Faculty of Sport and Health Sciences, Ryutsu Keizai University, 120 Ryugasaki, Ibaraki 301-8555, Japan.
J Clin Biochem Nutr. 2014 Sep;55(2):143-6. doi: 10.3164/jcbn.14-58. Epub 2014 Jul 31.
Chlorella, a unicellular green alga, contains a variety of nutrients including amino acids, carbohydrates, vitamins, and minerals. A previous animal study found that maximal swimming time in mice increased after 14 days on a diet including Chlorella powder compared to no change in swimming performance on a normal diet. However, it is currently unknown whether Chlorella-derived multicomponent supplementation increases aerobic endurance capacity in humans. We investigated the effects of Chlorella-derived supplementation on peak oxygen uptake during incremental maximal cycling in young individuals using a double-blinded, placebo-controlled, crossover study design. Seven men and three women (mean age, 21.3 year) were allocated to placebo or Chlorella tablets (15 tablets × twice per day) for 4 weeks, with at least a 6-week washout period between trials, in a randomized order. Peak oxygen uptake significantly increased after Chlorella supplementation (before vs after, 37.9 ± 1.9 vs 41.4 ± 1.9 ml/kg/min, p = 0.003), but not with placebo (39.4 ± 2.2 vs 40.1 ± 2.1 ml/kg/min, p = 0.38). The change in peak oxygen uptake over the 4-week trial was significantly greater in the Chlorella trial than in the placebo trial (3.5 ± 0.9 vs 0.7 ± 0.8 ml/kg/min, p = 0.03). These results suggest that Chlorella-derived multicomponent supplementation increases aerobic endurance capacity in young individuals.
小球藻是一种单细胞绿藻,含有多种营养物质,包括氨基酸、碳水化合物、维生素和矿物质。一项先前的动物研究发现,与正常饮食相比,在含有小球藻粉的饮食中,小鼠的最大游泳时间在 14 天后增加,但游泳表现没有变化。然而,目前尚不清楚小球藻衍生的多种成分补充是否能提高人类的有氧运动耐力。我们使用双盲、安慰剂对照、交叉研究设计,研究了小球藻衍生补充剂对年轻个体递增最大自行车骑行时峰值摄氧量的影响。7 名男性和 3 名女性(平均年龄 21.3 岁)被分配到安慰剂或小球藻片(每天 15 片×2 次)组,每组接受 4 周的治疗,每组之间至少有 6 周的洗脱期,随机分配。小球藻补充后峰值摄氧量显著增加(治疗前 vs 治疗后,37.9±1.9 与 41.4±1.9 ml/kg/min,p=0.003),但安慰剂组没有增加(39.4±2.2 与 40.1±2.1 ml/kg/min,p=0.38)。小球藻组在 4 周试验中峰值摄氧量的变化明显大于安慰剂组(3.5±0.9 与 0.7±0.8 ml/kg/min,p=0.03)。这些结果表明,小球藻衍生的多种成分补充可以提高年轻个体的有氧运动耐力。