The primary objective of this proposal is to determine the effects of post-exercise peanut consumption on long-term aerobic and resistance exercise training adaptations in middle-aged men and women. The investigators will determine the impact of peanuts on exercise training-induced improvements in muscle strength, gains in muscle mass, and improvements in cardiorespiratory fitness and metabolic capacity.
Positive health benefits of peanut consumption are well-known, but potential benefits have yet to be discovered, especially in regard to fitness. This project will directly determine the benefits of peanut consumption as part of a long-term aerobic and resistance exercise training program in middle-aged adults. Proper nutrition is necessary for the body to properly recover and adapt to an exercise bout and thereby realize the health benefits of the exercise. The period of time immediately after exercise is even more important in realizing these adaptations. With relatively higher amounts of fats, peanuts are often overlooked as a nutritious, post-exercise snack, because they might not be optimal for athletic performance. However, for a middle-aged adult performing the recommended amount of weekly physical activity, the protein and carbohydrate content of peanuts is sufficient to provide the macronutrients necessary to achieve the beneficial health adaptations associated with exercise training. Other micronutrients and healthy fats in peanuts, might confer further benefits beyond those of other post-exercise supplements, however, this has yet to be elucidated. The randomized, placebo-controlled, clinical trial will provide valuable information on the health benefits of peanut consumption and determine if peanuts can augment beneficial exercise training adaptations in middle-aged adults. The investigators will recruit a group of 48 adults (30-55 years) who do not regularly exercise to undertake a 4-month exercise training program. The program, proven to increase muscle mass and improve cardiorespiratory fitness, will consist of 4 days per week of structured workouts (2/week resistance, 2/week aerobic). Participants will be randomly assigned to consume either a peanut-based snack or an isocaloric, non-peanut carbohydrate-based snack immediately after each exercise session. A comprehensive health and fitness assessment will be conducted before training, after 2-months of training, and after 4-months of training. Measures of cardiorespiratory fitness, muscular fitness, and body composition will be assessed. Anticipated Products \& Potential Outcomes When completed, this study will provide the first evidence of the effect of post-exercise peanut consumption on long-term exercise training adaptations to both aerobic and resistance training in middle-aged adults. This will be the first study to determine the effects of peanut consumption with aerobic exercise training, and the longest study on resistance exercise training and peanut consumption. With the mid-training 2-month timepoint, the investigators will be able to compare our results to those of similar resistance training peanut studies, but importantly follow them for longer, when resistance training adaptations are likely to be more apparent. The investigators hypothesize that the peanut group will experience greater gains in muscle strength and hypertrophy than the placebo group. The investigatorshypothesize that the peanut and placebo group will have similar improvements in cardiorespiratory fitness and body composition (higher total body lean mass leading to relatively lower body fat). This would be an important finding to prove that, despite their higher fat content, peanut consumption does not lead to negative effects on body composition nor prevent cardiorespiratory adaptions due to exercise training. Overall, the results are likely to demonstrate that peanuts are a simple, inexpensive, and effective post-exercise health food capable of further enhancing the beneficial effects of exercise training.
Study Type
INTERVENTIONAL
Allocation
RANDOMIZED
Purpose
TREATMENT
Masking
SINGLE
Enrollment
34
4 day per week concurrent exercise training program
Southwestern University
Georgetown, Texas, United States
Total Lean Mass
Amount of lean mass as determined by dual energy x-ray absorptiometry scan
Time frame: From baseline to the end of the training program at 16 weeks.
Muscle strength
Isometric grip and knee extension strength, as well as dynamic 1-repitition maximum strength of bench press, leg press, overhead press, knee extension
Time frame: From baseline to the end of the training program at 16 weeks.
Cardiorespiratory fitness
Maximal oxygen consumption as determined by graded treadmill test
Time frame: From baseline to the end of the training program at 16 weeks.
This platform is for informational purposes only and does not constitute medical advice. Always consult a qualified healthcare professional.