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水和电解质的肠道吸收。

Intestinal absorption of water and electrolytes.

作者信息

Sidorov J J

出版信息

Clin Biochem. 1976 Jun;9(3):117-20. doi: 10.1016/s0009-9120(76)80032-x.

Abstract
  1. Recent advances in knowledge of intestinal physiology have provided some insight into disturbed mechanisms and their clinical effects; for example, diarrhoea can now be defined biochemically as excessive fluid and electrolyte loss due to their malabsorption or excessive secretion. 2. Because of differences in structure and in absorptive and secretory mechanisms, the various parts of the gut perform different functions. In the jejunum, transport activity is extensive and the rapid equilibration of its content provides the optimal absorptive mixture. Functionally, the ileum and colon are similar; compared with the jejunum, they have greater absorptive capacity for electrolytes and generate significantly higher transmural electrical potentials. In the colon, some transport mechanisms are potentiated by adrenocortical steroids. 3. Water and electrolyte absorption and secretion are the end-products of bidirectional fluxes across the intestinal wall that are several times greater than net movement in either direction. Secretion is the surplus of negative flux (into the lumen) and absorption the surplus of positive flux (out of it). 4. Many electrolyte transport mechanisms require the absorption of other electrolytes or non-electrolytes, and some are concerned with electrolyte exchange. Water transport is always passive, in the direction of solute flow, but its solvent drag can move solutes across the intestinal membrane.
摘要
  1. 肠道生理学知识的最新进展为了解紊乱机制及其临床影响提供了一些线索;例如,腹泻现在可以从生化角度定义为由于液体和电解质吸收不良或分泌过多导致的过度流失。2. 由于肠道各部分在结构以及吸收和分泌机制上存在差异,因而具有不同的功能。在空肠中,转运活动广泛,其内容物的快速平衡提供了最佳的吸收混合物。在功能上,回肠和结肠相似;与空肠相比,它们对电解质的吸收能力更强,产生的跨壁电位也明显更高。在结肠中,某些转运机制会被肾上腺皮质类固醇增强。3. 水和电解质的吸收与分泌是跨肠壁双向通量的最终产物,双向通量比任何一个方向的净移动量大几倍。分泌是负向通量(进入肠腔)的过剩,而吸收是正向通量(流出肠腔)的过剩。4. 许多电解质转运机制需要吸收其他电解质或非电解质,有些则与电解质交换有关。水的转运始终是被动的,顺着溶质流动的方向,但它的溶剂拖曳作用可以使溶质穿过肠膜。

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