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An experimental method of identifying and quantifying the active transfer electrogenic component from the diffusive component during sugar absorption measured in vivo.

机译:一种在体内测量的糖吸收过程中从扩散成分中识别和定量转移转移活性成分的实验方法。

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摘要

1. The kinetics of absorption of glucose, galactose and alpha-methyl glucoside have been measured in rat jejunum in vivo using a chemical method and a new electrical technique. 2. Sugar absorption estimated by chemical methods exhibited two components. One component was phlorrhizin-sensitive, saturable and generated electrical potential differences (electrogenic active component) while the other was phlorrhizin-insensitive, non-saturable and did not generate electrical potentials (diffusive component). 3. The diffusive component of the actively transported sugars was indentical to the absorption behaviour of sorbose, a hexose that is not actively transferred. 4. A method for correcting the data obtained from chemical absorption studies for the diffusive component was developed. The corrected, operational kinetic constants for 'apparent Km' obtained by this method were not significantly different to values obtained electrically. The identity between the values obtained by both methods supports the concept that they represent a measure of the same rate-limiting step in the absorption process. 5. The application and significance of the techniques is discussed in relation to the clinical assessment of intestinal sugar absorption.
机译:1.已使用化学方法和新的电子技术在大鼠空肠体内测量了葡萄糖,半乳糖和α-甲基葡萄糖苷的吸收动力学。 2.通过化学方法估计的糖吸收表现出两个成分。一个成分是对菲洛西嗪敏感的,可饱和的并产生电势差(电活性成分),而另一个成分是对菲洛西嗪不敏感的,不饱和的并且不产生电势(扩散性成分)。 3.主动运输的糖的扩散成分与山梨糖(一种未主动转移的己糖)的吸收行为相同。 4.开发了一种校正从化学吸收研究中获得的扩散成分数据的方法。通过此方法获得的“表观Km”的校正后的操作动力学常数与电气获得的值没有显着差异。通过两种方法获得的值之间的同一性支持以下概念:它们代表吸收过程中相同的限速步骤的度量。 5.讨论了该技术在肠道糖吸收临床评估中的应用和意义。

著录项

  • 作者

    Debnam, E S; Levin, R J;

  • 作者单位
  • 年度 1975
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  • 原文格式 PDF
  • 正文语种 en
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