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PMID: 10357848 Published · ppublish English Journal Article

Development and initial evaluation of a novel method for assessing tissue-specific plasma free fatty acid utilization in vivo using (R)-2-bromopalmitate tracer.

Journal of lipid research ·Vol. 40 ·No. 6 ·1999-06-00 ·Pages 1155-69

Oakes ND, Kjellstedt A, Forsberg GB, Clementz T, Camejo G, Furler SM, Kraegen EW, Olwegård-Halvarsson M, Jenkins AB, Ljung B

Abstract

We describe a method for assessing tissue-specific plasma free fatty acid (FFA) utilization in vivo using a non-beta-oxidizable FFA analog, [9,10-3H]-(R)-2-bromopalmitate (3H-R-BrP). Ideally 3H-R-BrP would be transported in plasma, taken up by tissues and activated by the enzyme acyl-CoA synthetase (ACS) like native FFA, but then 3H-labeled metabolites would be trapped. In vitro we found that 2-bromopalmitate and palmitate compete equivalently for the same ligand binding sites on albumin and intestinal fatty acid binding protein, and activation by ACS was stereoselective for the R-isomer. In vivo, oxidative and non-oxidative FFA metabolism was assessed in anesthetized Wistar rats by infusing, over 4 min, a mixture of 3H-R-BrP and [U-14C] palmitate (14C-palmitate). Indices of total FFA utilization (R*f) and incorporation into storage products (Rfs') were defined, based on tissue concentrations of 3H and 14C, respectively, 16 min after the start of tracer infusion. R*f, but not Rfs', was substantially increased in contracting (sciatic nerve stimulated) hindlimb muscles compared with contralateral non-contracting muscles. The contraction-induced increases in R*f were completely prevented by blockade of beta-oxidation with etomoxir. These results verify that 3H-R-BrP traces local total FFA utilization, including oxidative and non-oxidative metabolism. Separate estimates of the rates of loss of 3H activity indicated effective 3H metabolite retention in most tissues over a 16-min period, but appeared less effective in liver and heart. In conclusion, simultaneous use of 3H-R-BrP and [14C]palmitate tracers provides a new useful tool for in vivo studies of tissue-specific FFA transport, utilization and metabolic fate, especially in skeletal muscle and adipose tissue.

MeSH Terms
Adipose Tissue/metabolism Animals Binding, Competitive Biological Transport Carbon Radioisotopes Coenzyme A Ligases/metabolism Fatty Acids, Nonesterified/blood,metabolism Intestinal Mucosa/metabolism Kinetics Liver/enzymology Male Muscle, Skeletal/metabolism Palmitates/administration & dosage,metabolism Palmitic Acid/blood,metabolism Rats Rats, Wistar Serum Albumin/metabolism Stereoisomerism Tritium
Chemicals
Carbon Radioisotopes Fatty Acids, Nonesterified Palmitates Serum Albumin Tritium 2-bromopalmitate Palmitic Acid Coenzyme A Ligases
Authors & Affiliations
10 authors, click to expand affiliations / ORCID
Oakes N D
Department of Pharmacology, Astra-Hässle AB, S-431 83 Mölndal, Sweden.
Kjellstedt A
Forsberg G B
Clementz T
Camejo G
Furler S M
Kraegen E W
Olwegård-Halvarsson M
Jenkins A B
Ljung B
Article Info
Journal
Journal of lipid research
Abbr.
J Lipid Res
ISSN
0022-2275
Published
1999-06-00
Pages
1155-69
Language
English
Region
United States
NLM ID
0376606
Subset
IM
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