Kelly Owen, Cusack Siobhan, Cashman Kevin D
Department of Medicine, University College, Cork, Republic of Ireland.
Br J Nutr. 2003 Sep;90(3):557-64. doi: 10.1079/bjn2003937.
The beneficial effect of bovine whey protein (WP) on bone metabolism has been shown in adult human subjects and ovariectomised rats. However, its effect on bone formation in earlier life, particularly during periods of bone mineral accrual, has not been investigated. Twenty-one male rats (4 weeks old, Wistar strain) were randomised by weight into three groups of seven rats each and fed ad libitum on a semi-purified low-Ca diet (3.0 g Ca/kg diet) containing 0 (control), 10 (diet WP1) or 20 (diet WP2) g bovine WP/kg for 47 d. On day 34 of the dietary intervention, all rats had two gelatine capsules containing demineralised bone powder implanted subcutaneously in the thorax region (a well-established in vivo model of ectopic bone formation). At 14 d after implantation, alkaline phosphatase activity (reflective of bone formation) in the bone implants from animals fed WP1 and -2 diets was almost 2-fold (P<0.01) that of control animals. Insulin-like growth factor (IGF)-I mRNA levels were about 3-fold (P<0.05) higher in implants from animals fed the WP diets compared with those from control animals. Serum- and urine-based biomarkers of bone metabolism and bone mineral composition in intact femora were unaffected by WP supplementation. In conclusion, the present findings suggest that bovine WP can enhance the rate of ectopic bone formation in young growing rats fed a Ca-restricted diet. This effect may be mediated by an increased synthesis of IGF-I in growing bone. The effect of WP on bone formation warrants further investigation.
牛血清白蛋白(WP)对骨代谢的有益作用已在成年人类受试者和去卵巢大鼠中得到证实。然而,其对生命早期骨形成的影响,尤其是在骨矿物质积累期的影响,尚未得到研究。将21只雄性大鼠(4周龄,Wistar品系)按体重随机分为三组,每组7只,随意喂食含0(对照组)、10(饮食WP1组)或20(饮食WP2组)克牛WP/千克的半纯化低钙饮食(3.0克钙/千克饮食),持续47天。在饮食干预的第34天,所有大鼠在胸部区域皮下植入两颗含脱矿骨粉的明胶胶囊(一种成熟的异位骨形成体内模型)。植入后14天,喂食WP1和WP2饮食的动物骨植入物中的碱性磷酸酶活性(反映骨形成)几乎是对照动物的2倍(P<0.01)。与对照动物相比,喂食WP饮食的动物植入物中的胰岛素样生长因子(IGF)-I mRNA水平高出约3倍(P<0.05)。完整股骨中基于血清和尿液的骨代谢生物标志物及骨矿物质组成不受WP补充的影响。总之,目前的研究结果表明,牛WP可提高喂食低钙饮食的幼年生长大鼠的异位骨形成速率。这种作用可能是由生长骨中IGF-I合成增加介导的。WP对骨形成的作用值得进一步研究。