Literature DB >> 3740272

Renal reabsorption and utilization of hydroxybutyrate and acetoacetate in starved rats.

M Barac-Nieto.   

Abstract

Are there increases in the renal reabsorption (R) and utilization (Q) of ketoacids during starvation? R and Q of D-3-hydroxybutyrate and acetoacetate were measured in anesthetized normally fed (C) and 3-day starved (S) rats, using clearance and arteriovenous extraction methods. R was nearly complete in both groups at low filtered ketoacids loads (less than 2mumol/g X min). At higher filtered loads, R of the two ketoacids increased in proportion to their filtered loads (r2 greater than 0.95) but with significantly steeper slopes in the S than in the C group; fractional R of the two ketoacids were significantly higher in the S than in the C animals. Saturable and nonsaturable components for ketoacid reabsorption were evident, but only the nonsaturable component was significantly increased with starvation. Increased R of ketoacids during starvation was in the absence of changes in the initial rates of hydroxybutyrate influx into isolated rat renal brush-border membrane vesicles. Thus the rate-limiting step for ketoacid reabsorption through the nonsaturable pathway may not be located at the luminal membrane of the proximal cells. The increases in R of ketoacids in the S group were associated with simultaneous decreases in the net rates of renal utilization of the two ketoacids. Thus increased renal conservation of ketoacids is a transport and not a metabolic event. Overall, during complete starvation, both the increased R and the decreased renal Q of the ketoacids contribute to increase the availability of these metabolites to other organs.

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Year:  1986        PMID: 3740272     DOI: 10.1152/ajprenal.1986.251.2.F257

Source DB:  PubMed          Journal:  Am J Physiol        ISSN: 0002-9513


  2 in total

1.  D(-)3-hydroxybutyrate cotransport with Na in rat renal brush border membrane vesicles.

Authors:  M Barac-Nieto
Journal:  Pflugers Arch       Date:  1987-04       Impact factor: 3.657

2.  Hyperinsulinemia impairs the metabolic switch to ketone body utilization in proximal renal tubular epithelial cells under energy crisis via the inhibition of the SIRT3/SMCT1 pathway.

Authors:  Jinlan Xie; Feifei Zhong; Zhenhong Guo; Xinran Li; Jingyu Wang; Zhongai Gao; Baocheng Chang; Juhong Yang
Journal:  Front Endocrinol (Lausanne)       Date:  2022-09-27       Impact factor: 6.055

  2 in total

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