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Dynamic changes in nitric oxide and mitochondrial oxidative stress with site-dependent differential tissue response during anoxic preconditioning in rat heart

Authors
Van Cuong, DangWarda, MohamadKim, NariPark, Won SunKo, Jae HongKim, EuiyongHan, Jin
Issue Date
Sep-2007
Publisher
AMER PHYSIOLOGICAL SOC
Keywords
mitochondrial superoxide; endocardium; inducible nitric oxide synthase
Citation
AMERICAN JOURNAL OF PHYSIOLOGY-HEART AND CIRCULATORY PHYSIOLOGY, v.293, no.3, pp H1457 - H1465
Journal Title
AMERICAN JOURNAL OF PHYSIOLOGY-HEART AND CIRCULATORY PHYSIOLOGY
Volume
293
Number
3
Start Page
H1457
End Page
H1465
URI
https://scholarworks.bwise.kr/cau/handle/2019.sw.cau/66800
DOI
10.1152/ajpheart.01282.2006
ISSN
0363-6135
1522-1539
Abstract
In this study, dynamic changes in nitric oxide (NO) and mitochondrial superoxide (O-2(center dot-)) were examined during anoxic preconditioning (AP) in rat heart model. AP and anoxia-reoxygenation (A/R) were performed on isolated hearts and single cardiomyocytes. The cellular insult in the form of infarct size and DNA damage were localized and correlated with NO synthases (endothelial and inducible) expression levels. The results showed that endocardium was the most affected region in AP groups, whereas the larger area of infarct was confined to mid-and epicardium in the A/R group. Interestingly, a high-level expression of immunofluorescent NO synthases was restricted to viable areas in the AP. In contrast to the gradual increase in O-2(center dot-) level that occurred in the AP group, a sudden massive increase in its level was demonstrated at the onset of reoxygenation in the A/R group. The observed increase in NO production during reoxygenation in the AP group was attenuated by inducible NO synthase inhibitor. The study revealed, on a real-time basis, the role played by preconditioning for modulating NO and O-2(center dot-) levels on behalf of cell survival. The results afford a better understanding of cardiac-adapting mechanism during AP and the role of inducible NO synthase in this important phenomenon.
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