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Contralateral leg as a control during skeletal muscle ischemia-reperfusion
JournalArticle (Originalarbeit in einer wissenschaftlichen Zeitschrift)
 
ID 4500282
Author(s) Thaveau, Fabien; Zoll, Joffrey; Bouitbir, Jamal; Ribera, Florence; Di Marco, Paola; Chakfe, Nabil; Kretz, Jean Georges; Piquard, Francois; Geny, Bernard
Author(s) at UniBasel Bouitbir, Jamal
Year 2009
Title Contralateral leg as a control during skeletal muscle ischemia-reperfusion
Journal Journal of surgical research
Volume 155
Number 1
Pages / Article-Number 65-9
Mesh terms Animals; Ascorbic Acid, metabolism; Cell Respiration; Electron Transport Chain Complex Proteins, metabolism; Glutamic Acid, metabolism; Ischemia, complications, metabolism; Lower Extremity, blood supply; Malates, metabolism; Male; Mitochondria, Muscle, metabolism; Mitochondrial Diseases, etiology, metabolism; Muscle, Skeletal, metabolism; Rats; Rats, Wistar; Reperfusion Injury, metabolism; Succinic Acid, metabolism; Tetramethylphenylenediamine
Abstract Recent data demonstrated that hind limb ischemia induces skeletal muscle mitochondrial dysfunctions. Improvement of such metabolic myopathy improves patient's symptomatology, supporting the development of experimental models focused on mitochondrial function analysis. However, although the nonischemic contralateral leg is often used as a control during unilateral leg ischemia, whether it might be useful when assessing ischemia-induced mitochondrial dysfunction remains to be investigated.; Both ischemic (IR) and nonischemic contralateral legs (CTL) of rats (n=13) submitted to 5 h ischemia induced by a rubber band tourniquet applied on the root of the hind limb were studied and compared to that of sham-operated animals (SHAM, n=13). Maximal oxidative capacities (V(max)) and complexes I, II and IV activities of the gastrocnemius mitochondrial respiratory chain were determined, using glutamate-malate, succinate (Vs) and TMPD-ascorbate (V(TMPD)) substrates.; V(max) was decreased in IR (4.6+/-0.4 microM/min/g dry weight) compared to both SHAM and CTL muscles (8.5+/-0.5 and 7.1+/-0.4 microM/min/g dry weight, -46% and -36%, P<0.001, respectively). V(S) and V(TMPD) were reduced in IR muscle (-56% and -48% for V(S); and -25% and -24% for V(TMPD), P<0.001) as compared to SHAM and CTL). V(S) and V(TMPD) were similar in SHAM and CTL muscles.; Five hours ischemia-reperfusion significantly impaired complexes I, II and IV of the ischemic skeletal muscle mitochondrial respiratory chain. Interestingly, only V(max) was slightly altered in the contralateral leg, supporting that the nonischemic leg might be used as a control when assessing mitochondrial function in the experimental setting of unilateral hind limb ischemia.
Publisher Elsevier
ISSN/ISBN 0022-4804
edoc-URL https://edoc.unibas.ch/78262/
Full Text on edoc No
Digital Object Identifier DOI 10.1016/j.jss.2008.08.001
PubMed ID http://www.ncbi.nlm.nih.gov/pubmed/19159910
ISI-Number WOS:000267448500010
Document type (ISI) Journal Article
 
   

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