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Effect of Two-Year Caloric Restriction on Bone Metabolism and Bone Mineral Density in Non-Obese Younger Adults: A Randomized Clinical Trial.
Villareal, DT, Fontana, L, Das, SK, Redman, L, Smith, SR, Saltzman, E, Bales, C, Rochon, J, Pieper, C, Huang, M, et al
Journal of bone and mineral research : the official journal of the American Society for Bone and Mineral Research. 2016;31(1):40-51
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Plain language summary
While there is increasing evidence that caloric restriction (CR) can extend a healthy lifespan in humans, it is not known whether weight loss is linked to reductions in bone mineral density (BMD) in younger adults. The aim of this trial was to assess the effect of prolonged caloric restriction on bone mass density and bone metabolism in 218 healthy adults aged 21 to 40. Participants were randomised to either a 25% caloric restriction or ad libitum diet for two years. The findings of this study showed that the CR group had a larger increase in markers of bone turnover and caused a modest but significant decline in bone mineral density. Based on these findings, the authors suggest that further research is needed to determine whether bone loss increases fracture risk, and whether interventions can prevent bone loss that occurs with CR-induced weight loss.
Abstract
Although caloric restriction (CR) could delay biologic aging in humans, it is unclear if this would occur at the cost of significant bone loss. We evaluated the effect of prolonged CR on bone metabolism and bone mineral density (BMD) in healthy younger adults. Two-hundred eighteen non-obese (body mass index [BMI] 25.1 ± 1.7 kg/m(2) ), younger (age 37.9 ± 7.2 years) adults were randomly assigned to 25% CR (CR group, n = 143) or ad libitum (AL group, n = 75) for 2 years. Main outcomes were BMD and markers of bone turnover. Other outcomes included body composition, bone-active hormones, nutrient intake, and physical activity. Body weight (-7.5 ± 0.4 versus 0.1 ± 0.5 kg), fat mass (-5.3 ± 0.3 versus 0.4 ± 0.4 kg), and fat-free mass (-2.2 ± 0.2 versus -0.2 ± 0.2 kg) decreased in the CR group compared with AL (all between group p < 0.001). Compared with AL, the CR group had greater changes in BMD at 24 months: lumbar spine (-0.013 ± 0.003 versus 0.007 ± 0.004 g/cm(2) ; p < 0.001), total hip (-0.017 ± 0.002 versus 0.001 ± 0.003 g/cm(2) ; p < 0.001), and femoral neck (-0.015 ± 0.003 versus -0.005 ± 0.004 g/cm(2) ; p = 0.03). Changes in bone markers were greater at 12 months for C-telopeptide (0.098 ± 0.012 versus 0.025 ± 0.015 μg/L; p < 0.001), tartrate-resistant acid phosphatase (0.4 ± 0.1 versus 0.2 ± 0.1 U/L; p = 0.004), and bone-specific alkaline phosphatase (BSAP) (-1.4 ± 0.4 versus -0.3 ± 0.5 U/L; p = 0.047) but not procollagen type 1 N-propeptide; at 24 months, only BSAP differed between groups (-1.5 ± 0.4 versus 0.9 ± 0.6 U/L; p = 0.001). The CR group had larger increases in 25-hydroxyvitamin D, cortisol, and adiponectin and decreases in leptin and insulin compared with AL. However, parathyroid hormone and IGF-1 levels did not differ between groups. The CR group also had lower levels of physical activity. Multiple regression analyses revealed that body composition, hormones, nutrients, and physical activity changes explained ∼31% of the variance in BMD and bone marker changes in the CR group. Therefore, bone loss at clinically important sites of osteoporotic fractures represents a potential limitation of prolonged CR for extending life span. Further long-term studies are needed to determine if CR-induced bone loss in healthy adults contributes to fracture risk and if bone loss can be prevented with exercise.
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Cognitive Effects of Intentional Weight Loss in Elderly Obese Individuals With Mild Cognitive Impairment.
Horie, NC, Serrao, VT, Simon, SS, Gascon, MR, Dos Santos, AX, Zambone, MA, Del Bigio de Freitas, MM, Cunha-Neto, E, Marques, EL, Halpern, A, et al
The Journal of clinical endocrinology and metabolism. 2016;101(3):1104-12
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Plain language summary
Several studies have elucidated that midlife obesity increases the risk of dementia later in life. While the neuroprotective effects of caloric restriction have been widely demonstrated, they have not yet been investigated in patients with mild cognitive impairment (MCI). The aim of this trial was to evaluate the effect of intentional weight loss in elderly adults with mild cognitive impairment (MCI). Eighty participants aged over 60 were randomly allocated to receive either nutritional counselling or medical care alone for 12 months. The findings of this study indicated that intentional weight loss through diet was associated with cognitive improvement in patients with MCI, and this association was strongest in younger adults and APOE4 carriers. As this was the first clinical trial exploring these effects in patients with MCI further research is warranted.
Abstract
CONTEXT Obesity in midlife is a risk factor for dementia, but it is unknown if caloric restriction-induced weight loss could prevent cognitive decline and therefore dementia in elderly patients with cognitive impairment. OBJECTIVE To evaluate the cognitive effect of intentional weight loss in obese elderly patients with mild cognitive impairment (MCI), considering the influence of age, apolipoprotein E (APOE) genotype, physical activity, biochemical markers, and diet. DESIGN Single-center, prospective controlled trial. SETTING Academic medical center. PARTICIPANTS Eighty obese patients with MCI, aged 60 or older (68.1 ± 4.9 y, body mass index [BMI] 35.5 ± 4.4 kg/m(2), 83.7% women, 26.3% APOE allele ϵ4 carriers). INTERVENTION Random allocation to conventional medical care alone (n = 40) or together with nutritional counselling (n = 40) in group meetings aiming to promote weight loss through caloric restriction for 12 months. OUTCOME MEASUREMENTS clinical data, body composition, neuropsychological tests (main outcome), serum biomarkers, APOE genotype, physical performance, dietary recalls. RESULTS Seventy-five patients completed the follow-up. BMI, on average, decreased 1.7 ± 1.8 kg/m(2) (P = .021), and most of the cognitive tests improved, without difference between the groups. In analysis with linear generalized models, the BMI decrease was associated with improvements in verbal memory, verbal fluency, executive function, and global cognition, after adjustment for education, gender, physical activity, and baseline tests. This association was strongest in younger seniors (for memory and fluency) and in APOE allele ϵ4 carriers (for executive function). Changes in homeostasis model assessment-estimated insulin resistance, C-reactive protein, leptin and intake of energy, carbohydrates, and fats were associated with improvement in cognitive tests. CONCLUSIONS Intentional weight loss through diet was associated with cognitive improvement in patients with MCI.