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      Chronic traumatic encephalopathy (CTE) in a National Football League Player : Case report and emerging medicolegal practice questions

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          Abstract

          We present a case of chronic traumatic encephalopathy (CTE) in a retired National Football League (NFL) Player with autopsy findings, apolipoprotein E genotype, and brain tissue evidence of chronic brain damage. This 44-year-old retired NFL player manifested a premortem history of cognitive and neuropsychiatric impairment, which included in part, chronic depression, suicide attempts, insomnia, paranoia, and impaired memory before he finally committed suicide. A full autopsy was performed with Polymerase Chain Reaction-based analyses of his blood to determine the apolipoprotein genotype. Histochemical and immunohistochemical analyses were performed on topographical gross sections of the brain. Autopsy confirmed a fatal gunshot wound of the head. The apolipoprotein E genotype was E3/E3 and the brain tissue revealed diffuse cerebral taupathy (Neurofibrillary Tangles and Neuritic Threads). This will be the third case of CTE in a national football player, which has been reported in the medical literature. Omalu et al., reported the first two cases in 2005 and 2006. This case series manifested similar premortem history of neuropsychiatric impairment with autopsy evidence of cerebral taupathy without any neuritic amyloidopathy. For a definitive diagnosis of CTE to be made, and for medicolegal purposes, a full autopsy must be performed with histochemical and immunohistochemical analyses of the brain to identify the presence of Neurofibrillary Tangles (NFTs) and Neuritic Threads (NTs). Further longitudinal prospective studies are required to confirm the common denominators and epidemiology of CTE in professional American football players, which have been identified by this case series.

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          Most cited references14

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          Head Trauma as a Risk Factor for Alzheimer's Disease: A Collaborative Re-Analysis of Case-Control Studies

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            Association of apolipoprotein E polymorphism with outcome after head injury.

            Variation in outcome after head injury is not fully explained by known prognostic features. Polymorphism of the apolipoprotein E gene (APOE) influences neuropathological findings in patients who die from head injuries. More people who die from head injuries than non-head-injured controls have deposits of amyloid beta-protein in the cerebral cortex, with amyloid beta-protein deposits present predominantly in patients with the APOE epsilon4 allele. We report a prospective clinical study to test the hypothesis that patients with APOE epsilon4 have a worse clinical outcome 6 months after head injury than those without APOE epsilon4. We studied a prospectively recruited series of patients admitted after a head injury to a neurosurgical unit (n=93). Assessment of severity of the initial injury was by means of the Glasgow Coma Score (GCS). Outcome 6 months after injury was assessed by means of the Glasgow Outcome Scale. APOE genotypes were determined from blood samples by standard methods. Detailed information on outcome was available for 89 patients. 17 (57%) of 30 patients with APOE epsilon4 had an unfavourable outcome (dead, vegetative state, or severe disability) compared with 16 (27%) of the 59 patients without APOE epsilon4 (p=0.006). The association remained significant when adjustment was made to control for age, GCS, and computed tomography scan findings (p=0.024). Our findings show a significant genetic association of APOE polymorphism with outcome after head injury supporting the hypothesis of a genetically determined influence. Patients with APOE epsilon4 are more than twice as likely as those without APOE epsilon4 to have an unfavourable outcome 6 months after head injury. Further studies are under way to confirm and further evaluate this association.
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              Repetitive mild brain trauma accelerates Abeta deposition, lipid peroxidation, and cognitive impairment in a transgenic mouse model of Alzheimer amyloidosis.

              Traumatic brain injury (TBI) increases susceptibility to Alzheimer's disease (AD), but it is not known how TBI contributes to the onset or progression of this common late life dementia. To address this question, we studied neuropathological and behavioral consequences of single versus repetitive mild TBI (mTBI) in transgenic (Tg) mice (Tg2576) that express mutant human Abeta precursor protein, and we demonstrate elevated brain Abeta levels and increased Abeta deposition. Nine-month-old Tg2576 and wild-type mice were subjected to single (n = 15) or repetitive (n = 39) mTBI or sham treatment (n = 37). At 2 d and 9 and 16 weeks after treatment, we assessed brain Abeta deposits and levels in addition to brain and urine isoprostanes generated by lipid peroxidation in these mice. A subset of mice also was studied behaviorally at 16 weeks after injury. Repetitive but not single mTBI increased Abeta deposition as well as levels of Abeta and isoprostanes only in Tg mice, and repetitive mTBI alone induced cognitive impairments but no motor deficits in these mice. This is the first experimental evidence linking TBI to mechanisms of AD by showing that repetitive TBI accelerates brain Abeta accumulation and oxidative stress, which we suggest could work synergistically to promote the onset or drive the progression of AD. Additional insights into the role of TBI in mechanisms of AD pathobiology could lead to strategies for reducing the risk of AD associated with previous episodes of brain trauma and for preventing progressive brain amyloidosis in AD patients.
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                Author and article information

                Journal
                Journal of Forensic Nursing
                Journal of Forensic Nursing
                Wiley
                1556-3693
                2010
                March 2010
                : 6
                : 1
                : 40-46
                Article
                10.1111/j.1939-3938.2009.01064.x
                20201914
                7d9e090e-ab27-4b24-a471-daf4e2961ee7
                © 2010
                History

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