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培养的近端肾小管细胞中的转胞吞作用。

Transcytosis in cultured proximal tubular cells.

作者信息

Goligorsky M S, Hruska K A

出版信息

J Membr Biol. 1986;93(3):237-47. doi: 10.1007/BF01871178.

Abstract

Studies were designed to examine fluid-phase pinocytosis in proximal tubular cells. Canine proximal tubules were obtained from the band IV of Percoll gradient centrifugation of the dispersed renal cortex, and were seeded on collagen-coated polycarbonate membranes. Integrity of monolayers was confirmed by electrophysiologic measurements, and by scanning electron microscopy. At confluence cell monolayers were studied in Ussing chambers. The rate of transfer of a marker of fluid-phase pinocytosis, Lucifer Yellow CH, from the luminal to the basolateral bath was three times higher than that occurring in the opposite direction. Fluorescence microscopy demonstrated that Lucifer Yellow was trapped exclusively in the vesicular compartment. Electron microscopy of the monolayers incubated with cationized ferritin added to the luminal or to the basolateral both revealed that endocytic vesicles were formed only at the luminal surface. Luminal-to-basolateral transfer of Lucifer Yellow was almost completely blocked at 0 degrees C, and was significantly diminished by K+ depletion. Transcytosis of Lucifer Yellow was stimulated twofold by 1-oleoyl-2-acetyl-glycerol. Transfer of quin-2 acetoxymethylester across the monolayer was used as a marker of the paracellular pathway, demonstrating the lack of directional selectivity of this transport route. In summary, vectorial fluid-phase pinocytosis in proximal tubular cells represents an additional mechanism contributing to fluid transport in this segment of the nephron.

摘要

研究旨在检测近端肾小管细胞中的液相胞饮作用。犬近端肾小管取自分散肾皮质经Percoll梯度离心的IV带,并接种于胶原包被的聚碳酸酯膜上。单层细胞的完整性通过电生理测量和扫描电子显微镜得以确认。汇合后的细胞单层在Ussing小室中进行研究。液相胞饮作用标志物荧光素黄CH从管腔向基底外侧浴液的转运速率比相反方向的转运速率高3倍。荧光显微镜显示荧光素黄仅被困于囊泡区室。对管腔侧或基底外侧浴液添加阳离子化铁蛋白孵育后的单层细胞进行电子显微镜观察,均显示内吞囊泡仅在管腔表面形成。荧光素黄的管腔向基底外侧转运在0℃时几乎完全受阻,且因钾离子耗竭而显著减弱。1-油酰-2-乙酰甘油使荧光素黄的转胞吞作用增强两倍。喹啉-2-乙酰氧基甲酯跨单层的转运用作细胞旁途径的标志物,表明该转运途径缺乏方向选择性。总之,近端肾小管细胞中的向量液相胞饮作用是该肾单位节段液体转运的另一种机制。

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