Preisig P A, Berry C A
Am J Physiol. 1985 Jul;249(1 Pt 2):F124-31. doi: 10.1152/ajprenal.1985.249.1.F124.
To determine the predominant pathway for transepithelial osmotic water flow, the transepithelial osmotic water permeability [Pf(TE)] and the apparent dimensions of paracellular pores and slits were determined in rat proximal convoluted tubules microperfused in vivo. To measure Pf(TE), tubules were perfused with a hyposmotic, cyanide-containing solution. Pf(TE), calculated from the observed volume flux in response to the measured log mean osmotic gradient, was 0.12-0.15 cm/s, assuming sigmaNaCl equal to 1.0-0.7, respectively. The dimensions of the paracellular pathways were determined using measured sucrose and mannitol permeabilities (nonelectrolytes confined to the extracellular space). These were 0.43 and 0.87 X 10(-5) cm/s, respectively. By using the ratio of these permeabilities, their respective free solution diffusion coefficients and molecular radii, and the Renkin equation, the radius of the nonelectrolyte-permeable pores and the total pore area/cm2 surface area/channel length were calculated to be 1.4 nm and 3.56 cm-1, respectively. Similar calculations for slits yielded a slit half-width of 0.8 nm and a total slit area/cm2 surface area/channel length of 3.16 cm-1. The osmotic water permeability of these nonelectrolyte-permeable pathways was calculated by Poiseuille's law to be 0.0018 cm/s (pores) or 0.0014 cm/s (slits), at most 2% of Pf(TE). We conclude that the nonelectrolyte-permeable pathway in the tight junctions is not the major route of transepithelial osmotic water flow in the rat proximal tubule.
为了确定跨上皮渗透水流的主要途径,在体内对大鼠近端曲管进行微灌注,测定了跨上皮渗透水通透性[Pf(TE)]以及细胞旁孔道和缝隙的表观尺寸。为了测量Pf(TE),用低渗含氰溶液灌注肾小管。根据观察到的体积通量对测得的对数平均渗透梯度的响应计算出Pf(TE),假设σNaCl分别等于1.0 - 0.7时,其值为0.12 - 0.15 cm/s。利用测得的蔗糖和甘露醇通透性(限于细胞外空间的非电解质)确定细胞旁途径的尺寸。它们分别为0.43和0.87×10(-5) cm/s。通过使用这些通透性的比值、它们各自的自由溶液扩散系数和分子半径以及伦金方程,计算出非电解质可通透孔道的半径和每平方厘米表面积/通道长度的总孔面积分别为1.4 nm和3.56 cm-1。对缝隙进行类似计算得出缝隙半宽为0.8 nm,每平方厘米表面积/通道长度的总缝隙面积为3.16 cm-1。根据泊肃叶定律计算出这些非电解质可通透途径的渗透水通透性为0.0018 cm/s(孔道)或0.0014 cm/s(缝隙),最多为Pf(TE)的2%。我们得出结论,紧密连接中的非电解质可通透途径不是大鼠近端小管跨上皮渗透水流的主要途径。