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首页> 外文期刊>American Journal of Physiology >Insulin uptake across the luminal membrane of the rat proximal tubule in vivo and in vitro
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Insulin uptake across the luminal membrane of the rat proximal tubule in vivo and in vitro

机译:在体内和体外胰岛素吸收大鼠近端小管的腔膜

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We visualized insulin uptake in vivo across the apical membrane of the rat proximal tubule (PT) by confocal microscopy; we compared it with in vitro findings in a rat PT cell line (WKPT) using fluorescence microscopy and flow cytometry. Surface tubules were observed in vivo with a 633-nm single laser-illuminated real-time video-rate confocal scanning microscope in upright configuration for optical sectioning below the renal capsule. Fields were selected containing proximal and distal tubules; Cy5-labeled insulin was injected twice (the second time after ~140 min) into the right jugular vein, and the fluorescence signal (at 650-670 nm) was recorded. Fluorescence was detected almost immediately at the brush-border membrane (BBM) of PT cells only, moving inside cells within 30-40 min. As a measure of insulin uptake, the ratio of the fluorescence signal after the second injection to the first doubled (ratio: 2.11 ± 0.26, mean ± SE, n = 10), indicating a "priming," or stimulating, effect of insulin on its uptake mechanism at the BBM. This effect did not occur after pretreatment with intravenous lysine (ratio: 1.03 ± 0.07, n = 6; P < 0.01). Cy2-or Cy3-labeled insulin uptake in a PT cell line in vitro was monitored by 488-nm excitation fluorescence microscopy using an inverted microscope. Insulin localized toward the apical membrane of these cells. Semiquantitative analysis of insulin uptake by flow cytometry also demonstrated a priming effect (upregulation) on insulin internalization in the presence of increasing amounts of insulin, as was observed in vivo; moreover, this effect was not seen with, or affected by, the similarly endocytosed ligand β2-glycoprotein. Copyright ? 2009 the American Physiological Society.
机译:通过共聚焦显微镜观察大鼠近端小管(PT)的胰岛素摄取胰岛素摄取;我们使用荧光显微镜和流式细胞术在大鼠Pt细胞系(WKPT)中与体外发现进行比较。在体内观察到表面小管,以633-nm单次激光照明的实时视频速率共聚焦扫描显微镜,用于肾囊下方的光学切片。选择含有近端和远端小管的字段;将Cy5标记的胰岛素喷射两次(〜140分钟后的第二次)进入正确的颈静脉,并记录荧光信号(在650-670nm处)。几乎立即在Pt细胞的刷桥膜(BBM)上几乎立即检测到荧光,在30-40分钟内移动内部。作为胰岛素摄取的衡量标准,第二次注射后的荧光信号与第一加倍(比率:2.11±0.26,平均值±SE,N = 10),表明胰岛素的“灌注”或刺激的效果它在BBM的摄取机制。在用静脉内赖氨酸(比率:1.03±0.07,n = 6; P <0.01)预处理后不会发生这种效果。使用倒置显微镜通过488-NM激发荧光显微镜监测到体外Pt细胞系中的Cy2-或Cy3标记的胰岛素摄取。胰岛素局部朝向这些细胞的顶端膜。流式细胞仪的胰岛素摄取的半定量分析还证明了在体内观察到胰岛素的增加时胰岛素内化的引发效果(上调);此外,这种效果未被同样的内焦配体β2-糖蛋白与类似内吞的配体β2-糖蛋白看出。版权? 2009年美国生理社会。

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