Leclerc J, Des Rosiers C, Montgomery J A, Brunet J, Ste-Marie L, Reider M W, Fernandez C A, Powers L, David F, Brunengraber H
Department of Nutrition, Université de Montréal, Canada.
Am J Physiol. 1995 Mar;268(3 Pt 1):E446-52. doi: 10.1152/ajpendo.1995.268.3.E446.
R-beta-Hydroxypentanoate and beta-ketopentanoate are homologues of physiological ketone bodies R-beta-hydroxybutyrate and acetoacetate. They derive from the oxidation in liver of the R-moiety of R,S-1,3-pentanediol, a potential nutrient. This report documents the metabolism of R-beta-hydroxypentanoate and beta-ketopentanoate in conscious dogs. Whether administered by bolus or constant infusion, the two substrates are interconverted and rapidly metabolized. When beta-ketopentanoate was infused at a rate corresponding to 75% of the dog's caloric requirement, the steady-state total plasma concentration of the two substrates was only 1.3 mM. Because the substrates are precursors of propionyl-CoA, we assayed the urinary concentrations of markers of propionic acidemia. Their accumulation was minor compared with what is observed in patients suffering from propionic acidemia. We conclude that, at least during short-term experiments, R-beta-hydroxypentanoate and beta-ketopentanoate are well metabolized in the dog without apparent intolerance to a large supply of propionyl-CoA.
R-β-羟基戊酸酯和β-酮戊酸酯是生理性酮体R-β-羟基丁酸酯和乙酰乙酸的同系物。它们源自肝脏中潜在营养物质R,S-1,3-戊二醇的R部分的氧化。本报告记录了清醒犬体内R-β-羟基戊酸酯和β-酮戊酸酯的代谢情况。无论是通过推注还是持续输注给药,这两种底物都会相互转化并迅速代谢。当以相当于犬热量需求75%的速率输注β-酮戊酸酯时,这两种底物的稳态血浆总浓度仅为1.3 mM。由于这些底物是丙酰辅酶A的前体,我们检测了丙酸血症标志物的尿浓度。与丙酸血症患者相比,它们的积累较少。我们得出结论,至少在短期实验中,R-β-羟基戊酸酯和β-酮戊酸酯在犬体内代谢良好,对大量丙酰辅酶A供应没有明显不耐受。