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In vitro evaluation of peritoneal glucose transport in the rabbit

机译:兔腹膜葡萄糖转运的体外评估

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To evaluate the rate of glucose diffusion through separate transport barriers against the net solute transport during peritoneal dialysis, a layer of mesothelium with adjacent connective tissue from rabbits was investigated in a modified Ussing chamber. The transport of glucose of initial feed concentrations 1.2, 2.0 and 3.6 g% (in Hanks' fluid) from the mesothelial to the interstitial side of the membrane was studied with the mesothelium intact or denuded (2.5 mmol/l sodium deoxycholate) peritoneum for 120 min or 150min, respectively. A mathematical model was used to calculate the diffusive permeability (P) for the investigated specimens. The model assumed diffusion transport between two well mixed compartments, and took into account the change of the concentration in the feed solution and the correction for sampling. The transport rates were stable across all studies with the intact peritoneum, and P was 2.62±1.18x10-4 cm/s (mean±SD). This P value used for a membrane area 1.75 m2, as assumed usually for CAPD patients, yields glucose clearance through the investigated barrier of 4.58 ml/s, which is higher than value reported from clinical transport studies. Removal of the mesothelium increased the transport coefficient (P) by about 11, 40% and 90% for the 1.2, 2.0 and 3.6 g% glucose concentration, respectively. We conclude that the mesothelium and adjacent connective tissue layer may be an important transport barrier.
机译:为了评估在腹膜透析过程中葡萄糖通过单独的运输屏障扩散对净溶质运输的扩散速率,在改良的Ussing室中研究了与兔相邻结缔组织的间皮层。研究了初始进料浓度为1.2、2.0和3.6 g%(在汉克斯氏液中)的葡萄糖从间皮向膜的间质侧的转运过程,研究了完整的或裸露的腹膜上皮(2.5 mmol / l脱氧胆酸钠)120分钟或150分钟。使用数学模型来计算所研究样品的扩散渗透率(P)。该模型假设在两个充分混合的隔室之间进行扩散传输,并考虑了进料溶液中浓度的变化和采样校正。在所有腹膜完整的研究中,转运速率均稳定,P为2.62±1.18x10-4 cm / s(平均值±SD)。如CAPD患者通常所假设的,用于膜面积的这个P值是1.75 m2,通过所研究的屏障产生的葡萄糖清除率为4.58 ml / s,高于临床运输研究报告的值。对于1.2、2.0和3.6 g%的葡萄糖浓度,去除间皮可分别提高约11、40%和90%的转运系数(P)。我们得出结论,间皮和邻近的结缔组织层可能是重要的运输屏障。

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