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Metabolism of 15 (p123I iodophenyl-)pentadecanoic acid in heart muscle and noncardiac tissues

✍ Scribed by Sven N. Reske; Wolfgang Sauer; Hans-Jürgen Machulla; Jochen Knust; Cuno Winkler


Book ID
104684773
Publisher
Springer
Year
1985
Tongue
English
Weight
724 KB
Volume
10-10
Category
Article
ISSN
0340-6997

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✦ Synopsis


The uptake and turnover of omega(p 123I iodophenyl-)pentadecanoic acid (I-PPA), a radioiodinated free-fatty-acid analog, was examined in the heart, lung, liver, kidneys, spleen, and skeletal muscle of rats. At 2 min post injection, a high cardiac uptake of 4.4% dose per gram had already been achieved; this was followed by a rapid, two-component, tracer clearance. The kinetics of tissue concentrations of labeled hydrophilic catabolites indicated a rapid oxidation of I-PPA and the subsequent washout of I-PPA catabolites from heart-muscle tissue. The fractional distribution of the labeled cardiac lipids compared favorably with previously reported values for 3H-oleic- or 14C-palmitic-acid-labeled myocardial lipids. Typical patterns of I-PPA metabolism were observed in tissues depending on primary fatty-acid oxidation, lipid metabolism regulation, or I-PPA-catabolite excretion. The tissue concentrations and kinetics of I-PPA and its metabolites in the heart muscle indicated that general pathways of cardiac-lipid metabolism are traced by this new gamma-emitting isotope-labeled radiopharmaceutical.


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In a canine model of reversible global ischemia, the residual quantity of 123I was assessed following a bolus injection of 15-p-(123I)-iodophenyl pentadecanoic acid (123I-IPPA). This technique was used to assess changes in free fatty acid metabolism following the utilization of three cardioplegic fo