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Dentate Gyrus Proliferative Responses After Traumatic Brain Injury and Binge Alcohol in Adult Rats

Overview
Publisher Sage Publications
Specialty Neurology
Date 2020 Nov 26
PMID 33241218
Citations 3
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Abstract

Background: Traumatic brain injury is a significant public health issue that results in serious disability in survivors. Traumatic brain injury patients are often intoxicated with alcohol when admitted to the hospital; however, it is not clear how acute intoxication affects recovery from a traumatic brain injury. Our group has previously shown that binge alcohol prior to traumatic brain injury resulted in long-term impairment in a fine sensorimotor task that was correlated with a decreased proliferative and neuroblast response from the subventricular zone. However, whether binge alcohol prior to traumatic brain injury affects the proliferative response in the hippocampal dentate gyrus is not yet known.

Methods: Male rats underwent binge alcohol (3 g/kg/day) by gastric gavage for 3 days prior to traumatic brain injury. Cell proliferation was labeled by BrdU injections following traumatic brain injury. Stereological quantification and immunofluorescence confocal analysis of BrdU cells in the hippocampal dorsal dentate gyrus was performed at 24 hours, 1 week and 6 weeks post traumatic brain injury.

Results: We found that either traumatic brain injury alone or binge alcohol alone significantly increased dentate gyrus proliferation at 24 hours and 1 week. However, a combined binge alcohol and traumatic brain injury regimen resulted in decreased dentate gyrus proliferation at 24 hours post-traumatic brain injury. At the 6 week time point, binge alcohol overall reduced the number of BrdU cells. Furthermore, more BrdU cells were found in the dentate hilar region of alcohol traumatic brain injury compared to vehicle traumatic brain injury groups. The location and double-labeling of these mismigrated BrdU cells was consistent with hilar ectopic granule cells.

Conclusion: The results from this study showed that pre-traumatic brain injury binge alcohol impacts the injury-induced proliferative response in the dentate gyrus in the short-term and may affect the distribution of newly generated cells in the dentate gyrus in the long-term.

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Hyperbaric Oxygenation Prevents Loss of Immature Neurons in the Adult Hippocampal Dentate Gyrus Following Brain Injury.

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References
1.
Corps K, Roth T, McGavern D . Inflammation and neuroprotection in traumatic brain injury. JAMA Neurol. 2015; 72(3):355-62. PMC: 5001842. DOI: 10.1001/jamaneurol.2014.3558. View

2.
Covey M, Loporchio D, Buono K, Levison S . Opposite effect of inflammation on subventricular zone versus hippocampal precursors in brain injury. Ann Neurol. 2011; 70(4):616-26. PMC: 3522429. DOI: 10.1002/ana.22473. View

3.
Scharfman H, Goodman J, McCloskey D . Ectopic granule cells of the rat dentate gyrus. Dev Neurosci. 2006; 29(1-2):14-27. PMC: 1934347. DOI: 10.1159/000096208. View

4.
Chen C, Yi H, Yoon Y, Dong C . Alcohol use at time of injury and survival following traumatic brain injury: results from the National Trauma Data Bank. J Stud Alcohol Drugs. 2012; 73(4):531-41. PMC: 3364320. DOI: 10.15288/jsad.2012.73.531. View

5.
Karelina K, Gaier K, Prabhu M, Wenger V, Corrigan T, Weil Z . Binge ethanol in adulthood exacerbates negative outcomes following juvenile traumatic brain injury. Brain Behav Immun. 2016; 60:304-311. DOI: 10.1016/j.bbi.2016.11.009. View