Hutagalung R I, Schwarz F J, Kirchgessner M
Arch Tierernahr. 1977 Jun;27(6):347-57. doi: 10.1080/17450397709424590.
The effect of the inhibitors 2,4-dinitrophenol (DNP) and g-strophantin (ouabain) on the intestinal uptake and cellular transfer of zinc (Zn) and the effect of the organic ligands histidine and EDTA were studied in vitro with everted intestinal sacs of normally maintained rats. Zn was added to the incubation solution as ZnCl2 or as ZnCl2 mixed with histidine in a molar ratio of 200 : 1 and mixed with EDTA in a molar ratio of 1 : 1 or 10 : 1. The DNP in a concentrationof 0.05 mM proved sufficient to greatly inhibit the uptake and transfer of Zn from the solution containing ZnCl2 mixed with an excess of histidine. DNP also reduced Zn absorption when ZnCl2 alone as added. On the other hand, the presence of DNP in the solution containing ZnCl2 with EDTA was found to increase the transfer of Zn and its ligand. In the presence of EDTA, Zn absorption may, therefore, be controlled by the uptake and transfer of the ligand. Ouabain at the contration of 5 mM and 10 mM greatly reduced Zn uptake by the intestinal wall and the celluar Zn transfer from the solution containing ZnCl2 and histidine. There was only a small effect of ouabain on Zn absorption whether ZnCl2 is added alone or with EDTA. The addition of an excess of histidine as ligand to ZnCl2 in the control groups markedly improved Zn absorption. In contrast to this, the addition of EDTA to ZnCl2 reduces the intestinal Zn uptake and increases the transfer of Zn compared to ZnCl2 alone.
在体外,使用正常饲养大鼠的外翻肠囊,研究了抑制剂2,4 -二硝基苯酚(DNP)和毒毛花苷(哇巴因)对锌(Zn)的肠道摄取和细胞转运的影响,以及有机配体组氨酸和乙二胺四乙酸(EDTA)的作用。锌以氯化锌(ZnCl₂)的形式添加到孵育溶液中,或以摩尔比200:1与组氨酸混合的ZnCl₂形式添加,并以1:1或10:1的摩尔比与EDTA混合。浓度为0.05 mM的DNP被证明足以显著抑制锌从含有与过量组氨酸混合的ZnCl₂溶液中的摄取和转运。当单独添加ZnCl₂时,DNP也会降低锌的吸收。另一方面,发现在含有ZnCl₂和EDTA的溶液中存在DNP会增加锌及其配体的转运。因此,在存在EDTA的情况下,锌的吸收可能受配体的摄取和转运控制。浓度为5 mM和10 mM的哇巴因极大地降低了肠壁对锌的摄取以及锌从含有ZnCl₂和组氨酸的溶液中的细胞转运。无论单独添加ZnCl₂还是与EDTA一起添加,哇巴因对锌吸收的影响都很小。在对照组中,向ZnCl₂中添加过量的组氨酸作为配体可显著改善锌的吸收。与此相反,与单独的ZnCl₂相比,向ZnCl₂中添加EDTA会降低肠道对锌的摄取并增加锌的转运。