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实验性磷缺乏时肌肉细胞的可逆性变化。

Reversible changes of the muscle cell in experimental phosphorus deficiency.

作者信息

Fuller T J, Carter N W, Barcenas C, Knochel J P

出版信息

J Clin Invest. 1976 Apr;57(4):1019-24. doi: 10.1172/JCI108343.

Abstract

Both animal and human studies suggest that either phosphorus depletion or hypophosphatemia might have an adverse effect on muscle function and composition. Recently a possible deleterious effect was noted in patients with chronic alcoholism. In this unexplained disease, a variety of toxic and nutritional disturbances could affect the muscle cell, thus obscuring the precise role of phosphorus. Accordingly, we examined eight conditioned dogs for the possibility that phosphorus deficiency per se might induce an abnormally low resting transmembrane electrical potential difference (Em) and alter the composition of the muscle cell. Eight conditioned dogs were fed a synthetic phosphorus-deficient but otherwise nutritionally adequate diet plus aluminum carbonate gel for a 28-day period followed by the same diet with phosphorus supplementation for an additional 28 days. Sequential measurements of Em and muscle composition were made at 0 and 28 days during depletion and again after phosphorus repletion. Serum inorganic phosphorus concentration (mg/100 ml) fell from 4.2 +/- 0.6 on day 0 t0 1.7 +/- 0.1 on day 28. Total muscle phosphorus content (mmol/100 g fat-free dry wt [FFDW]) fell from 28.5 +/- 1.8 on day 0 to 22.4 +/- 2.1 on day 28. During phosphorus depletion, average Em (-mV) fell from 92.6 +/- 4.2 to 77.9 +/- 4.1 mV (P less than 0.001). Muscle Na+ and Cl- content (meq/100 g FFDW) rose respectively from 11.8 +/- 3.2 to 17.2 +/- 2.8 (P less than 0.01) and from 8.4 +/- 1.4 to 12.7 +/- 2.0 (P less than 0.001). Total muscle water content rose from 331 +/- 12 to 353 +/- 20 g/100 FFDW (P less than 0.05). A slight, but nevertheless, significant drop in muscle potassium content, 43.7 +/- 2.0-39.7 +/- 2.2 meq/100 g FFDW (P less than 0.05) was also noted. After 4 wk of phosphorus repletion, all of these measurements returned toward control values. We conclude that moderate phosphorus depletion can induce reversible changes in skeletal muscle composition and transmembrane potential in the dog, and it apparently occurs independently of profound hypophosphatemia.

摘要

动物研究和人体研究均表明,磷缺乏或低磷血症可能会对肌肉功能和组成产生不利影响。最近,在慢性酒精中毒患者中发现了一种可能的有害影响。在这种病因不明的疾病中,多种毒性和营养紊乱可能会影响肌肉细胞,从而掩盖了磷的确切作用。因此,我们对8只条件适宜的犬进行了研究,以探讨磷缺乏本身是否可能导致静息跨膜电位差(Em)异常降低,并改变肌肉细胞的组成。8只条件适宜的犬被喂食一种合成的低磷但营养充足的饮食,并添加碳酸铝凝胶,持续28天,随后喂食相同的饮食并补充磷,再持续28天。在缺磷期的第0天和第28天以及补磷后再次进行Em和肌肉组成的连续测量。血清无机磷浓度(mg/100 ml)从第0天的4.2±0.6降至第28天的1.7±0.1。肌肉总磷含量(mmol/100 g无脂干重[FFDW])从第0天的28.5±1.8降至第28天的22.4±2.1。在磷缺乏期间,平均Em(-mV)从92.6±4.2降至77.9±4.1 mV(P<0.001)。肌肉钠和氯含量(meq/100 g FFDW)分别从11.8±3.2升至17.2±2.8(P<0.01)和从8.4±1.4升至12.7±2.0(P<0.001)。肌肉总含水量从331±12升至353±20 g/100 FFDW(P<0.05)。还注意到肌肉钾含量略有但显著下降,从43.7±2.0降至39.7±2.2 meq/100 g FFDW(P<0.05)。补磷4周后,所有这些测量值均恢复至对照值。我们得出结论,中度磷缺乏可导致犬骨骼肌组成和跨膜电位发生可逆性变化,且这种变化显然独立于严重的低磷血症而发生。

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