Hecht B, Kashgarian M, Forrest J N, Hayslett J P
Pflugers Arch. 1978 Oct 18;377(1):69-74. doi: 10.1007/BF00584376.
Micropuncture studies were performed in rats infused with LiCl to induce stable plasma lithium concentrations of 2--3 mEq/l, or with an equivalent amount of NaCl. In free flow experiments LiCl reduced proximal tubule fractional reabsorption of sodium and potassium. Reduced reabsorption of bicarbonate, as reflected by a decrease in TF/PCl, was also observed. Proximal fractional reabsorption of chloride, however, was not affected. The TF/PIn at the end proximal tubule was 2.6 +/- 0.2 (mean +/- SEM) in controls and 2.1 +/- 0.1 in the experimental animals (P less than 0.025). In the distal portions of the nephron lithium treatment caused a fall in fractional reabsorption of water and sodium, while potassium secretion was stimulated in the distal tubule. Previous studies have indicated that lithium influences antidiuretic hormone stimulated water transport in the collecting duct. These experiments demonstrate that lithium also affects the transport of water and electrolytes in multiple nephron segments, including the proximal and distal convolution.
对输注氯化锂以诱导血浆锂浓度稳定在2 - 3 mEq/l的大鼠,或输注等量氯化钠的大鼠进行了微穿刺研究。在自由流动实验中,氯化锂降低了近端小管对钠和钾的分数重吸收。还观察到,如通过TF/PCl降低所反映的,碳酸氢盐重吸收减少。然而,近端小管对氯的分数重吸收未受影响。对照动物近端小管末端的TF/PIn为2.6±0.2(平均值±标准误),实验动物为2.1±0.1(P<0.025)。在肾单位的远端部分,锂处理导致水和钠的分数重吸收下降,而远端小管的钾分泌受到刺激。先前的研究表明,锂影响抗利尿激素刺激的集合管水转运。这些实验表明,锂还影响包括近端和远端曲部在内的多个肾单位节段的水和电解质转运。