylation. At the same time, 20 nM insulin, 300 µM palmitate, 300 µM oleate + 20 nM insulin and 300 µM palmitate + 300 µM oleate elevated syncytin-1 expression. Insulin stimulated muscle syncytin-1 expression and 4E-BP1 phosphorylation, and this effect was comparable to that observed in the presence of oleate alone. However, the presence of palmitate + oleate diminished the stimulatory effect of insulin on muscle syncytin-1 expression and 4E-BP1 phosphorylation. These findings indicate oleate but not palmitate increased total 4E-BP1 phosphorylation regardless of insulin and the presence of palmitate in insulin mediated C2C12 cells. The presence of palmitate inhibited the upregulation of total 4EB-P1 phosphorylation. Palmitate but not oleate increased syncytin-1 expression in insulin mediated C2C12 myotubes. It is possible that chronic hyperinsulinemia in obesity and/or elevated levels of fatty acids such as palmitate in plasma could have contributed to syncytin-1 overexpression and decreased muscle protein fractional synthesis rate in obese/insulin resistant human muscle.
ContributorsRavichandran, Jayachandran (Author) / Katsanos, Christos (Thesis advisor) / Coletta, Dawn (Committee member) / Dickinson, Jared (Committee member) / Arizona State University (Publisher)
Created2017