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PMID: 16766632 Published · ppublish English Comparative Study Evaluation Study Journal Article Research Support, Non-U.S. Gov't

Systematic evaluation of a novel model for cardiac ischemic preconditioning in mice.

American journal of physiology. Heart and circulatory physiology ·Vol. 291 ·No. 5 ·2006-11-00 ·Pages H2533-40

Eckle T, Grenz A, Köhler D, Redel A, Falk M, Rolauffs B, Osswald H, Kehl F, Eltzschig HK

Abstract

Cardioprotection by ischemic preconditioning (IP) remains an area of intense investigation. To further elucidate its molecular basis, the use of transgenic mice seems critical. Due to technical difficulty associated with performing cardiac IP in mice, we developed an in situ model for cardiac IP using a hanging-weight system for coronary artery occlusion. This technique has the major advantage of eliminating the necessity of intermittently occluding the coronary artery with a knotted suture. To systematically evaluate this model, we first demonstrated correlation of ischemia times (10-60 min) with infarct sizes [3.5 +/- 1.3 to 42 +/- 5.2% area at risk (AAR), Evan's blue/triphenyltetrazolium chloride staining]. IP (4 x 5 min) and cold ischemia (27 degrees C) reduced infarct size by 69 +/- 6.7% and 84 +/- 4.2%, respectively (n = 6, P < 0.01). In contrast, lower numbers of IP cycles did not alter infarct size. However, infarct sizes were distinctively different in mice from different genetic backgrounds. In addition to infarct staining, we tested cardiac troponin I (cTnI) as marker of myocardial infarction in this model. In fact, plasma levels of cTnI were significantly lower in IP-treated mice and closely correlated with infarct sizes (R(2) = 0.8). To demonstrate transcriptional consequences of cardiac IP, we isolated total RNA from the AAR and showed repression of the equilibrative nucleoside transporters 1-4 by IP in this model. Taken together, this study demonstrates highly reproducible infarct sizes and cardiac protection by IP, thus minimizing the variability associated with knot-based coronary occlusion models. Further studies on cardiac IP using transgenic mice may consider this technique.

MeSH Terms
Animals Biomarkers/analysis Disease Models, Animal Equilibrative Nucleoside Transporter 1 Equilibrative-Nucleoside Transporter 2/analysis Evaluation Studies as Topic Female Ischemic Preconditioning, Myocardial/methods Male Membrane Transport Proteins/analysis Mice Mice, Inbred C57BL Mice, Inbred Strains Myocardial Infarction/etiology,pathology Nucleoside Transport Proteins/analysis RNA, Messenger/analysis Time Factors Troponin I/analysis
Chemicals
Biomarkers ENT3 protein, mouse Equilibrative Nucleoside Transporter 1 Equilibrative-Nucleoside Transporter 2 Membrane Transport Proteins Nucleoside Transport Proteins RNA, Messenger SLC29A1 protein, mouse Slc29a2 protein, mouse Troponin I equilibrative nucleoside transporter-4, mouse
Authors & Affiliations
9 authors, click to expand affiliations / ORCID
Eckle Tobias
Dept. of Anesthesiology and Intensive Care Medicine, Tübingen Univ. Hospital, Hoppe-Seyler-Str. 3, D-72076 Tübingen, Germany.
Grenz Almut
Köhler David
Redel Andreas
Falk Melanie
Rolauffs Bernd
Osswald Hartmut
Kehl Franz
Eltzschig Holger K
Article Info
Journal
American journal of physiology. Heart and circulatory physiology
Abbr.
Am J Physiol Heart Circ Physiol
ISSN
0363-6135
Published
2006-11-00
Epub
2006-00-09
Pages
H2533-40
Language
English
Region
United States
NLM ID
100901228
Subset
IM
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