Alcohol use disorders remain as one of the nation's major public health problems with over 17 million Americans meeting the diagnostic criteria for alcohol abuse or dependence. Chronic alcoholics demonstrate cognitive impairments that are related to a loss of brain mass or neurodegeneration, effects that may recover with abstinence. Many assumed that the mechanism of this recovery was due to glial regeneration, however recent discoveries from our laboratory show that alcohol-induced regulation of neural stem cells (NSCs) parallels the changes in brain mass and cognition during active alcoholism (decrease) versus abstinence (increase) in the hippocampus. The regulation of NSCs relies on the milieu of the local environment, or neurogenic niche. Microglial, one of three types of glia, contribute to this niche. Though microglial events historically were synonymous with cytotoxicity, a new role in neurogenesis is emerging. Some activated microglia secrete growth factors and anti-inflammatory cytokines, an effect that is consistent with recent data that certain types of microglia promote NSC proliferation and adult neurogenesis. Thus, when we observed a microglial response that precedes the neurogenic response in our model of chronic alcoholism, we suspected a causal link between microglial events and the promotion of neurogenesis. Therefore, this proposal will test the hypothesis that binge alcohol exposure produces a graded microglial response that drives the recruitment of quiescent NSCs into proliferation and neurogenesis in abstinence.
Three specific aims address this hypothesis by asking: (1) whether binge alcohol exposure recruits additional NSCs, (2) whether microglia show a graded, nonphagocytic phenotype predictive of a proneurogenic microenvironment and (3) whether can we modulate this phenotype to alter neurogenesis in a model of chronic alcoholism. Multiple approaches will be used, namely immunohistochemistry to assess the recruitment and proliferative dynamics of NSCs, the morphology of microglia, as well as in situ hybridization, receptor autoradiography and Enzyme-Linked ImmunoSorbant Assays to determine microglia phenotype and cytokine expression. And finally, neuroanatomical and behavioral work will confirm the role of microglia phenotype in neurodegneration and regeneration following binge alcohol exposure. Relevance to public health: This proposal will uncover a mechanism of brain regrowth in abstinence from alcohol by investigating the role of activated microglia on neural stem cells and the neurogenic environment. The results will lead to a novel approach in our long term goal of treating brain damage associated with chronic alcoholism: Identifying agents or behaviors that promote protective actions of microglia in recruiting NSCs to repair sites of damage with the hope of reversing or preventing cognitive deficits associated with alcoholic neurodegeneration.

Agency
National Institute of Health (NIH)
Institute
National Institute on Alcohol Abuse and Alcoholism (NIAAA)
Type
Research Project (R01)
Project #
5R01AA016959-04
Application #
7919485
Study Section
Neurotoxicology and Alcohol Study Section (NAL)
Program Officer
Reilly, Matthew
Project Start
2007-09-30
Project End
2016-12-31
Budget Start
2010-09-01
Budget End
2011-08-31
Support Year
4
Fiscal Year
2010
Total Cost
$372,137
Indirect Cost
Name
University of Kentucky
Department
Pharmacology
Type
Schools of Pharmacy
DUNS #
939017877
City
Lexington
State
KY
Country
United States
Zip Code
40506
Hayes, Dayna M; Nickell, Chelsea G; Chen, Kevin Y et al. (2018) Activation of neural stem cells from quiescence drives reactive hippocampal neurogenesis after alcohol dependence. Neuropharmacology 133:276-288
Liput, Daniel J; Pauly, James R; Stinchcomb, Audra L et al. (2017) Binge Alcohol Exposure Transiently Changes the Endocannabinoid System: A Potential Target to Prevent Alcohol-Induced Neurodegeneration. Brain Sci 7:
Nickell, Chelsea R Geil; Peng, Hui; Hayes, Dayna M et al. (2017) Type 2 Neural Progenitor Cell Activation Drives Reactive Neurogenesis after Binge-Like Alcohol Exposure in Adolescent Male Rats. Front Psychiatry 8:283
Peng, Hui; Geil Nickell, Chelsea R; Chen, Kevin Y et al. (2017) Increased expression of M1 and M2 phenotypic markers in isolated microglia after four-day binge alcohol exposure in male rats. Alcohol 62:29-40
Marshall, Simon Alex; Geil, Chelsea Rhea; Nixon, Kimberly (2016) Prior Binge Ethanol Exposure Potentiates the Microglial Response in a Model of Alcohol-Induced Neurodegeneration. Brain Sci 6:
Van Skike, C E; Maggio, S E; Reynolds, A R et al. (2016) Critical needs in drug discovery for cessation of alcohol and nicotine polysubstance abuse. Prog Neuropsychopharmacol Biol Psychiatry 65:269-87
McClain, Justin A; Nixon, Kimberly (2016) Alcohol Induces Parallel Changes in Hippocampal Histone H3 Phosphorylation and c-Fos Protein Expression in Male Rats. Alcohol Clin Exp Res 40:102-12
Hammer, Adam M; Morris, Niya L; Cannon, Abigail R et al. (2015) Summary of the 2014 Alcohol and Immunology Research Interest Group (AIRIG) meeting. Alcohol 49:767-72
Collins, Michael A; Tajuddin, Nuzhath; Moon, Kwan-Hoon et al. (2014) Alcohol, phospholipase A2-associated neuroinflammation, and ?3 docosahexaenoic acid protection. Mol Neurobiol 50:239-45
McClain, Justin A; Morris, Stephanie A; Marshall, S Alexander et al. (2014) Ectopic hippocampal neurogenesis in adolescent male rats following alcohol dependence. Addict Biol 19:687-99

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