VILLEGAS R, BARTON T C, SOLOMON A K
J Gen Physiol. 1958 Nov 20;42(2):355-69. doi: 10.1085/jgp.42.2.355.
The rate constants for diffusion of THO across the red cell membrane of beef and dog, and the rate of entrance of water into the erythrocytes of these species under an osmotic pressure gradient have been measured. For water entrance into the erythrocyte by diffusion the rate constants are 0.10 +/- 0.02 msec.(-1) (beef) and 0.14 +/- 0.03 msec.(-1) (dog); the permeability coefficients for water entrance under a pressure gradient of 1 osmol./cm(3) are 0.28 See PDF for Equation These values permit the calculation of an equivalent pore radius for the erythrocyte membrane of 4.1 A for beef and 7.4 A for dog. In the beef red cell the change in THO diffusion due to osmotically produced cell volume shifts has been studied. The resistance to THO diffusion increases as the cell volume increases. At the maximum volume, (1.06 times normal), THO diffusion is decreased to 0.84 times the normal rate. This change in diffusion is attributed to swelling of the cellular membrane.
已测定了THO在牛肉和犬类红细胞膜上的扩散速率常数,以及在渗透压梯度下这些物种的红细胞中水进入的速率。对于水通过扩散进入红细胞,速率常数分别为0.10±0.02毫秒⁻¹(牛肉)和0.14±0.03毫秒⁻¹(犬);在1渗透压/厘米³的压力梯度下水进入的渗透系数为0.28(见方程的PDF)。这些值允许计算牛肉红细胞膜的等效孔径半径为4.1埃,犬类为7.4埃。在牛肉红细胞中,研究了由于渗透产生的细胞体积变化导致的THO扩散变化。随着细胞体积增加,对THO扩散的阻力增加。在最大体积(正常体积的1.06倍)时,THO扩散降至正常速率的0.84倍。这种扩散变化归因于细胞膜的肿胀。