Urdaneta E, Idoate I, Larralde J
Departamento de Fisiología y Nutrición, Universidad de Navarra, Pamplona, Spain.
Br J Nutr. 1998 May;79(5):439-46. doi: 10.1079/bjn19980074.
Fluoxetine is one of the most widely used antidepressants and nowadays it is also being used to manage obesity problems. In our laboratory we demonstrated that the drug inhibited sugar absorption (Monteiro et al. 1993). The aim of the present work was to determine the effect of fluoxetine on intestinal leucine absorption. Using a procedure of successive absorptions in vivo the drug diminished amino acid absorption by 30% (P < 0.001). Experiments in vitro in isolated jejunum also revealed a reduction in leucine uptake of 37% (P < 0.001). In both cases fluoxetine only affected mediated transport without altering diffusion. In a preparation enriched in basolateral membrane, fluoxetine inhibited the Na+,K(+)-ATPase (EC 3.6.1.37) activity (55%; P < 0.001) in a non-competitive manner with an inhibition constant (Ki) value of 0.92 mM. Leucine uptake by brush-border membrane vesicles was diminished by the drug (a reduction of 48% was observed at 30s, P < 0.001); only the apical Na(+)-dependent transport system of the amino acid was modified and the inhibition was non-competitive. Leucine uptake in the presence of lysine indicated that transporter B was involved. These results suggest that fluoxetine reduces leucine absorption by its action on the basolateral and apical membrane of the enterocyte; the nutritional status of the patients under drug treatment may be affected as neutral amino acid absorption is decreased.
氟西汀是使用最为广泛的抗抑郁药之一,如今也被用于治疗肥胖问题。在我们实验室,我们证实该药物可抑制糖分吸收(Monteiro等人,1993年)。本研究的目的是确定氟西汀对肠道亮氨酸吸收的影响。采用体内连续吸收程序,该药物使氨基酸吸收减少了30%(P < 0.001)。在离体空肠进行的体外实验也显示亮氨酸摄取减少了37%(P < 0.001)。在这两种情况下,氟西汀仅影响介导转运,而不改变扩散。在富含基底外侧膜的制剂中,氟西汀以非竞争性方式抑制Na +,K(+)-ATP酶(EC 3.6.1.37)活性(55%;P < 0.001),抑制常数(Ki)值为0.92 mM。该药物使刷状缘膜囊泡对亮氨酸的摄取减少(在30秒时观察到减少48%,P < 0.001);只有氨基酸的顶端Na(+)-依赖性转运系统受到影响,且抑制作用为非竞争性。在赖氨酸存在的情况下亮氨酸摄取表明转运体B参与其中。这些结果表明,氟西汀通过作用于肠细胞的基底外侧膜和顶端膜来减少亮氨酸吸收;药物治疗患者的营养状况可能会受到影响,因为中性氨基酸吸收减少。