DuPre A M, Hempling H G
J Cell Physiol. 1978 Dec;97(3 Pt 2 Suppl 1):381-96. doi: 10.1002/jcp.1040970313.
Ehrlich ascites tumor cells were grown and maintained in continuous spinner culture. The population of dividing cells was synchronized by a double thymidine block technique. Cell cycle phases were determined graphically by plotting mitotic index, cell number, and DNA synthesis against time. Changes in the osmotic properties of Ehrlich ascites tumor cells during the cell cycle are described. Permeability to water is highest at the initiation of S and progressively decreases to its lowest value just after mitosis. Heats of activation for water permeability vary during the cell cycle, ranging from 9-14 kcal/mole. Results may imply changes in the state of water in the membrane during the cycle. The volume of osmotically active cell water is highest during S and early G2 and decreases during the mitotic phase, as cells undergo division. Total water content remains stable at 82% (w/w) during the cycle. Total concentration of the three major ions (Na, K, Cl), expressed as mEq/liter total cell volume, does not change. The fraction of total cell water which is osmotically active (Ponder's R) decreased gradually from 0.75 at S to about 0.56 following mitosis. Findings suggest that a fraction of the total water within the cell exists in a "bound" form and is, therefore, incapable of being shifted under the driving force of osmotic pressure. This fraction of bound water increases during the cell cycle. Possible alterations in membrane fluidity and the state of water in the cell are discussed.
艾氏腹水癌细胞在连续旋转培养中生长和维持。通过双胸腺嘧啶核苷阻断技术使分裂细胞群体同步化。通过绘制有丝分裂指数、细胞数量和DNA合成随时间的变化曲线,以图形方式确定细胞周期阶段。描述了艾氏腹水癌细胞在细胞周期中渗透特性的变化。水通透性在S期开始时最高,并在有丝分裂后逐渐降至最低值。水通透性的活化热在细胞周期中有所不同,范围为9-14千卡/摩尔。结果可能意味着细胞周期中膜内水的状态发生了变化。在S期和G2早期,渗透活性细胞水的体积最高,在有丝分裂期随着细胞分裂而减少。在整个周期中,总含水量保持在82%(w/w)稳定。三种主要离子(Na、K、Cl)的总浓度,以毫当量/升总细胞体积表示,没有变化。渗透活性细胞水占总细胞水的比例(庞德尔氏R)从S期的0.75逐渐降至有丝分裂后的约0.56。研究结果表明,细胞内总水的一部分以“结合”形式存在,因此在渗透压驱动下无法移动。这种结合水的比例在细胞周期中增加。讨论了膜流动性和细胞内水状态可能的改变。