[No authors listed]
ABSTRACT:This study aimed to investigate the relationships between omentin-1, body composition and physical activity (PA) levels in older women.Eighty-one older women (age = 64â±â6years; body mass index = 24.2â±â3.2âkg/m2; body fat percentageâ=â36.1â±â5.7%) participated in this study. We divided the subjects into overweight/obesity and normal weight group. Body composition was measured by dual energy X-ray absorptiometry. Serum omentin-1 concentration was measured using enzyme linked immunosorbent assay. PA levels were obtained by using accelerometers. In addition, anthropometric and insulin resistance values were determined.Omentin-1 level in overweight/obesity group was significantly lower than in the normal weight group (Pâ<â.01). Analysis of all subjects showed that serum omentin-1 was negatively correlated with body weight, BMI (body mass index), waist circumference (WC), WHR (waist-to-hip ratio), percentage of body fat, total body fat mass (FM), fat-free mass (FFM) (râ=â-.571, -0.569, -0.546, -0.382, -0.394, -0.484, -0.524, all Pâ<â.01), respectively. We also found a negative correlation between moderate-to-vigorous physical activity (MVPA) and total body FM (râ=â-.233, Pâ<â.05). However, no significant correlation was found between omentin-1 and sedentary behavior and MVPA (both Pâ>â.05). Moreover, the relationship between omentin-1, body composition and PA was analyzed by using multiple linear stepwise regressions. The results showed that serum omentin-1 concentration was inversely correlated with total body FM (βâ=â-0.334, Pâ=â.004) in multiple linear stepwise regression analysis.We found that total body FM was inversely related to serum omentin-1 concentration and PA levels, but there was no correlation between omentin-1 and PA levels. These results showed that PA may participate in the regulation of body composition, which may be also affected by serum omentin-1. However, the mechanism by which PA affects body composition may not be through omentin-1 and was more likely through other metabolic pathways.
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