Ferrier B, Martin M, Janbon B, Baverel G
Centre National de la Recherche Scientifique, Unité de Recherche Associée 1177, Institut National de la Santé et de la Recherche Médicale, Unité 80, Faculté de Médecine Alexis Carrel, Lyon, France.
Am J Physiol. 1992 May;262(5 Pt 2):F762-9. doi: 10.1152/ajprenal.1992.262.5.F762.
The transport of ketone bodies across the luminal membrane of the nephron was studied by means of micropuncture techniques in rats in normal acid-base state. The concentration of beta-hydroxybutyrate (beta-HB) and acetoacetate (AcAc) in plasma, tubular fluid and urine was measured by an ultramicromethod using enzymatic cycling. At endogenous plasma ketone body concentration, approximately 80% of the filtered load of beta-HB and AcAc was reabsorbed in the proximal convoluted tubule, the remaining fraction being almost completely reabsorbed between the late proximal convoluted and the distal tubule; under these conditions, the urinary excretion of ketone bodies was less than 1% of the filtered load. A progressive elevation to steady-state levels of plasma beta-HB resulted in a progressive reduction of the fractional reabsorption of beta-HB and AcAc in the proximal convoluted tubule, which means that reabsorption of ketone bodies in this nephron segment is saturable. No net secretion of ketone bodies could be demonstrated along the nephron even at the highest plasma ketone body concentrations reached. In clearance experiments, the capacity of the rat kidney for reabsorbing both beta-HB and AcAc was found to be limited by a maximal tubular capacity (Tm). The data suggest that, in the young Wistar rat nephron, most of the reabsorption of ketone bodies is carrier mediated.
采用微穿刺技术对处于正常酸碱状态的大鼠进行研究,以探讨酮体在肾单位管腔膜的转运情况。使用酶循环超微量法测定血浆、肾小管液和尿液中β-羟丁酸(β-HB)和乙酰乙酸(AcAc)的浓度。在内源性血浆酮体浓度下,约80%滤过的β-HB和AcAc在近端曲管被重吸收,其余部分在近端曲管后期和远端小管之间几乎被完全重吸收;在此条件下,酮体的尿排泄量小于滤过量的1%。血浆β-HB逐渐升高至稳态水平导致近端曲管中β-HB和AcAc的重吸收分数逐渐降低,这意味着该肾单位节段中酮体的重吸收是可饱和的。即使在达到的最高血浆酮体浓度下,沿肾单位也未显示出酮体的净分泌。在清除实验中,发现大鼠肾脏重吸收β-HB和AcAc的能力受最大肾小管重吸收能力(Tm)限制。数据表明,在幼年Wistar大鼠肾单位中,大部分酮体的重吸收是由载体介导的。