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补充和未补充磷酸盐的大鼠在运动减少期间及之后的磷酸盐沉积情况。

Phosphate deposition during and after hypokinesia in phosphate supplemented and unsupplemented rats.

作者信息

Kakuris Vassilis J, Tsiamis Costas B, Deogenov Victor A, Peskaratos John G

机构信息

European Foundation of Environmental Sciences, Athens GR-16232, Greece.

出版信息

Physiol Chem Phys Med NMR. 2004;36(2):109-21.

Abstract

The objective of this study was to show that prolonged restriction of motor activity (hypokinesia) could reduce phosphate (P) deposition and contribute to P loss with tissue P depletion. To this end, measurements were made of tissue P content, P absorption, plasma P levels, urinary and fecal P excretion of rats during and after hypokinesia (HK) and daily phosphate supplementation. Studies were conducted on male Wistar rats during a pre-hypokinetic period, a hypokinetic period and a post-hypokinetic period. All rats were equally divided into four groups: unsupplemented vivarium control rats (UVCR), unsupplemented hypokinetic rats (UHKR), supplemented vivarium control rats (SVCR) and supplemented hypokinetic rats (SHKR). Bone and muscle P content, plasma intact parathyroid hormone (iPTH) levels, P absorption, plasma P levels and urinary and fecal P excretion did not change in SVCR and UVCR compared with their pre-HK values. During HK, plasma P levels, urinary and fecal P excretion increased significantly (p<0.05) while muscle and bone P content, P absorption and plasma iPTH levels decreased significantly (p<0.05) in SHKR and UHKR compared with their pre-HK values and the values in their respective vivarium controls (SVCR and UVCR). During the initial 9-days of post-HK, plasma, urinary and fecal P levels decreased significantly (p<0.05), and plasma iPTH levels, muscle and bone P levels remained significantly (p<0.05) depressed in hypokinetic rats compared with their pre-HK values and the values in their respective vivarium control rats. By the 15th day, these values approached the control values. During HK and post-HK, changes in P absorption, plasma iPTH levels, and P levels in muscle, bone, plasma, urine and feces were significantly (p<0.05) greater in SHKR than in UHKR. Decreased tissue P content with increased P loss in animals receiving and not receiving P supplementation demonstrates decreased P deposition during HK. Higher P excretion with lower tissue content in SHKR and UHKR demonstrates that P deposition is decreased more with P supplementation than without. Because SHKR with a lower tissue P content showed higher P excretion than UHKR it was concluded that the risk of decreased P deposition with greater tissue P depletion is inversely related to P intake, that is, the higher the P intake the greater the risk for decreased P deposition and the greater tissue P depletion. It was shown that P (regardless of the intensity of its tissue depletion) is lost during HK unless factors contributing to the decreased P deposition are partially or totally reversed. It was concluded that dissociation between (decreased) tissue P content and (increased) P uptake indicates decreased P (absorption and) deposition as the main mechanisms of tissue P depletion during prolonged HK.

摘要

本研究的目的是表明长期限制运动活动(运动减退)可减少磷酸盐(P)沉积,并导致P流失以及组织P耗竭。为此,对运动减退(HK)期间及之后以及每日补充磷酸盐的大鼠的组织P含量、P吸收、血浆P水平、尿和粪P排泄进行了测量。研究在雄性Wistar大鼠的运动减退前期、运动减退期和运动减退后期进行。所有大鼠均被平均分为四组:未补充的饲养对照大鼠(UVCR)、未补充的运动减退大鼠(UHKR)、补充的饲养对照大鼠(SVCR)和补充的运动减退大鼠(SHKR)。与HK前的值相比,SVCR和UVCR的骨和肌肉P含量、血浆完整甲状旁腺激素(iPTH)水平、P吸收、血浆P水平以及尿和粪P排泄均未发生变化。在HK期间,与HK前的值及其各自饲养对照(SVCR和UVCR)的值相比,SHKR和UHKR的血浆P水平、尿和粪P排泄显著增加(p<0.05),而肌肉和骨P含量、P吸收以及血浆iPTH水平显著降低(p<0.05)。在HK后的最初9天内,与HK前的值及其各自饲养对照大鼠的值相比,运动减退大鼠的血浆、尿和粪P水平显著降低(p<0.05),血浆iPTH水平、肌肉和骨P水平仍显著(p<0.05)低于正常水平。到第15天,这些值接近对照值。在HK期间和HK后,SHKR的P吸收、血浆iPTH水平以及肌肉、骨、血浆、尿和粪中的P水平变化比UHKR显著(p<0.05)更大。接受和未接受P补充的动物中组织P含量降低且P流失增加,这表明HK期间P沉积减少。SHKR和UHKR中P排泄较高而组织含量较低,这表明补充P比不补充P时P沉积减少得更多。由于组织P含量较低的SHKR比UHKR显示出更高的P排泄,因此得出结论,随着组织P耗竭增加,P沉积减少的风险与P摄入量呈负相关,即P摄入量越高,P沉积减少和组织P耗竭的风险就越大。结果表明,除非导致P沉积减少的因素部分或完全逆转,否则HK期间P(无论其组织耗竭强度如何)都会流失。得出的结论是,(降低的)组织P含量与(增加的)P摄取之间的解离表明,在长期HK期间,P(吸收和)沉积减少是组织P耗竭的主要机制。

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