Cho Jin Ah, Baek Seong Yeon, Cheong Sun Hee, Kim Mee Ree
Department of Food and Nutrition, Chungnam National University, 99, Daehak-ro, Yuseong-gu, Daejeon 34134, Korea.
Department of Marine Bio Food Science, College of Fisheries and Ocean Science, Chonnam National University, Yeosu 550-749, Korea.
Nutrients. 2020 Apr 24;12(4):1187. doi: 10.3390/nu12041187.
In recent years, growth hormone deficiency in children has been treated with hormone therapy despite the possible significant side effects. Therefore, it was deemed beneficial to develop functional foods or dietary supplements for safely improving children's growth. is known for its high antioxidant, anti-aging, anti-cancer, and immunity-enhancing properties, as well as its high digestibility and high protein content, but little has been reported about its influence on bone development in children with a normal supply of protein. In this study, we evaluated the effects of spirulina on the bone metabolism and antioxidant profiles of three-week-old growing male rats. The animals were divided into four groups ( = 17 per group) and were fed AIN93G diets with 0% (control), 30% (SP30), 50% (SP50), and 70% (SP70) of casein protein replaced by spirulina, respectively, for seven weeks. We observed that spirulina enhanced bone growth and bone strength by stimulating parathyroid hormone and growth hormone activities, as well its increased antioxidant activity. These results indicate that spirulina provides a suitable dietary supplement and alternative protein source with antioxidant benefits for growth improvement in early developmental stages.
近年来,尽管儿童生长激素缺乏症采用激素治疗可能会有显著的副作用,但仍一直使用激素疗法进行治疗。因此,开发功能性食品或膳食补充剂以安全促进儿童生长被认为是有益的。螺旋藻以其高抗氧化、抗衰老、抗癌和增强免疫力的特性以及高消化率和高蛋白含量而闻名,但关于其在蛋白质供应正常的儿童中对骨骼发育的影响,此前鲜有报道。在本研究中,我们评估了螺旋藻对三周龄正在生长的雄性大鼠骨骼代谢和抗氧化状况的影响。将动物分为四组(每组 = 17 只),分别用螺旋藻替代 0%(对照组)、30%(SP30)、50%(SP50)和 70%(SP70)的酪蛋白,喂养AIN93G 饮食七周。我们观察到,螺旋藻通过刺激甲状旁腺激素和生长激素的活性来促进骨骼生长和增强骨骼强度,同时其抗氧化活性也有所增加。这些结果表明,螺旋藻为早期发育阶段的生长改善提供了一种合适的膳食补充剂和具有抗氧化益处的替代蛋白质来源。