Rocky Mountain Regional VA Medical Center, Aurora, CO
Aurora, Colorado, 80045-7211, United States
NCT Number: NCT05029128
Exercise is essential for building and maintaining bone mass and strength, but current exercise recommendations for how to achieve this lack detail on the optimal exercise prescription. Recent studies found that blood calcium level decreases during exercise, and that calcium is mobilized from bone to slow the decline. If this occurs repeatedly during exercise training, it could diminish the potential benefits of exercise to improve bone health. The proposed study will determine whether further research on pre-exercise supplemental calcium to minimize the decline in blood calcium level during exercise is warranted. This research is important for Veterans because they are at increased risk of hip fracture when compared with non-Veterans. Further, because osteoporosis in men is under-recognized and under-treated, providing male (and female) Veterans with more specific exercise and nutrition guidelines has the potential to enhance bone health, reduce fracture risk, and improve quality of life.
Looking for future studies?
Notify Me25 year–75 year
All sexes
Interventional
Not applicable
Aurora, Colorado, 80045-7211, United States
Exercise is essential for building and maintaining bone mass and strength, but recent work has raised the possibility that current exercise recommendations for bone health may not be appropriate. There is strong evidence that a single bout of vigorous exercise has an acute catabolic effect in bone (i.e., increased resorption) that lasts several hours. This is mediated by a decrease in serum calcium (Ca) during exercise, which stimulates parathyroid hormone (PTH) secretion. PTH then activates bone resorption to mobilize Ca from bone, presumably to prevent the decrease in serum Ca from progressing to a harmful level. This cascade of events can be markedly attenuated by minimizing the decline in serum Ca during exercise via either intravenous or oral Ca administration. The timing of Ca supplementation relative to exercise is likely important, because it must be available for gut absorption during exercise. Interestingly, repeated pharmacologic stimulation of the PTH receptor with PTH analogs (teriparatide, abaloparatide) has anabolic effects on bone, suggesting that repeated exercise-induced increases in PTH could have a chronic anabolic skeletal effect, in addition to the acute catabolic effect, which may be apparent only after repeated exercise sessions. If this is the case, suppressing the PTH response with pre-exercise Ca supplementation may not be appropriate. In this context, this proof-of-concept study will include a short exercise intervention consisting of treadmill exercise at 70% to 80% of maximal heart rate, 60 minutes per day, 4 days per week, for 4 weeks. Serum markers of bone formation and resorption will be measured before, during, and for 24 hours after the 1st, 8th, and 16th exercise sessions to address two questions: 1) Does the acute catabolic response of bone to a single bout of exercise continue to occur with repeated exercise sessions (i.e., exercise training)? 2) Does exercise training also generate an anabolic PTH-mediated bone response, similar to the anabolic response to PTH analog therapy? If the answers to questions 1 and 2 are YES (persistent catabolic signal) and NO (lack of anabolic signal), this will support the need for the randomized controlled trial (RCT), which will evaluate whether taking Ca before exercise to attenuate the acute catabolic response improves skeletal adaptations to exercise training. The overarching goal is to improve the currently imprecise recommendations for exercise to improve and maintain bone health. This research is of high relevance to Veterans, who are at increased risk of hip fracture when compared with non-Veterans. Further, because osteoporosis in men is under-recognized, under-diagnosed, and under-treated, providing male Veterans with an effective non-pharmacologic therapeutic option to reduce fracture risk may help close this treatment gap. The potential impact of this research also extends beyond Veterans. It could lead to reduced risk of exercise-related bone injury (i.e., stress fractures) in active duty military personnel and athletes and to improved bone health in the general population.
Healthy volunteers accepted: Yes
Only the study team can determine whether someone qualifies for participation.
Inclusion criteria
Female and male Veterans aged 25 to 45 y and 55 to 75 y will be enrolled. Eligible volunteers will be normally active (e.g., recreational cycling or walking) but will not participate in regular moderate-to-vigorous exercise. Women will be premenopausal with regular menstrual cycles or postmenopausal, defined as absence of menses for at least 12 mo or, in those who underwent a hysterectomy, a serum follicle stimulating hormone (FSH) >30 mIU/mL.
Exclusion criteria
All participants engage in treadmill walking 4 days/week, 60 minutes/day, at 70-80% of HRmax for 4 weeks.
Time frame: The primary outcome for Aim 1 is the change in CTX from immediately before exercise to 60 minutes after exercise during the 1st, 8th, and 16th exercise bout. Results are for each exercise bout and for the average of all the bouts combined.
CTX is a marker of bone resorption. An increase in CTX in response to exercise is evidence of an acute catabolic response of bone.
Time frame: The primary outcome for Aim 2 is the change in the pre-exercise P1NP (15 minutes before exercise) between the 1st and the 16th exercise bout (comparison of 2 time points).
P1NP is a marker of bone formation. An increase in P1NP from before to after an exercise intervention is evidence of an anabolic response of bone.
Time frame: Change in serum P1NP is measured from before to immediately after the 60 minutes of exercise during the 1st, 8th, and 16th exercise bout. The average change across all exercise bouts is also included.
Serum P1NP is measured to determine if there is an acute anabolic response of bone to exercise and whether it changes in response to exercise training
Time frame: Urinary Ca excretion is measured over the 4 hours of recovery after exercise. Results are presented for the 1st, 8th, and 16th exercise bout individually and for the average excretion across all 3 collections.
Urinary tCa is used to account for Ca loss subsequent to the activation of bone resorption during exercise
Time frame: Serum iCa is measured before and 15 minutes after the 60 minutes of exercise during the 1st, 8th, and 16th exercise bout. Average change across all three exercise collection bouts is also provided.
Serum iCa is measured to assess the stimulus for PTH secretion and to describe the pattern of change in iCa during and after exercise
Time frame: Change in serum tCa is measured before and 15 minutes after the 60 minute exercise bout during the 1st, 8th, and 16th exercise bouts. Average change across all 3 collection bouts is also included.
Serum tCa is measured to help interpret changes in iCa (e.g., changes in Ca binding) and to describe the pattern of change in tCa during and after exercise
Time frame: Serum PTH is measured before and 15 minutes after the 60 minute exercise bout. Results are presented for the 1st, 8th, and 16th exercise bouts individually and for the average change across all 3 collection bouts.
Serum PTH is measured to assess the stimulus for the activation of bone resorption and to describe the pattern of change in PTH during and after exercise
Time frame: Serum PO4 is measured before and 15 minutes after the end of the 60 minute exercise bout at the 1st, 8th, and 16th exercise bout. Overall change across all 3 visits is also reported.
Serum PO4 is measured because it is a potential stimulus for PTH secretion
Time frame: Hct is measured before and 15 minutes after the 60 minutes of exercise to correct for plasma volume shifts at the 1st, 8th, and 16th exercise bout. Average change across all 3 exercise bouts is also provided.
Hct is used to adjust iCa, tCa, PTH, CTX, P1NP, and PO4 for the plasma volume contraction that occurs with exercise
Time frame: Hgb is measured before and 15 minutes after 60 minutes of exercise to correct for plasma volume shifts. Results are presented for the 1st, 8th, and 16th exercise bouts individually and the average across all 3 exercise collection bouts.
Hgb is used to adjust iCa, tCa, PTH, CTX, P1NP, and PO4 for the plasma volume contraction that occurs with exercise
Time frame: HRmax is measured at only at baseline during the screening maximal treadmill test
HRmax is used to describe the cohort and generate individual exercise prescriptions for the intervention
Time frame: VO2peak is only measured at baseline during the screening maximal treadmill test as a demographic outcome.
VO2peak is used to describe the cardiorespiratory fitness of the participants
Time frame: BMD of the total hip is measured at baseline
BMD is used to describe the bone health status of the participants
Time frame: FM is measured at baseline
FM is used to describe the body composition of participants
Time frame: FFM is measured at baseline
FFM is used to describe the body composition of participants
VA Office of Research and Development
Fed
Enhancing Skeletal Adaptation to Exercise by Attenuating the Acute Disruption of Calcium Homeostasis During Exercise
Acronym: ESkAPE
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