Adenosine kinase determines the degree of brain injury after ischemic stroke in mice

被引:40
作者
Shen, Hai-Ying
Lusardi, Theresa A.
LWilliams-Karnesky, Rebecca [2 ]
Lan, Jing-Quan
Poulsen, David J. [3 ]
Boison, Detlev [1 ,2 ]
机构
[1] Legacy Res Inst, Robert Stone Dow Neurobiol Labs, Dept Neurol, Portland, OR 97232 USA
[2] Oregon Hlth & Sci Univ, Dept Neurol, Portland, OR 97201 USA
[3] Univ Montana, Dept Biomed & Pharmaceut Sci, Missoula, MT 59812 USA
关键词
adenosine kinase; gene therapy; neuroprotection; stroke; transgenic mice; TRANSIENT FOCAL ISCHEMIA; CEREBRAL-ISCHEMIA; A(2A) RECEPTORS; STRATEGIES; TOLERANCE; RELEASE; NEUROPROTECTION; INACTIVATION; METABOLISM; MEDIATORS;
D O I
10.1038/jcbfm.2011.30
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
Adenosine kinase (ADK) is the major negative metabolic regulator of the endogenous neuroprotectant and homeostatic bioenergetic network regulator adenosine. We used three independent experimental approaches to determine the role of ADK as a molecular target for predicting the brain's susceptibility to ischemic stroke. First, when subjected to a middle cerebral artery occlusion model of focal cerebral ischemia, transgenic fb-Adk-def mice, which have increased ADK expression in striatum (164%) and reduced ADK expression in cortical forebrain (65%), demonstrate increased striatal infarct volume (126%) but almost complete protection of cortex (27%) compared with wild-type (WT) controls, indicating that cerebral injury levels directly correlate to levels of ADK in the CNS. Second, we demonstrate abrogation of lipopolysaccharide (LPS)-induced ischemic preconditioning in transgenic mice with brain-wide ADK overexpression (Adk-tg), indicating that ADK activity negatively regulates LPS-induced tolerance to stroke. Third, using adeno-associated virus-based vectors that carry Adk-sense or -antisense constructs to overexpress or knockdown ADK in vivo, we demonstrate increased (126%) or decreased (51%) infarct volume, respectively, 4 weeks after injection into the striatum of WT mice. Together, our data define ADK as a possible therapeutic target for modulating the degree of stroke-induced brain injury. Journal of Cerebral Blood Flow & Metabolism (2011) 31, 1648-1659; doi: 10.1038/jcbfm.2011.30; published online 23 March 2011
引用
收藏
页码:1648 / 1659
页数:12
相关论文
共 40 条
[1]   Adenosine signaling and function in glial cells [J].
Boison, D. ;
Chen, J-F ;
Fredholm, B. B. .
CELL DEATH AND DIFFERENTIATION, 2010, 17 (07) :1071-1082
[2]   Neonatal hepatic steatosis by disruption of the adenosine kinase gene [J].
Boison, D ;
Scheurer, L ;
Zumsteg, V ;
Rülicke, T ;
Litynski, P ;
Fowler, B ;
Brandner, S ;
Mohler, H .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2002, 99 (10) :6985-6990
[3]   Adenosine augmentation therapies (AATs) for epilepsy: Prospect of cell and gene therapies [J].
Boison, Detlev .
EPILEPSY RESEARCH, 2009, 85 (2-3) :131-141
[4]   A2A adenosine receptor deficiency attenuates brain injury induced by transient focal ischemia in mice [J].
Chen, JF ;
Huang, ZH ;
Ma, JY ;
Zhu, JM ;
Moratalla, R ;
Standaert, D ;
Moskowitz, MA ;
Fink, JS ;
Schwarzschild, MA .
JOURNAL OF NEUROSCIENCE, 1999, 19 (21) :9192-9200
[5]   Cerebrospinal fluid adenosine concentration and uncoupling of cerebral blood flow and oxidative metabolism after severe head injury in humans [J].
Clark, RSB ;
Carcillo, JA ;
Kochanek, PM ;
Obrist, WD ;
Jackson, EK ;
Mi, ZC ;
Wisneiwski, SR ;
Bell, MJ ;
Marion, DW .
NEUROSURGERY, 1997, 41 (06) :1284-1292
[6]   Neuroprotection by adenosine in the brain: From A1 receptor activation to A2A receptor blockade [J].
Cunha R.A. .
Purinergic Signalling, 2005, 1 (2) :111-134
[7]   Listening to the brain: microelectrode biosensors for neurochemicals [J].
Dale, N ;
Hatz, S ;
Tian, FM ;
Llaudet, E .
TRENDS IN BIOTECHNOLOGY, 2005, 23 (08) :420-428
[8]   Putative endogenous mediators of preconditioning-induced ischemic tolerance in rat brain identified by genomic and proteomic analysis [J].
Dhodda, VK ;
Sailor, KA ;
Bowen, KK ;
Vemuganti, R .
JOURNAL OF NEUROCHEMISTRY, 2004, 89 (01) :73-89
[9]   Preconditioning and tolerance against cerebral ischaemia: from experimental strategies to clinical use [J].
Dirnagl, Ulrich ;
Becker, Kyra ;
Meisel, Andreas .
LANCET NEUROLOGY, 2009, 8 (04) :398-412
[10]   Astrocytic adenosine kinase regulates basal synaptic adenosine levels and seizure activity but not activity-dependent adenosine release in the hippocampus [J].
Etherington, Lori-An V. ;
Patterson, Graham E. ;
Meechan, Louise ;
Boison, Detlev ;
Irving, Andrew J. ;
Dale, Nicholas ;
Frenguelli, Bruno G. .
NEUROPHARMACOLOGY, 2009, 56 (02) :429-437