首页> 美国卫生研究院文献>The Journal of Physiology >The effect of external pH on osmotic permeability ion and fluid transport across isolated frog skin.
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The effect of external pH on osmotic permeability ion and fluid transport across isolated frog skin.

机译:外部pH值对穿过孤立的青蛙皮肤的渗透性离子和液体运输的影响。

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摘要

1. The rate of volume flow across frog skin induced by an osmotic gradient was measured when normal (7.4) and low pH (2.28) solutions bathed the outside. The osmotic permeabilities (Pos) were 2.4 +/- 0.4 and 4.8 +/- 1.0 micrometer/sec, respectively. The change in Pos induced by low pH was reversible. 2. Volume flow in the absence of an osmotic gradient was measured at normal and low pH. Values were 0.69 +/- 0.13 and 1.1 +/- 0.2 microliter/hr. cm2, respectively; the paired differences were significant (P less than 0.0025). This change in rate was partially reversible upon return to normal pH. 3. The potential difference (V) and short-circuit current (Is) across skins were measured under several conditions and the following equivalent parameters in a simplified electrical model were computed: total resistance (Rt); shunt resistance (Rs); electromotive force of the pump (ENa); and salt transport at open circuit (JNaCl). Representative figures were (a), at pH 7.4: Is = 14 +/- 1.6 microampere/cm2; Rt = 3.3 +/- 0.4 komega.cm2; Rs = 7.2 +/- 1.0 komega.cm2; ENA = 103 +/- 38 mV; JNaCl = 7.2 +/- 1.2 microampere/cm2; (b) at pH 2.28: Is = 8.3 +/- 2.1 microampere/cm2; Rt = 0.46 +/- 0.12 komega. cm2; Rs = 0.65 +/- 0.06 komega.cm2; ENa = 59 +/- 25 mV; JNaCl = 9.4 +/- 3.3 microampere/cm2. 4. From the electrical parameters measured concomitantly with the rate of fluid transport in given experiments, the expected salt concentration of the transported fluid was 0.30 +/- 0.08 and 0.38 +/- 0.08 mole/l. at normal and low pH, respectively, or some 3-4 times hyperosmotic with respect to the medium. 5. Treatment with low pH on the outside has been found to open the intercellular junctions in previous studies. The present results suggest that, if such an effect occurs, it is localized only to a small fraction of the cell perimeter. Making certain assumptions that fraction could be as low as 0.003. 6. Low pH on the outside reversibly changes the electrical parameters of a 'tight' epithelium like the frog skin into values more typical of 'intermediate' epithelia; both the total and shunt resistances decrease to about 0.1 of their normal values. These changes do not apparently affect the osmolarity of the transported fluid.
机译:1.在正常(7.4)和低pH(2.28)溶液浸入外部时,测量由渗透梯度引起的跨青蛙皮肤的体积流量。渗透渗透率(Pos)分别为2.4 +/- 0.4和4.8 +/- 1.0微米/秒。低pH诱导的Pos的变化是可逆的。 2.在正常和低pH下,在没有渗透梯度的情况下测量体积流量。值是0.69 +/- 0.13和1.1 +/- 0.2微升/小时。平方厘米;配对差异显着(P小于0.0025)。回复至正常pH值后,这种速率变化是部分可逆的。 3.在几种条件下测量皮肤上的电位差(V)和短路电流(Is),并在简化的电气模型中计算以下等效参数:总电阻(Rt);分流电阻(Rs);泵的电动势(ENa);和盐分在开路运输(JNaCl)。代表性数据为(a),pH 7.4:Is = 14 +/- 1.6微安/ cm2; Rt = 3.3 +/- 0.4Ω·cm2; Rs = 7.2 +/- 1.0Ω·cm2; ENA = 103 +/- 38毫伏; JNaCl = 7.2 +/- 1.2微安/ cm2; (b)在pH 2.28时:Is = 8.3 +/- 2.1微安/ cm2; Rt = 0.46 +/- 0.12komega。平方厘米; Rs = 0.65 +/- 0.06Ω·cm2; ENa = 59 +/- 25毫伏; JNaCl = 9.4 +/- 3.3微安/ cm 2。 4.根据在给定实验中与液体传输速率同时测量的电参数,预期的液体传输盐浓度为0.30 +/- 0.08和0.38 +/- 0.08摩尔/升。分别在正常和低pH下,或相对于培养基高渗3-4倍。 5.在先前的研究中,发现在外部用低pH值处理可打开细胞间连接。目前的结果表明,如果发生这种影响,它只会局限于细胞周围的一小部分。做出某些假设,该分数可能低至0.003。 6.外部的低pH值可逆地改变“紧密”上皮(如青蛙皮)的电参数,使其变为“中间”上皮更典型的值;总电阻和分流电阻均降至其正常值的约0.1。这些变化显然不会影响所输送流体的渗透压。

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