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Creatine Kinase in Ischemic and Inflammatory Disorders

Overview
Journal Clin Transl Med
Publisher Wiley
Specialty General Medicine
Date 2016 Aug 17
PMID 27527620
Citations 31
Authors
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Abstract

The creatine/phosphocreatine pathway plays a conserved and central role in energy metabolism. Compartmentalization of specific creatine kinase enzymes permits buffering of local high energy phosphates in a thermodynamically favorable manner, enabling both rapid energy storage and energy transfer within the cell. Augmentation of this metabolic pathway by nutritional creatine supplementation has been shown to elicit beneficial effects in a number of diverse pathologies, particularly those that incur tissue ischemia, hypoxia or oxidative stress. In these settings, creatine and phosphocreatine prevent depletion of intracellular ATP and internal acidification, enhance post-ischemic recovery of protein synthesis and promote free radical scavenging and stabilization of cellular membranes. The creatine kinase energy system is itself further regulated by hypoxic signaling, highlighting the existence of endogenous mechanisms in mammals that can enhance creatine metabolism during oxygen deprivation to promote tissue resolution and homeostasis. Here, we review recent insights into the creatine kinase pathway, and provide rationale for dietary creatine supplementation in human ischemic and inflammatory pathologies.

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References
1.
Glover L, Bowers B, Saeedi B, Ehrentraut S, Campbell E, Bayless A . Control of creatine metabolism by HIF is an endogenous mechanism of barrier regulation in colitis. Proc Natl Acad Sci U S A. 2013; 110(49):19820-5. PMC: 3856803. DOI: 10.1073/pnas.1302840110. View

2.
Gupta A, Akki A, Wang Y, Leppo M, Chacko V, Foster D . Creatine kinase-mediated improvement of function in failing mouse hearts provides causal evidence the failing heart is energy starved. J Clin Invest. 2011; 122(1):291-302. PMC: 3248286. DOI: 10.1172/JCI57426. View

3.
Cannata D, Ireland Z, Dickinson H, Snow R, Russell A, West J . Maternal creatine supplementation from mid-pregnancy protects the diaphragm of the newborn spiny mouse from intrapartum hypoxia-induced damage. Pediatr Res. 2010; 68(5):393-8. DOI: 10.1203/PDR.0b013e3181f1c048. View

4.
Ten Hove M, Lygate C, Fischer A, Schneider J, Sang A, Hulbert K . Reduced inotropic reserve and increased susceptibility to cardiac ischemia/reperfusion injury in phosphocreatine-deficient guanidinoacetate-N-methyltransferase-knockout mice. Circulation. 2005; 111(19):2477-85. DOI: 10.1161/01.CIR.0000165147.99592.01. View

5.
Sharov V, Afonskaya N, Ruda M, Cherpachenko N, Pozin EYa , Markosyan R . Protection of ischemic myocardium by exogenous phosphocreatine (neoton): pharmacokinetics of phosphocreatine, reduction of infarct size, stabilization of sarcolemma of ischemic cardiomyocytes, and antithrombotic action. Biochem Med Metab Biol. 1986; 35(1):101-14. DOI: 10.1016/0885-4505(86)90064-2. View