Selective Inhibition of Microglia-Mediated Neuroinflammation Mitigates Radiation-Induced Cognitive Impairment

被引:159
作者
Jenrow, Kenneth A. [1 ]
Brown, Stephen L. [2 ]
Lapanowski, Karen [2 ]
Naei, Hoda [2 ]
Kolozsvary, Andrew [2 ]
Kim, Jae Ho [2 ]
机构
[1] Henry Ford Hosp, Dept Neurosurg, Detroit, MI 48202 USA
[2] Henry Ford Hosp, Dept Radiat Oncol, Detroit, MI 48202 USA
关键词
ADULT HIPPOCAMPAL NEUROGENESIS; ENHANCED SYNAPTIC PLASTICITY; OBJECT RECOGNITION MEMORY; LONG-TERM POTENTIATION; RAT DENTATE GYRUS; THERAPEUTIC IRRADIATION; PROTEIN EXPRESSION; NERVOUS-SYSTEM; GRANULE CELLS; BRAIN;
D O I
10.1667/RR3026.1
中图分类号
Q [生物科学];
学科分类号
090105 [作物生产系统与生态工程];
摘要
Cognitive impairment precipitated by irradiation of normal brain tissue is commonly associated with radiation therapy for treatment of brain cancer, and typically manifests more than 6 months after radiation exposure. The risks of cognitive impairment are of particular concern for an increasing number of long-term cancer survivors. There is presently no effective means of preventing or mitigating this debilitating condition. Neuroinflammation mediated by activated microglial cytokines has been implicated in the pathogenesis of radiation-induced cognitive impairment in animal models, including the disruption of neurogenesis and activity-induced gene expression in the hippocampus. These pathologies evolve rapidly and are associated with relatively subtle cognitive impairment at 2 months postirradiation. However, recent reports suggest that more profound cognitive impairment develops at later post-irradiation time points, perhaps reflecting a gradual loss of responsiveness within the hippocampus by the disruption of neurogenesis. We hypothesized that inhibiting neuroinflammation using MW01-2-151SRM (MW-151), a selective inhibitor of proinflammatory cytokine production, might mitigate these deleterious radiation effects by preserving/restoring hippocampal neurogenesis. MW-151 therapy was initiated 24 h after 10 Gy whole-brain irradiation (WBI) administered as a single fraction and maintained for 28 days thereafter. Proinflammatory activated microglia in the dentate gyrus were assayed at 2 and 9 months post-WBI. Cell proliferation and neurogenesis in the dentate gyrus were assayed at 2 months post-WBI, whereas novel object recognition and long-term potentiation were assayed at 6 and 9 months post-WBI, respectively. MW-151 mitigated radiation-induced neuroinflammation at both early and late time points post-WBI, selectively mitigated the deleterious effects of irradiation on hippocampal neurogenesis, and potently mitigated radiation-induced deficits of novel object recognition consolidation and of long-term potentiation induction and maintenance. Our results suggest that transient administration of MW-151 is sufficient to partially preserve/restore neurogenesis within the subgranular zone and to maintain the functional integrity of the dentate gyrus long after MW-151 therapy withdrawal. (C) 2013 by Radiation Research Society
引用
收藏
页码:549 / 556
页数:8
相关论文
共 46 条
[1]
Pathogenesis of cognitive decline following therapeutic irradiation for head and neck tumors [J].
Abayomi, OK .
ACTA ONCOLOGICA, 2002, 41 (04) :346-351
[2]
Early Stage Drug Treatment That Normalizes Proinflammatory Cytokine Production Attenuates Synaptic Dysfunction in a Mouse Model That Exhibits Age-Dependent Progression of Alzheimer's Disease-Related Pathology [J].
Bachstetter, Adam D. ;
Norris, Christopher M. ;
Sompol, Pradoldej ;
Wilcock, Donna M. ;
Goulding, Danielle ;
Neltner, Janna H. ;
Clair, Daret St. ;
Watterson, D. Martin ;
Van Eldik, Linda J. .
JOURNAL OF NEUROSCIENCE, 2012, 32 (30) :10201-10210
[3]
The consolidation of object and context recognition memory involve different regions of the temporal lobe [J].
Balderas, Israela ;
Rodriguez-Ortiz, Carlos J. ;
Salgado-Tonda, Paloma ;
Chavez-Hurtado, Julio ;
McGaugh, James L. ;
Bermudez-Rattoni, Federico .
LEARNING & MEMORY, 2008, 15 (09) :618-624
[4]
The Arc of synaptic memory [J].
Bramham, Clive R. ;
Alme, Maria N. ;
Bittins, Margarethe ;
Kuipers, Sjoukje D. ;
Nair, Rajeevkumar R. ;
Pai, Balagopal ;
Panja, Debabrata ;
Schubert, Manja ;
Soule, Jonathan ;
Tiron, Adrian ;
Wibrand, Karin .
EXPERIMENTAL BRAIN RESEARCH, 2010, 200 (02) :125-140
[5]
Object recognition memory and the rodent hippocampus [J].
Broadbent, Nicola J. ;
Gaskin, Stephane ;
Squire, Larry R. ;
Clark, Robert E. .
LEARNING & MEMORY, 2010, 17 (01) :794-800
[6]
Spatial memory, recognition memory, and the hippocampus [J].
Broadbent, NJ ;
Squire, LR ;
Clark, RE .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2004, 101 (40) :14515-14520
[7]
THE USE OF THE MONOCLONAL-ANTIBODY KI-67 IN THE IDENTIFICATION OF PROLIFERATING CELLS - APPLICATION TO SURGICAL NEUROPATHOLOGY [J].
BURGER, PC ;
SHIBATA, T ;
KLEIHUES, P .
AMERICAN JOURNAL OF SURGICAL PATHOLOGY, 1986, 10 (09) :611-617
[8]
High-Resolution In-Vivo Analysis of Normal Brain Response to Cranial Irradiation [J].
Burrell, Kelly ;
Hill, Richard P. ;
Zadeh, Gelareh .
PLOS ONE, 2012, 7 (06)
[9]
Managing the cognitive effects of brain tumor radiation therapy [J].
Butler Jr. J.M. ;
Rapp S.R. ;
Shaw E.G. .
Current Treatment Options in Oncology, 2006, 7 (6) :517-523
[10]
Neurocognition in patients with brain metastases treated with radiosurgery or radiosurgery plus whole-brain irradiation: a randomised controlled trial [J].
Chang, Eric L. ;
Wefel, Jeffrey S. ;
Hess, Kenneth R. ;
Allen, Pamela K. ;
Lang, Frederick F. ;
Kornguth, David G. ;
Arbuckle, Rebecca B. ;
Swint, J. Michael ;
Shiu, Almon S. ;
Maor, Moshe H. ;
Meyers, Christina A. .
LANCET ONCOLOGY, 2009, 10 (11) :1037-1044