Nutritional physiology and body composition changes during a rapid ascent to high altitude.

Carmen Santangelo, Vittore Verratti, Simona Mrakic-Sposta, Federica Ciampini, Sofia Bonan, Pamela Pignatelli, Tiziana Pietrangelo, Serena Pilato, Samanta Moffa, Antonella Fontana, Raffaela Piccinelli, Cinzia Le Donne, Lucio Lobefalo, Matteo Beccatelli, Pierluigi Lodi Rizzini, Davide Seletti, Rocco Mecca, Tommaso Beccatelli, Danilo Bondi
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Abstract

Exposure to high altitude might cause the body to adapt with negative energy and fluid balance that compromise body composition and physical performance. In this field study involving 12 healthy adults, sex-balanced, and aged 29 ± 4 years with a body mass index of 21.6 ± 1.8 kg/m2, we investigated the effects of a 4-day trekking up to 4556 m a.s.l. on Monte Rosa (Alps, Italy). The food intake was recorded using food diaries and nutrient averages were calculated. The bio-impedance analysis was performed at low and high altitudes, and a wearable biosensor (Swemax) was used to track hydro-saline losses in two participants. Daily total energy intake was 3348 ± 386 kcal for males and 2804 ± 415 kcal for females (13%-14% protein, 35% fat, 44%-46% carbohydrates). Although there was a significant body weight loss (65.0 ± 9.3 vs. 64.2 ± 9.10 kg, p < 0.001, d = 1.398), no significant changes in body composition parameter were found but a trend in the increase of the bioelectrical phase angle in males (p = 0.059, d = -0.991). Body water percentage significantly changed (p = 0.026, η2 p = 0.440), but the absolute water did not, suggesting that the weight loss was not due to water loss. Salivary and urinary osmolality did not change. A reduction in sweat rate at higher altitudes was observed in both participants. Interestingly, salivary leptin increased (p = 0.014, η2 p = 0.510), and salivary ghrelin decreased (p = 0.036, η2 p  = 0.403). Therefore, the 4-day trekking at altitude of hypoxia exposure induced changes in satiety and appetite hormones. High altitude expeditions require more specific nutritional guidance, and using multiplex analysis could help in monitoring fluid balance and body composition.

在快速上升到高海拔地区的过程中,营养生理学和身体成分会发生变化。
暴露在高海拔地区可能会导致身体适应能力下降,能量和体液出现负平衡,从而影响身体组成和体能表现。在这项涉及 12 名健康成年人的实地研究中,我们调查了在海拔 4556 米的罗萨山(意大利阿尔卑斯山)进行为期 4 天徒步旅行的影响,这些成年人性别均衡,年龄为 29±4 岁,体重指数为 21.6±1.8 kg/m2。通过食物日记记录食物摄入量,并计算营养素平均值。在低海拔和高海拔地区进行了生物阻抗分析,并使用可穿戴生物传感器(Swemax)跟踪两名参与者的水盐流失情况。男性每天摄入的总能量为 3348±386 千卡,女性为 2804±415 千卡(蛋白质 13-14%,脂肪 35%,碳水化合物 44-46%)。虽然体重明显下降(65.0±9.3 vs 64.2±9.10 kg,p
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