Freedman J C, Hoffman J F
J Gen Physiol. 1979 Aug;74(2):157-85. doi: 10.1085/jgp.74.2.157.
Human red blood cells have been incubated in the presence of nystatin, which allows Na and K, as well as Cl and pH to equilibrate rapidly when cell volume is set with external impermeant sucrose. The intracellular mean ionic activity coefficients, relative to values in the extracellular solution, for KCl and NaCl are 1.01 +/- 0.02 and 0.99 +/- 0.02 (SD, n = 10), respectively, and are independent of external pH, pH o, and of [sucrose]o. With nystatin the dependence of red cell volume on [sucrose]o deviates from ideal osmotic behavior by as much as a factor of three. A virial equation for the osmotic coefficient, phi, of human hemoglobin, Hb, accounts for the cell volumes, and is the same as that which describes Adair's measurements of phi Hb for Hb isolated from sheep and ox bloods. In the presence of nystatin the slope of the acid-base titration curve of the cells is independent of cell volume, implying that the charge on impermeant cellular solutes is independent of Hb concentration at constant pH. By modifying the Jacobs-stewart equations (1947. J. Cell. Comp. Physiol. 30: 79--103) with the osmotic coefficients of Hb and of salts, a nonideal thermodynamic model has been devised which predicts equilibrium Donnan ratios and red cell volume from the composition of the extracellular solution and from certain parameters of the cells. In addition to accounting for the dependence of cell volume on osmotic pressure, the model also describes accurately the dependence of Donnan ratios and cell volumes on pHo either in the presence or absence of nystatin.
人类红细胞在制霉菌素存在的情况下进行孵育,当用外部非渗透性蔗糖设定细胞体积时,制霉菌素可使钠、钾以及氯和pH值迅速达到平衡。相对于细胞外溶液中的值,氯化钾和氯化钠的细胞内平均离子活度系数分别为1.01±0.02和0.99±0.02(标准差,n = 10),且与外部pH值(pHo)和蔗糖浓度([蔗糖]o)无关。使用制霉菌素时,红细胞体积对[蔗糖]o的依赖性偏离理想渗透行为多达三倍。人类血红蛋白(Hb)的渗透系数φ的维里方程可解释细胞体积,并且与描述从绵羊和牛血中分离出的Hb的阿代尔对φ Hb测量值的方程相同。在制霉菌素存在的情况下,细胞酸碱滴定曲线的斜率与细胞体积无关,这意味着在恒定pH值下,非渗透性细胞溶质上的电荷与Hb浓度无关。通过用Hb和盐的渗透系数修改雅各布斯 - 斯图尔特方程(1947年。《细胞与比较生理学杂志》30:79 - 103),设计了一个非理想热力学模型,该模型可根据细胞外溶液的组成和细胞的某些参数预测平衡唐南比和红细胞体积。除了解释细胞体积对渗透压的依赖性外,该模型还准确描述了在有或没有制霉菌素的情况下,唐南比和细胞体积对pHo的依赖性。