Aggression, DRD1 polymorphism, and lesion location in penetrating traumatic brain injury
File(s)nihms559571.pdf (257.59 KB)
Accepted version
Author(s)
Type
Journal Article
Abstract
Objective This study evaluated whether structural brain lesions modulate the relationship between pathological aggression and the dopaminergic system in traumatic brain injury (TBI). While converging evidence suggests that different areas of the prefrontal cortex modulate dopaminergic activity, to date no evidence exists of a modulation of endogenous dopaminergic tone by lesion localization in penetrating TBI (pTBI).
Methods This study included 141 male Caucasian veterans who suffered penetrating pTBI during their service in Vietnam and 29 healthy male Caucasian Vietnam veterans. Participants were genotyped for 3 functional single nucleotide polymorphisms (SNPs): dopamine receptor D1 (DRD1) rs686, dopamine receptor D2 (DRD2) rs4648317, and catechol-O-methyltransferase (COMT) Val158Met. Patients underwent brain CT scans and were divided into medial prefrontal cortex, lateral prefrontal cortex, and posterior cortex lesion groups. Long-term aggression levels were evaluated with the agitation/aggression subscale of the Neuropsychiatric Inventory.
Results Our data showed that carriers of more transcriptionally active DRD1 alleles compared to noncarriers demonstrated greater aggression levels due to medial prefrontal cortex lesions but reduced aggression levels due to lateral prefrontal cortex lesions independently of DRD2 rs4648317 or COMT Val158Met genotypes.
Conclusions Our results suggest that the relationship between pTBI-related aggression and the dopaminergic system is modulated by lesion location. Potentially lesion location could represent an easy-to-use, widely available, para-clinical marker to help in the development of an individualized therapeutic approach to pTBI-related pathological aggression.
Methods This study included 141 male Caucasian veterans who suffered penetrating pTBI during their service in Vietnam and 29 healthy male Caucasian Vietnam veterans. Participants were genotyped for 3 functional single nucleotide polymorphisms (SNPs): dopamine receptor D1 (DRD1) rs686, dopamine receptor D2 (DRD2) rs4648317, and catechol-O-methyltransferase (COMT) Val158Met. Patients underwent brain CT scans and were divided into medial prefrontal cortex, lateral prefrontal cortex, and posterior cortex lesion groups. Long-term aggression levels were evaluated with the agitation/aggression subscale of the Neuropsychiatric Inventory.
Results Our data showed that carriers of more transcriptionally active DRD1 alleles compared to noncarriers demonstrated greater aggression levels due to medial prefrontal cortex lesions but reduced aggression levels due to lateral prefrontal cortex lesions independently of DRD2 rs4648317 or COMT Val158Met genotypes.
Conclusions Our results suggest that the relationship between pTBI-related aggression and the dopaminergic system is modulated by lesion location. Potentially lesion location could represent an easy-to-use, widely available, para-clinical marker to help in the development of an individualized therapeutic approach to pTBI-related pathological aggression.
Date Issued
2014-10-01
Date Acceptance
2014-01-22
Citation
CNS Spectrums, 2014, 19 (5), pp.382-390
ISSN
1092-8529
Publisher
Cambridge University Press (CUP)
Start Page
382
End Page
390
Journal / Book Title
CNS Spectrums
Volume
19
Issue
5
Copyright Statement
© Cambridge University Press 2014 The final publication is available via Cambridge Journals Online at http://dx.doi.org/10.1017/S1092852914000108
Subjects
Science & Technology
Life Sciences & Biomedicine
Clinical Neurology
Psychiatry
Neurosciences & Neurology
Aggression
behavioral neurology
dopamine
prefrontal cortex
traumatic brain injury
NUCLEUS-ACCUMBENS DOPAMINE
PREFRONTAL CORTEX
FRONTOTEMPORAL DEMENTIA
REWARD ANTICIPATION
MALE-MICE
BEHAVIOR
RISPERIDONE
SINGLE
STIMULATION
HALOPERIDOL
Publication Status
Published