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Pathways for Ischemic Cytoprotection: Role of Sirtuins in Caloric Restriction, Resveratrol, and Ischemic Preconditioning
Author(s) -
Kahlilia C. Morris,
Hung Wen Lin,
John W. Thompson,
Miguel A. PérezPinzón
Publication year - 2011
Publication title -
journal of cerebral blood flow and metabolism
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 2.167
H-Index - 193
eISSN - 1559-7016
pISSN - 0271-678X
DOI - 10.1038/jcbfm.2010.229
Subject(s) - resveratrol , sirtuin , ischemic preconditioning , sirt6 , cytoprotection , oxidative stress , neuroprotection , sirt2 , sirt3 , excitotoxicity , pharmacology , sirtuin 1 , biology , ischemia , neuroscience , medicine , microbiology and biotechnology , programmed cell death , apoptosis , nad+ kinase , biochemistry , downregulation and upregulation , enzyme , gene
Caloric restriction (CR), resveratrol, and ischemic preconditioning (IPC) have been shown to promote protection against ischemic injury in the heart and brain, as well as in other tissues. The activity of sirtuins, which are enzymes that modulate diverse biologic processes, seems to be vital in the ability of these therapeutic modalities to prevent against cellular dysfunction and death. The protective mechanisms of the yeast Sir2 and the mammalian homolog sirtuin 1 have been extensively studied, but the involvement of other sirtuins in ischemic protection is not yet clear. We examine the roles of mammalian sirtuins in modulating protective pathways against oxidative stress, energy depletion, excitotoxicity, inflammation, DNA damage, and apoptosis. Although many of these sirtuins have not been directly implicated in ischemic protection, they may have unique roles in enhancing function and preventing against stress-mediated cellular damage and death. This review will include in-depth analyses of the roles of CR, resveratrol, and IPC in activating sirtuins and in mediating protection against ischemic damage in the heart and brain.

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