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Direct fluorescence measurement of diffusional water permeability in the vasopressin-sensitive kidney collecting tubule.

机译:对加压素敏感的肾脏收集管中扩散水渗透性的直接荧光测量。

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摘要

A fluorescence method has been developed for accurate and instantaneous measurement of transepithelial diffusional water permeability (Pd) in perfused kidney tubules based on the sensitivity of the fluorophore aminonapthelane trisulfonic acid (ANTS) to solution H2O/D2O content. The fluorescence of ANTS was 3.2-fold lower in an H2O buffer than in a D2O buffer. The response of ANTS fluorescence to a change in solution H2O/D2O content occurred in less than 1 ms and was due to a collisional quenching mechanism. Isolated cortical (CCT) and outer medullary (OMCT) collecting tubules from rabbit were perfused with an isosmotic D2O buffer at specified lumen flow rates (2-100 nl/min); tubules were bathed in isosmotic H2O or D2O buffers in which vasopressin (VP) could be added rapidly. Lumen fluorescence was monitored by quantitative epifluorescence microscopy at 380 +/- 5 nm excitation and greater than 530 emission wavelengths. Pd was determined from tubule geometry, lumen flow, ANTS fluorescence, and ANTS fluorescence vs. H2O/D2O calibration relation. The instrument response time for a change in bath H2O/D2O content was less than 4 s. At 37 degrees C, Pd values (mean +/- SE in cm/s x 10(4] were 6.4 +/- 1.0 (-VP, n = 9) and 14.3 +/- 1.1 (+250 microU/ml bath VP, n = 9) in the CCT, and 5.8 +/- 1.0 (-VP, n = 6) and 15.3 +/- 2.0 (+VP, n = 6) in the OMCT; at 23 degrees C, Pd was 5.1 +/- 0.6 (-VP, n = 4) and 7.8 +/- 0.6 (+VP, n = 4) in the CCT. In response to rapid addition of 250 micro U/ml vasopressin to the bath, CCT Pd remained unchanged for 71 +/- l0s (n = 9, 37 degree C) and 170 +/- 45 s (n = 4, 23 degree C); this was followed by a slow increase in Pd(TI/2 = 91 +/- 17 s, 37 degree C; 119 +/- 31 s, 23 degree C) to the new steady-state value. These results provide a new approach for study of transepithelial water transport in kidney tubules. Compared with 3H20 methods, the fluorescence method is superior in technical simplicity, time resolution, and accuracy. The improved time resolution is important for examination of the pre-steady-state kinetics of vasopressin-induced signalling events resulting in the hydroosmotic response.
机译:基于荧光团氨基萘基三磺酸(ANTS)对溶液中H2O / D2O含量的敏感性,开发了一种荧光方法,用于准确,瞬时地测量灌注的肾小管中的上皮扩散水渗透率(Pd)。在H2O缓冲液中,ANTS的荧光比D2O缓冲液低3.2倍。在不到1 ms的时间内,ANTS荧光对溶液H2O / D2O含量变化的响应是由于碰撞猝灭机制引起的。在指定的管腔流速(2-100 nl / min)下,用等渗D2O缓冲液灌注兔的分离的皮质(CCT)和髓外(OMCT)收集管。将小管浸入等渗H2O或D2O缓冲液中,在其中可以快速添加加压素(VP)。通过定量落射荧光显微镜在380 +/- 5nm激发和大于530个发射波长下监测流明荧光。根据肾小管的几何形状,管腔流量,ANTS荧光和ANTS荧光与H2O / D2O的校准关系确定Pd。浴中H2O / D2O含量变化的仪器响应时间少于4 s。在37摄氏度时,Pd值(以cm / sx 10(4)表示的平均值+/- SE为6.4 +/- 1.0(-VP,n = 9)和14.3 +/- 1.1(+250 microU / ml浴液VP, CCT中的n = 9),OMCT中的5.8 +/- 1.0(-VP,n = 6)和15.3 +/- 2.0(+ VP,n = 6);在23摄氏度时,Pd为5.1 + / -在CCT中为0.6(-VP,n = 4)和7.8 +/- 0.6(+ VP,n = 4)。响应快速向浴中添加250 micro U / ml加压素,CCT Pd在71时保持不变+/- 10s(n = 9,37摄氏度)和170 +/- 45 s(n = 4,23摄氏度);随后Pd缓慢增加(TI / 2 = 91 +/- 17 s) (37摄氏度; 119 +/- 31 s,23摄氏度)到新的稳态值,这些结果为研究肾小管中的上皮水运输提供了一种新的方法,与3H20方法相比,荧光法具有更好的在技​​术简便性,时间分辨率和准确性方面。改进的时间分辨率对于检查加压素诱导的导致水渗透的信号事件的稳态前动力学非常重要响应。

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