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成年禁食大鼠口服半乳糖的肝脏摄取与代谢

Hepatic uptake and metabolism of oral galactose in adult fasted rats.

作者信息

Niewoehner C B, Neil B, Martin T

机构信息

Endocrine Metabolic Section, Veterans Affairs Medical Center, Minneapolis, Minnesota 55417.

出版信息

Am J Physiol. 1990 Dec;259(6 Pt 1):E804-13. doi: 10.1152/ajpendo.1990.259.6.E804.

Abstract

Galactose is incorporated into glycogen by a different metabolic route than glucose and fructose, the other major dietary monosaccharides. Oral galactose (4 g/kg) was given to 24-h-fasted adult rats to 1) compare quantitatively the disposition of galactose with that of glucose and fructose; 2) examine the effects of galactose on hepatic utilization of other metabolic fuels; and 3) examine circulating and liver galactose concentrations to determine whether net hepatic uptake of galactose, like glucose, occurs against a concentration gradient. Galactose absorption, hepatic blood flow, portal venous, arterial, hepatic venous, and liver concentrations of galactose, glucose, lactate, and alanine, and hepatic glycogen concentrations were measured at intervals up to 240 min. Concentrations entering and exiting the liver, hepatic intracellular concentrations, and net hepatic uptake/output were calculated. Galactose concentration entering the liver increased to a peak of 18.8 +/- 0.8 mumol/ml plasma water at 60 min and then decreased but remained above the control value. Liver galactose concentration increased dramatically from 0.28 +/- 0.04 to 21.2 +/- 1.1 mumol/ml liver water and exceeded plasma concentrations, even during the 1st 120 min when concentration gradients across the liver indicated net galactose extraction. Whole blood galactose concentrations initially were lower and then exceeded plasma concentrations, indicating that erythrocytes maintained galactose concentrations exceeding those in plasma. The data suggest that the hepatic and erythrocyte transport systems for galactose represent active mechanisms. Fifty-one percent of absorbed galactose was lost in urine; 18% of the remaining galactose load could be accounted for by net glycogen accumulation. Net increases in galactose, lactate, and alanine uptake could account for the glycogen synthesized but not for the net hepatic glucose output, which changed very little (6% increase).

摘要

半乳糖通过与葡萄糖和果糖(其他主要膳食单糖)不同的代谢途径掺入糖原。给禁食24小时的成年大鼠口服半乳糖(4克/千克),以:1)定量比较半乳糖与葡萄糖和果糖的处置情况;2)研究半乳糖对肝脏利用其他代谢燃料的影响;3)检测循环和肝脏中的半乳糖浓度,以确定肝脏对半乳糖的净摄取是否像葡萄糖一样是逆浓度梯度进行的。在长达240分钟的时间间隔内,测量半乳糖的吸收、肝血流量、门静脉、动脉、肝静脉以及肝脏中半乳糖、葡萄糖、乳酸和丙氨酸的浓度,以及肝糖原浓度。计算进入和离开肝脏的浓度、肝细胞内浓度以及肝脏的净摄取/输出量。进入肝脏的半乳糖浓度在60分钟时增加到峰值18.8±0.8微摩尔/毫升血浆水,然后下降但仍高于对照值。肝脏半乳糖浓度从0.28±0.04急剧增加到21.2±1.1微摩尔/毫升肝水,甚至在最初的120分钟内,当肝脏两侧的浓度梯度表明有半乳糖净摄取时,肝脏半乳糖浓度就超过了血浆浓度。全血半乳糖浓度最初较低,然后超过血浆浓度,表明红细胞维持的半乳糖浓度超过血浆中的浓度。数据表明,肝脏和红细胞的半乳糖转运系统代表了主动机制。吸收的半乳糖中有51%经尿液排出;剩余半乳糖负荷的18%可通过糖原净积累来解释。半乳糖、乳酸和丙氨酸摄取的净增加可解释合成的糖原,但不能解释肝脏葡萄糖的净输出,肝脏葡萄糖净输出变化很小(增加6%)。

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