Choi Yun-Young, Choi Yuri, Kim Jisook, Choi Hyeonhae, Shin Jiwon, Roh Jaesook
1 Department of Nuclear Medicine, College of Medicine, Hanyang University , Seoul, Korea.
2 Laboratory of Reproductive Endocrinology, Department of Anatomy and Cell Biology, College of Medicine, Hanyang University , Seoul, Korea.
J Med Food. 2016 Jan;19(1):73-84. doi: 10.1089/jmf.2015.3467. Epub 2015 Oct 23.
This study investigated the dose- and time-dependent effects of caffeine consumption throughout puberty in peripubertal rats. A total of 85 male SD rats were randomly divided into four groups: control and caffeine-fed groups with 20, 60, or 120 mg/kg/day through oral gavage for 10, 20, 30, or 40 days. Caffeine decreased body weight gain and food consumption in a dose- and time-dependent manner, accompanied by a reduction in muscle and body fat. In addition, it caused a shortening and lightening of leg bones and spinal column. The total height of the growth plate decreased sharply at 40 days in the controls, but not in the caffeine-fed groups, and the height of hypertrophic zone in the caffeine-fed groups was lower than in the control. Caffeine increased the height of the secondary spongiosa, whereas parameters related to bone formation, such as bone area ratio, thickness and number of trabeculae, and bone perimeter, were significantly reduced. Furthermore, serum levels of IGF-1, estradiol, and testosterone were also reduced by the dose of caffeine exposure. Our results demonstrate that caffeine consumption can dose- and time-dependently inhibit longitudinal bone growth in immature male rats, possibly by blocking the physiologic changes in body composition and hormones relevant to bone growth.
本研究调查了青春期大鼠在整个青春期摄入咖啡因的剂量和时间依赖性影响。总共85只雄性SD大鼠被随机分为四组:对照组和咖啡因喂养组,通过灌胃给予20、60或120mg/kg/天的咖啡因,持续10、20、30或40天。咖啡因以剂量和时间依赖性方式降低体重增加和食物消耗,同时伴有肌肉和体脂减少。此外,它导致腿骨和脊柱缩短变轻。对照组在40天时生长板总高度急剧下降,但咖啡因喂养组未出现这种情况,且咖啡因喂养组肥大带的高度低于对照组。咖啡因增加了次级海绵骨的高度,而与骨形成相关的参数,如骨面积比、小梁厚度和数量以及骨周长,均显著降低。此外,咖啡因暴露剂量还降低了血清IGF-1、雌二醇和睾酮水平。我们的结果表明,摄入咖啡因可能通过阻断与骨骼生长相关的身体成分和激素的生理变化,以剂量和时间依赖性方式抑制未成熟雄性大鼠的纵向骨骼生长。