Weinman E J, Suki W N, Eknoyan G
Am J Physiol. 1976 Sep;231(3):777-80. doi: 10.1152/ajplegacy.1976.231.3.777.
Water reabsorption in the proximal convoluted tubule of the rat kidney was examined by in vivo microperfusion techniques in order to examine the effect of D-glucose within the tubular lumen. When tubules were perfused with a balanced artificial solution containing Na, K, Cl, HCO3, urea, and D-glucose, absolute reabsorption averaged 4.01 +/- 0.24 nl/min per mm. Addition of D-glucose to the NaCl perfusate enhanced water reabsorption to values similar to those obtained with the balanced artificial perfusate. The enhanced water reabsorption consequent to the addition of D-glucose to the NaCl perfusion solution was completely inhibited by addition of phloridzin to the perfusate. The addition of an unabsorbed hexose, 2-deoxy-D-glucose, to the NaCl perfusate failed to enhance water reabsorption, whereas the addition of an incompletely reabsorbed sugar that is not metabolized, 3-O-methyl-D-glucose, resulted in partial enhancement of theabsolute rate of water reabsorption. These studies demonstrate that D-glucose has the specific effect of augmenting water reabsorption in the proximal tubule of the rat kidney.
为了研究肾小管腔内D-葡萄糖的作用,采用体内微灌注技术对大鼠肾脏近端曲管中的水重吸收进行了检测。当用含有Na、K、Cl、HCO3、尿素和D-葡萄糖的平衡人工溶液灌注肾小管时,绝对重吸收平均为每毫米每分钟4.01±0.24 nl。向NaCl灌注液中添加D-葡萄糖可使水重吸收增强至与平衡人工灌注液相似的值。向NaCl灌注溶液中添加D-葡萄糖后增强的水重吸收被向灌注液中添加根皮苷完全抑制。向NaCl灌注液中添加未被吸收的己糖2-脱氧-D-葡萄糖未能增强水重吸收,而添加一种未完全重吸收且不被代谢的糖3-O-甲基-D-葡萄糖则导致水重吸收绝对速率部分增强。这些研究表明,D-葡萄糖具有增强大鼠肾脏近端小管水重吸收这种特定作用。