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致密斑细胞通过呋塞米敏感的Na⁺-2Cl⁻-K⁺协同转运感知管腔氯化钠浓度。

Macula densa cells sense luminal NaCl concentration via furosemide sensitive Na+2Cl-K+ cotransport.

作者信息

Schlatter E, Salomonsson M, Persson A E, Greger R

机构信息

Physiologisches Institut, Universität Freiburg, Federal Republic of Germany.

出版信息

Pflugers Arch. 1989 Jul;414(3):286-90. doi: 10.1007/BF00584628.

Abstract

The macula densa cells of the juxtaglomerular apparatus probably serve as the sensor cells for the signal which leads to the appropriate tubuloglomerular feedback response. The present study reports basolateral membrane voltage (PDbl) measurements in macula densa cells. We isolated and perfused in vitro thick ascending limb segments with the glomerulus, and therefore the macula densa cells, and the early distal tubule still attached. Macula densa cells were impaled with microelectrodes under visual control. PDbl was recorded in order to examine how these cells sense changes in luminal NaCl concentrations. The addition of furosemide, a specific inhibitor of the Na+2Cl-K+ cotransporter in the thick ascending limb, to the lumen of the perfused thick ascending limb hyperpolarized PDbl from -55 +/- 5 mV to -79 +/- 4 mV (n = 7). Reduction of NaCl in the lumen perfusate from 150 mmol/l to 30 mmol/l also hyperpolarized PDbl from -48 +/- 3 mV to -66 +/- 5 mV (n = 4). A Cl- concentration step in the bath from 150 mmol/l to 30 mmol/l resulted in a 24 +/- 4 mV (n = 4) depolarization of PDbl. This depolarization of PDbl was absent when furosemide was present during the Cl- concentration step. These data suggest that the macula densa cells sense changes in luminal NaCl concentration via coupled uptake of Na+ and Cl-.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

近球小体的致密斑细胞可能作为信号的传感细胞,该信号会引发适当的管球反馈反应。本研究报告了致密斑细胞基底外侧膜电压(PDbl)的测量结果。我们分离并在体外灌注了带有肾小球、致密斑细胞以及仍相连的早期远曲小管的厚升支段。在视觉控制下,用微电极刺入致密斑细胞。记录PDbl以检查这些细胞如何感知管腔内NaCl浓度的变化。向灌注的厚升支管腔内添加呋塞米(厚升支中Na+2Cl-K+共转运体的特异性抑制剂),使PDbl从-55±5 mV超极化至-79±4 mV(n = 7)。将管腔灌注液中的NaCl从150 mmol/l降至30 mmol/l,也使PDbl从-48±3 mV超极化至-66±5 mV(n = 4)。浴液中Cl-浓度从150 mmol/l降至30 mmol/l会导致PDbl出现24±4 mV(n = 4)的去极化。当在Cl-浓度变化步骤中存在呋塞米时,PDbl的这种去极化消失。这些数据表明,致密斑细胞通过Na+和Cl-的偶联摄取来感知管腔内NaCl浓度的变化。(摘要截短于250词)

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