Reduction of myocardial ischaemia–reperfusion injury by inactivating oxidized phospholipids
Cardiovascular Research

Abstract
Myocardial ischaemia followed by reperfusion (IR) causes an oxidative burst resulting in cellular dysfunction. Little is known about the impact of oxidative stress on cardiomyocyte lipids and their role in cardiac cell death. Our goal was to identify oxidized phosphatidylcholine-containing phospholipids (OxPL) generated during IR, and to determine their impact on cell viability and myocardial infarct size.
OxPL were quantitated in isolated rat cardiomyocytes using mass spectrophotometry following 24 h of IR. Cardiomyocyte cell death was quantitated following exogenously added OxPL and in the absence or presence of E06, a ‘natural’ murine monoclonal antibody that binds to the PC headgroup of OxPL. The impact of OxPL on mitochondria in cardiomyocytes was also determined using cell fractionation and Bnip expression. Transgenic
OxPL are generated within cardiomyocytes during IR and have detrimental effects on cardiomyocyte viability. Inactivation of OxPL
Contributors

Devin Hasanally
Author

Xuchu Que
Author

Ming-Yow Hung
Author

Aleksandra Stamenkovic
Author

David Chan
Author

Rakesh Chaudhary
Author

Victoria Margulets
Author

Andrea L Edel
Author

Masahiko Hoshijima
Author

Yusu Gu
Author

William Bradford
Author

Nancy Dalton
Author

Phuong Miu
Author

David Yc Cheung
Author

Davinder S Jassal
Author

Grant N Pierce
Author

Kirk L Peterson
Author

Lorrie A Kirshenbaum
Author

Joseph L Witztum
Author

Amir Ravandi
Author
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