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首页> 外文期刊>The Journal of Nutrition: Official Organ of the American Institute of Nutrition >Vitamin C Supplementation Does Not Modify Bone Mineral Content or Mineral Absorption in Growing Pigs
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Vitamin C Supplementation Does Not Modify Bone Mineral Content or Mineral Absorption in Growing Pigs

机译:补充维生素C不会改变生长猪的骨矿物质含量或矿物质吸收

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We have demonstrated that alkaline phosphatase activity and collagen synthesis are dose-dependently stimulated by ascorbic acid in differentiated pig osteoblasts. In this study we further examined the relationship between ascorbic acid and bone metabolism by feeding young pigs large amounts of ascorbic acid. Three groups of seven 47-d-old pigs were given no ascorbic acid supplement (control), 500 (500 AA) or 1000 (1000 AA) mg ascorbic acid/kg diet for 4 mo. Calcium and P absorption and retention were evaluated by a 14-d balance trial immediately before killing in control and 1000 AA groups only (n = 6). Bones were collected at death and the bone ash and bending moment (three-point bending test) determined. Various plasma and urine indices of bone metabolism, especially those reflecting collagen degradation (hydroxyproline, deoxypyridinoline) and synthesis (carboxyterminal propeptide of type I collagen) were monitored. The plasma ascorbic acid concentrations increased with time and paralleled the dietary concentrations (P 0.01). The Ca and P balances and the bone ash and bending moments in the ascorbic acid–supplemented pigs did not differ from those of the controls. Plasma osteocalcin was elevated (P 0.05), whereas the other bone formation markers, alkaline phosphatase and carboxy terminal propeptide of type I collagen, were not affected by ascorbic acid. The plasma concentrations of Ca, P and 1,25-dihydroxycholecalciferol did not differ among the three groups. The unaffected urinary excretion of deoxypyridinoline and hydroxyproline in the ascorbic acid–supplemented pigs indicates that ascorbic acid does not alter bone resorption. Thus, high intakes of ascorbic acid have no positive influence on bone metabolism and bone characteristics in pigs. The in vivo long-term effects do not correlate with the short-term in vitro effects previously reported.
机译:我们已经证明,碱性磷酸酶活性和胶原蛋白合成在分化的猪成骨细胞中被抗坏血酸剂量依赖性地刺激。在这项研究中,我们通过给幼猪喂食大量的抗坏血酸来进一步检查抗坏血酸与骨骼代谢之间的关系。三组7头47头大的猪不接受抗坏血酸补充剂(对照),500(500 AA)或1000(1000 AA)mg抗坏血酸/ kg饲喂4个月。钙和磷的吸收和保留通过14天平衡试验评估,即刻在对照组和仅1000个AA组中杀死(n = 6)之前。在死亡时收集骨骼,并确定骨灰和弯曲力矩(三点弯曲试验)。监测骨骼代谢的各种血浆和尿液指标,尤其是那些反映胶原蛋白降解的指标(羟基脯氨酸,脱氧吡啶并啉)和合成指标(I型胶原的羧基末端前肽)。血浆抗坏血酸浓度随时间增加,与饮食中的浓度平行(P <0.01)。补充抗坏血酸的猪的钙和磷平衡以及骨灰和弯矩与对照组无差异。血浆骨钙蛋白升高(P <0.05),而其他骨形成标志物,碱性磷酸酶和I型胶原的羧基末端前肽不受抗坏血酸的影响。三组之间的血浆Ca,P和1,25-二羟基胆钙化固醇浓度无差异。在补充抗坏血酸的猪中,脱氧吡啶啉和羟脯氨酸的尿排泄未受影响,表明抗坏血酸不会改变骨吸收。因此,高抗坏血酸的摄入量对猪的骨代谢和骨骼特性没有积极影响。体内长期作用与先前报道的短期体外作用不相关。

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