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甘油在兔体内的分布与代谢

The distribution and metabolism of glycerol in the rabbit.

作者信息

Wade A J

出版信息

Biochem J. 1981 May 15;196(2):547-56. doi: 10.1042/bj1960547.

Abstract
  1. The effective volume of distribution of labelled glycerol was studied in conscious young adult rabbits provided with in-dwelling cannulae in the femoral blood vessels. This could be estimated after sampling arterial blood throughout an intravenous infusion of [2-3H]glycerol. The volume was calculated by using an algebraic method of graphical area analysis over 100 min of equilibration, and is symbolized 100V e or 100V e%. It occupied 34.1 +/- 2.2% (mean +/- S.E.M.; n = 13) of the body weight. The pool of endogenous glycerol occupying this space is distinguished in the present paper by calling it the transit pool, symbolized 100Me. 2. The median time of transit of glycerol through this pool was approx. 6 min in these conscious rabbits with normal (less than 0.2 mM) blood glycerol concentrations. 3. The metabolism of glycerol was also studied in rabbits while anaesthetized with urethane or while conscious. On average, half of the change in glycerol concentration that occurred on overnight starvation could be attributed to a decrease in clearance, whereas half was due to an increase in lipolysis. 4. The correlation between the reciprocal of glycerol concentration and clearance showed that in these animals about a quarter of the variation in concentration was due to an association with clearance. The remainder of the variation was attributed to variations in the rate of glycerol formation (lipolysis). 5. The regression of glycerol turnover rate on concentration implied that turnover was positive at zero glycerol concentration. This confirms previous findings from studies on other species. The explanation offered for this phenomenon is that the well-known physiological changes induced by feeding (decreased lipolysis, increased splanchnic blood flow) may independently decrease the glycerol concentration by both decreasing its release into the blood and simultaneously increasing its clearance.
摘要
  1. 在股血管中植入留置套管的清醒成年幼兔中,研究了标记甘油的有效分布容积。在静脉输注[2-³H]甘油的全过程中采集动脉血后,即可对其进行估算。通过在100分钟的平衡期内采用图形面积分析的代数方法计算该容积,用100V e或100V e%表示。它占体重的34.1±2.2%(平均值±标准误;n = 13)。占据该空间的内源性甘油池在本文中被称为转运池,用100Me表示。2. 在这些血液甘油浓度正常(低于0.2 mM)的清醒兔子中,甘油通过该池的中位转运时间约为6分钟。3. 还在使用氨基甲酸乙酯麻醉或清醒的兔子中研究了甘油的代谢。平均而言,过夜禁食期间甘油浓度变化的一半可归因于清除率降低,另一半则归因于脂肪分解增加。4. 甘油浓度的倒数与清除率之间的相关性表明,在这些动物中,约四分之一的浓度变化是由于与清除率相关。其余的变化归因于甘油生成速率(脂肪分解)的变化。5. 甘油周转率对浓度的回归表明,在甘油浓度为零时周转率为正。这证实了先前对其他物种研究的结果。对这一现象的解释是,进食引起的众所周知的生理变化(脂肪分解减少、内脏血流量增加)可能通过减少甘油释放到血液中并同时增加其清除率,独立地降低甘油浓度。

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