首页> 美国卫生研究院文献>The Journal of General Physiology >Solvent drag measurement of transcellular and basolateral membrane NaCl reflection coefficient in kidney proximal tubule
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Solvent drag measurement of transcellular and basolateral membrane NaCl reflection coefficient in kidney proximal tubule

机译:肾脏近端小管中跨细胞膜和基底外侧膜NaCl反射系数的溶剂阻滞测量

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摘要

The NaCl reflection coefficient in proximal tubule has important implications for the mechanisms of near isosmotic volume reabsorption. A new fluorescence method was developed and applied to measure the transepithelial (sigma NaClTE) and basolateral membrane (sigma NaClcl) NaCl reflection coefficients in the isolated proximal straight tubule from rabbit kidney. For sigma NaClTE measurement, tubules were perfused with buffers containing 0 Cl, the Cl-sensitive fluorescent indicator 6- methoxy-N-[3-sulfopropyl] quinolinium and a Cl-insensitive indicator fluorescein sulfonate, and bathed in buffers of differing cryoscopic osmolalities containing NaCl. The transepithelial Cl gradient along the length of the tubule was measured in the steady state by a quantitative ratio imaging technique. A mathematical model based on the Kedem- Katchalsky equations was developed to calculate the axial profile of [Cl] from tubule geometry, lumen flow, water (Pf) and NaCl (PNaCl) permeabilities, and sigma NaClTE. A fit of experimental results to the model gave PNaCl = (2.25 +/- 0.2) x 10(-5) cm/s and sigma NaClTE = 0.98 +/- 0.03 at 23 degrees C. For measurement of sigma NaClbl, tubule cells were loaded with SPQ in the absence of Cl. NaCl solvent drag was measured from the time course of NaCl influx in response to rapid (less than 1 s) Cl addition to the bath solution. With bath-to-cell cryoscopic osmotic gradients of 0, -60, and +30 mosmol, initial Cl influx was 1.23, 1.10, and 1.25 mM/s; a fit to a mathematical model gave sigma NaClbl = 0.97 +/- 0.04. These results indicate absence of NaCl solvent drag in rabbit proximal tubule. The implications of these findings for water and NaCl movement in proximal tubule are evaluated.
机译:近端小管中的NaCl反射系数对近等渗体积重吸收的机制具有重要意义。开发了一种新的荧光方法,并将其用于测量兔肾近端直小管中的跨上皮(sigma NaClTE)和基底外侧膜(sigma NaClcl)NaCl反射系数。对于sigma NaClTE测量,将小管用含0 Cl,Cl敏感的荧光指示剂6-甲氧基-N- [3-磺丙基]喹啉鎓和Cl不敏感的指示荧光素磺酸盐的缓冲液灌注,并浸入不同的低温渗透压缓冲液中氯化钠通过定量比率成像技术在稳态下测量沿肾小管长度的上皮Cl梯度。开发了基于Kedem-Katchalsky方程的数学模型,以从小管几何形状,管腔流量,水(Pf)和NaCl(PNaCl)渗透率以及sigma NaClTE来计算[Cl]的轴向分布。实验结果与模型的拟合给出了PNaCl =(2.25 +/- 0.2)x 10(-5)cm / s和sigma NaClTE = 23°C时的0.98 +/- 0.03。对于sigma NaClbl的测量,小管细胞是在没有Cl的情况下用SPQ加载。从NaCl流入的时间过程中测量NaCl溶剂阻力,以响应向浴液中快速(少于1 s)添加Cl的反应。当浴池间的低温渗透压分别为0,-60和+30 mosmol时,初始Cl流入量为1.23、1.10和1.25 mM / s。对数学模型的拟合得到sigma NaClbl = 0.97 +/- 0.04。这些结果表明在兔近端小管中不存在NaCl溶剂阻力。评价了这些发现对近端小管中水和氯化钠运动的影响。

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