Literature DB >> 11918279

The determination of ketone bodies: preanalytical, analytical and physiological considerations.

R A Laun1, B Rapsch, W Abel, O Schröder, H D Röher, A Ekkernkamp, K M Schulte.   

Abstract

The arterial ketone body ratio is calculated as the ratio of arterial levels of acetoacetate/beta-hydroxybutyrate. It correlates with survival in experimental hemorrhagic shock and outcome after liver surgery and myocardial infarction. Procedures for determination of ketone bodies are often laborious and unreliable. As yet the relationship between results from arterial and venous samples is unclear. We therefore describe the determination of the ketone bodies acetoacetate and 3-hydroxybutyrate by an easy, reliable, rapid, inexpensive enzymatic assay using 3-hydroxybutyrate dehydrogenase (E.C. 1.1.1.30) in a semi-automated setting that does not require deproteinization. Preanalytical parameters, including separation from corpuscular elements within 1 h and storage on ice for less than 1 h, must be strictly observed to avoid rapid decay of acetoacetate by spontaneous decarboxylation. The assay has high sensitivity, specificity (+/-5%), and precision (CV <2.5%) with a measurable range of 5-500 micromol/l for either ketone body, and requires only 23.5 microl of plasma. At temperatures below -17 degrees C plasma may be stored for prolonged periods. Results from prospectively scheduled simultaneous sampling of arterial blood and venous blood from the right atrium in 100 consecutive patients with severe multiple trauma (mean Injury Severity Score 38+/-13) support the view that the lung has no role in ketone body metabolism. We conclude that central venous blood can safely be substituted for arterial blood for determination of the ketone body ratio.

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Year:  2001        PMID: 11918279     DOI: 10.1007/s102380100004

Source DB:  PubMed          Journal:  Clin Exp Med        ISSN: 1591-8890            Impact factor:   3.984


  5 in total

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2.  Lipid metabolism in rats is modified by nitric oxide availability through a Ca++-dependent mechanism.

Authors:  Carlos A Marra; Julio Nella; Damián Manti; María J T de Alaniz
Journal:  Lipids       Date:  2007-01-19       Impact factor: 1.880

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Authors:  Maria-Louisa Izamis; Korkut Uygun; Nripen S Sharma; Basak Uygun; Martin L Yarmush; Francois Berthiaume
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4.  Roles and regulation of ketogenesis in cultured astroglia and neurons under hypoxia and hypoglycemia.

Authors:  Shinichi Takahashi; Takuya Iizumi; Kyoko Mashima; Takato Abe; Norihiro Suzuki
Journal:  ASN Neuro       Date:  2014-09-11       Impact factor: 4.146

5.  Development, diagnosis and therapy of ketosis in non-gravid and non-lactating Guinea pigs.

Authors:  Nicole S Schmid; Marcus Clauss; Udo Hetzel; Barbara Riond; Monika Bochmann; Jean-Michel Hatt
Journal:  BMC Vet Res       Date:  2020-02-03       Impact factor: 2.741

  5 in total

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