Basque Research and Technology Alliance (BRTA). Parque Tecnológico de Bizkaia, AZTI, Food Research, Derio, Spain.
Athletic Club, Medical Services, Lezama, Spain.
J Int Soc Sports Nutr. 2023 Dec;20(1):2245386. doi: 10.1080/15502783.2023.2245386.
An optimal and correctly balanced metabolic status is essential to improve sports performance in athletes. Recent advances in omic tools, such as the lipid profile of the mature erythrocyte membranes (LPMEM), allow to have a comprehensive vision of the nutritional and metabolic status of these individuals to provide personalized recommendations for nutrients, specifically, the essential omega-3 and omega-6 fatty acids, individuating deficiencies/unbalances that can arise from both habitual diet and sportive activity. This work aimed to study the LPMEM in professional female football players during the football season for the first time and compare it with those defined as optimal values for the general population and a control group.
An observational study was carried out on female football players from the Athletic Club (Bilbao) playing in the first division of the Spanish league. Blood samples were collected at three points: at the beginning, mid-season, and end of the season for three consecutive seasons (2019-2020, 2020-2021, and 2021-2022), providing a total of 160 samples from 40 women. The LPMEM analysis was obtained by GC-FID by published method and correlated to other individual data, such as blood biochemical parameters, body composition, and age.
We observed a significant increase in docosahexaenoic acid (DHA) ( 0.048) and total polyunsaturated fatty acid (PUFA) ( 0.021) in the first season. In the second season, we observed a buildup in the membrane arachidonic acid (AA) ( < .001) and PUFA ( < .001) contents when high training accumulated. In comparison with the benchmark of average population values, 69% of the football players showed lower levels of omega-6 dihomo-γ-linolenic acid (DGLA), whereas 88%, 44%, and 81% of the participants showed increased values of AA, eicosapentaenoic acid (EPA), and the ratio of saturated and monounsaturated fatty acids (SFA/MUFA), respectively. Regarding relationships between blood biochemical parameters, body composition, and age with LPMEM, we observed some mild negative correlations, such as AA and SFA/MUFA ratio with vitamin D levels (coefficient = -0.34 = .0019 and coefficient = -.25 = .042); DGLA with urea and cortisol (coefficient = -0.27 < .006 and coefficient = .28 < .0028) and AA with age (coefficient = -0.33 < .001).
In conclusion, relevant variations in several fatty acids of the membrane fatty acid profile of elite female football players were observed during the competitive season and, in comparison with the general population, increased PUFA contents were confirmed, as reported in other sportive activities, together with the new aspect of DGLA diminution, an omega-6 involved in immune and anti-inflammatory responses. Our results highlight membrane lipidomics as a tool to ascertain the molecular profile of elite female football players with a potential application for future personalized nutritional strategies (diet and supplementation) to address unbalances created during the competitive season.
运动员要提高运动表现,就必须保持最佳和平衡的代谢状态。近年来,组学工具的发展,如成熟红细胞膜的脂质谱(LPMEM),使我们能够全面了解这些个体的营养和代谢状态,为他们提供个性化的营养建议,特别是必需的欧米伽-3 和欧米伽-6 脂肪酸,以确定由于日常饮食和运动活动而产生的缺乏或失衡。本研究旨在首次研究职业女性足球运动员在足球赛季中的 LPMEM,并将其与一般人群和对照组的最佳值进行比较。
对来自 Athletic Club(毕尔巴鄂)的参加西班牙联赛甲级联赛的女性足球运动员进行了一项观察性研究。在三个时间点采集血液样本:赛季初、赛季中和赛季末,连续三个赛季(2019-2020、2020-2021 和 2021-2022 年)共采集了 40 名女性的 160 个样本。通过已发表的方法,用 GC-FID 进行 LPMEM 分析,并与其他个体数据相关联,如血液生化参数、身体成分和年龄。
我们观察到在第一个赛季中二十二碳六烯酸(DHA)(0.048)和总多不饱和脂肪酸(PUFA)(0.021)显著增加。在第二个赛季中,当高训练量积累时,我们观察到膜花生四烯酸(AA)(<0.001)和 PUFA(<0.001)含量增加。与平均人群值的基准相比,69%的足球运动员表现出较低水平的欧米伽-6 二高-γ-亚麻酸(DGLA),而 88%、44%和 81%的参与者分别表现出 AA、二十碳五烯酸(EPA)和饱和脂肪酸与单不饱和脂肪酸的比值(SFA/MUFA)增加。关于血液生化参数、身体成分和年龄与 LPMEM 之间的关系,我们观察到一些轻微的负相关,例如 AA 和 SFA/MUFA 与维生素 D 水平的比值(系数= -0.34 = .0019 和系数= -0.25 = .042);DGLA 与尿素和皮质醇(系数= -0.27 < .006 和系数= 0.28 < .0028)和 AA 与年龄(系数= -0.33 < .001)。
总之,在竞争赛季中观察到精英女性足球运动员的膜脂肪酸特征中几种脂肪酸发生了变化,与一般人群相比,确认了多不饱和脂肪酸含量增加,这与其他运动活动一致,同时也出现了新的方面,即欧米伽-6 二高-γ-亚麻酸(DGLA)减少,这是一种参与免疫和抗炎反应的欧米伽-6。我们的研究结果强调了膜脂质组学作为一种确定精英女性足球运动员分子特征的工具的应用,这可能为未来的个性化营养策略(饮食和补充剂)提供应用,以解决竞争赛季中产生的失衡问题。