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蛋鸡空肠近端和远端的电生性葡萄糖转运过程及通透性比较。

Comparison of electrogenic glucose transport processes and permeability between proximal and distal jejunum of laying hens.

作者信息

Metzler-Zebeli B U, Hollmann M, Aschenbach J R, Zebeli Q

机构信息

a University Clinic for Swine, Department for Farm Animals and Veterinary Public Health , University of Veterinary Medicine , Vienna , Austria.

b Institute of Animal Nutrition and Functional Plant Compounds, Department for Farm Animals and Veterinary Public Health , University of Veterinary Medicine, Vienna , Vienna , Austria.

出版信息

Br Poult Sci. 2017 Jun;58(3):278-282. doi: 10.1080/00071668.2017.1280773. Epub 2017 Mar 15.

DOI:10.1080/00071668.2017.1280773
PMID:28084802
Abstract
  1. The current objective was to assess (1) differences in mucosal transepithelial short-circuit current (I) and tissue conductance (G), (2) the effect of a glucose stimulus and (3) epithelial paracellular permeability in the proximal and distal jejunum of laying hens. 2. Proximal and distal jejunal segments used in the Ussing chambers were collected at 9 ± 0.5 and 73 ± 3.4% (SEM) of jejunal length, respectively. The proximal jejunal mucosa showed a small negative I (-1.3 µA/cm), whereas the distal jejunum had a higher I (32.9 µA/cm). Similarly, G was 2.5-fold greater in the distal compared to the proximal jejunum. 3. Increased paracellular permeability in the distal jejunum was displayed as demonstrated by a 5-fold higher mucosal to serosal flux of fluorescein isothiocyanate and horseradish peroxidase, representing molecules of low and high molecular weight, respectively. 4. Addition of glucose to the mucosal side (5 mmol/l, final concentration in the chamber) to stimulate an absorptive effect caused 3-fold greater G in the distal compared to the proximal jejunum. 5. In conclusion, the present results supported site-specific electrogenic transport processes for the jejunal mucosa of laying hens. Therefore, precise description of the jejunal site may contribute to an improved comparability of electrophysiological data.
摘要
  1. 当前的目标是评估:(1)蛋鸡空肠近端和远端黏膜跨上皮短路电流(I)和组织电导(G)的差异;(2)葡萄糖刺激的效果;(3)上皮细胞旁通透性。2. 用于尤斯灌流室的空肠近端和远端节段分别在空肠长度的9±0.5%和73±3.4%(标准误)处采集。空肠近端黏膜显示出较小的负向I(-1.3μA/cm),而空肠远端的I较高(32.9μA/cm)。同样,与空肠近端相比,空肠远端的G大2.5倍。3. 空肠远端细胞旁通透性增加,表现为异硫氰酸荧光素和辣根过氧化物酶从黏膜到浆膜的通量分别高出5倍,它们分别代表低分子量和高分子量的分子。4. 在黏膜侧添加葡萄糖(5mmol/L,灌流室内最终浓度)以刺激吸收作用,与空肠近端相比,空肠远端的G增大了3倍。5. 总之,目前的结果支持蛋鸡空肠黏膜存在位点特异性电转运过程。因此,准确描述空肠位点可能有助于提高电生理数据的可比性。

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