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体育活动对大鼠钙磷代谢的影响。

Effect of physical activity on calcium and phosphorus metabolism in the rat.

作者信息

Yeh J K, Aloia J F, Yasumura S

机构信息

Department of Medicine, Winthrop University Hospital, Mineola 11501.

出版信息

Am J Physiol. 1989 Jan;256(1 Pt 1):E1-6. doi: 10.1152/ajpendo.1989.256.1.E1.

Abstract

Changes in skeletal mass, nutritional calcium and phosphorus balance, and intestinal calcium absorption were studied in four groups of rats: control, exercise allowing free access to food, exercise with pair-feeding to control levels, and immobilization. The exercise regimen consisted of treadmill running 25 m/min, 60 min/day, 5 days/wk for 13 wk; rats were immobilized by bilateral sciatic denervation. The total body Ca (TBCa) was measured by neutron activation analysis as an index of skeletal mass. Standard metabolic balance techniques were used to determine calcium and phosphorus balance, and an in situ duodenal loop ligation preparation was used to study the active and passive intestinal Ca transport processes. Exercise promoted a positive Ca and P balance and increased the skeletal mass, largely as a result of an increase in 1,25-dihydroxyvitamin D and an enhancement of the intestinal Ca absorption efficiency. Urinary excretion of Ca and P did not differ from control levels and food intake was not a factor because pair-fed rats responded to exercise almost identically to those fed ad libitum. Conversely, immobilization caused a decrease in TBCa and a lower Ca and P balance. These effects are the result of an increased urinary mineral excretion, greater endogenous fecal excretion, and decreased mineral absorption efficiency in the intestine.

摘要

研究了四组大鼠的骨骼质量、营养性钙和磷平衡以及肠道钙吸收的变化:对照组、可自由获取食物的运动组、食量配对控制至对照组水平的运动组以及固定组。运动方案包括以25米/分钟的速度在跑步机上跑步,每天60分钟,每周5天,共13周;通过双侧坐骨神经去神经支配使大鼠固定。通过中子活化分析测量全身钙(TBCa)作为骨骼质量的指标。使用标准代谢平衡技术测定钙和磷平衡,并采用原位十二指肠环结扎制备法研究肠道钙的主动和被动转运过程。运动促进了钙和磷的正平衡并增加了骨骼质量,这主要是由于1,25 - 二羟基维生素D增加以及肠道钙吸收效率提高。钙和磷的尿排泄与对照组水平无差异,食物摄入量不是一个因素,因为食量配对的大鼠对运动的反应与自由采食的大鼠几乎相同。相反,固定导致TBCa降低以及钙和磷平衡降低。这些影响是尿矿物质排泄增加、内源性粪便排泄增加以及肠道矿物质吸收效率降低的结果。

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