In vitro simulations of peritoneal dialysis: a systematic approach to demonstrating isonatric contraction with sodium dextran sulfate.

A D Harding, K D Nolph
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Abstract

Two sodium dextran sulfates (DS) were investigated as possible osmotic agents for use in peritoneal dialysis using an in vitro model. Initial studies with a medium molecular weight DS (Mn = 4.000) showed that sodium clearances were higher than water clearances and that both are linear functions of the concentration of polymer. In another series of studies using a low molecular weight DS (Mn = 5,000), it was found that sodium clearances decrease linearly as sodium chloride (NaCL) is added to the initial dialysate solution with only a slight increase in ultrafiltration. By plotting sodium clearances and water clearances as functions of added NaCl at constant polymer concentration, the point at which sodium clearance and water clearances are equal can be determined and, at that point, isonatric contraction can be demonstrated in the vitro model.

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腹膜透析的体外模拟:一种系统的方法来证明与葡聚糖硫酸钠等钠收缩。
两种葡聚糖磺酸钠(DS)作为可能的渗透剂用于腹膜透析的体外模型进行了研究。对中等分子量DS (Mn = 4.000)的初步研究表明,钠清除率高于水清除率,两者都是聚合物浓度的线性函数。在另一系列使用低分子量DS (Mn = 5000)的研究中,发现在初始透析液溶液中加入氯化钠(NaCL),仅稍微增加超滤,钠间隙线性降低。通过绘制恒定聚合物浓度下加入NaCl的钠清除率和水清除率的函数图,可以确定钠清除率和水清除率相等的点,并且在该点上可以在体外模型中证明等声收缩。
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