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钠或氯缺乏会降低生长中大鼠肌肉细胞内的pH值。

Sodium or chloride deficiency lowers muscle intracellular pH in growing rats.

作者信息

Ray P E, Lyon R C, Ruley E J, Holliday M A

机构信息

Department of Nephrology, Children's National Medical Center, Washington, D.C. 20010, USA.

出版信息

Pediatr Nephrol. 1996 Feb;10(1):33-7. doi: 10.1007/BF00863436.

Abstract

Sodium deficiency and chloride deficiency are associated with a contracted extracellular (ECF) volume and impaired growth in young children and growing rats. In cell culture, lowering sodium in the medium reduces growth factor-stimulated Na+/H+ exchange activity, intracellular pH (pHi), and DNA synthesis. We studied the effect of chronic sodium deficiency and chloride deficiency upon growth, extracellular acid base status, and muscle pHi in young rats. We fed growing rats for 21 days either a control diet, or one deficient in sodium (0.005%), chloride (0.005%), or calories. Muscle pHi was measured using 31phosphorus nuclear magnetic resonance spectroscopy. Rats fed either the sodium-deficient or chloride-deficient diet developed ECF volume contraction and hyponatremia; growth in length and weight was impaired. Muscle pHi was decreased (pHi = 7.074 +/- 0.006, 7.078 +/- 0.006 vs. control 7.100 +/- 0.002; P < 0.02). In calorie-restricted rats, growth was impaired but pHi was not affected (pHi 7.103 +/- 0.008). Metabolic alkalosis developed in the chloride-deficient group; acid base status was not affected in the sodium-deficient group. Despite differences in ECF acid base status, both groups had a low muscle pHi. We speculate that the low muscle pHi was a result of the ECF volume contraction and hyponatremia; low muscle pHi may contribute to retarded cell growth.

摘要

钠缺乏和氯缺乏与幼儿及生长中的大鼠细胞外液(ECF)量减少和生长受损有关。在细胞培养中,降低培养基中的钠会降低生长因子刺激的Na⁺/H⁺交换活性、细胞内pH值(pHi)和DNA合成。我们研究了慢性钠缺乏和氯缺乏对幼鼠生长、细胞外酸碱状态和肌肉pHi的影响。我们给生长中的大鼠喂食对照饮食、钠缺乏(0.005%)饮食、氯缺乏(0.005%)饮食或热量缺乏饮食21天。使用³¹磷核磁共振波谱法测量肌肉pHi。喂食钠缺乏或氯缺乏饮食的大鼠出现ECF量减少和低钠血症;体长和体重增长受损。肌肉pHi降低(pHi = 7.074 ± 0.006、7.078 ± 0.006,而对照组为7.100 ± 0.002;P < 0.02)。在热量限制的大鼠中,生长受损但pHi未受影响(pHi 7.103 ± 0.008)。氯缺乏组出现代谢性碱中毒;钠缺乏组的酸碱状态未受影响。尽管ECF酸碱状态存在差异,但两组肌肉pHi均较低。我们推测低肌肉pHi是ECF量减少和低钠血症的结果;低肌肉pHi可能导致细胞生长迟缓。

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