Brain-derived neurotrophic factor Val66Met polymorphism and cognitive function in persons with cardiovascular disease.

Ashley J Szabo, Michael L Alosco, Lindsay A Miller, John E McGeary, Athena Poppas, Ronald A Cohen, John Gunstad
Author Information
  1. Ashley J Szabo: Department of Psychology, Kent State University, Kent, Ohio, USA.

Abstract

AIM: Cognitive impairment is common among persons with cardiovascular disease (CVD), and several potential aetiological mechanisms have been described, including contributions of genetic markers such as variations in the brain-derived neurotrophic (BDNF) gene. This current study examined the associations of BDNF genotype with cognitive function among individuals with CVD.
METHODS: This study included 110 participants with CVD who completed a comprehensive neuropsychological battery that assessed global cognitive function, attention/executive function, memory, language, and visuospatial abilities. All participants also underwent blood draw to provide a DNA sample that was used to determine BDNF genotype. Carriers of either one or two copies of the methionine allele of BDNF were categorized into one group (n = 33); non-carriers were categorized into a second group (n = 77).
RESULTS: After adjustment for demographic and medical characteristics, hierarchical regression analyses revealed persons with one or more methionine alleles displayed better performance than valine/valine individuals for attention/executive function (β = 0.22, P = 0.047) and memory (β = 0.25, P = 0.03), as well as a trend for language (β = 0.19, P = 0.08) and visuospatial abilities (β = 0.21, P = 0.06).
CONCLUSIONS: BDNF Val66Met had little impact on cognitive functioning in a sample of older adults with CVD, and significant findings contradicted that predicted by past work. Future work is much needed to clarify the mechanisms of these findings, particularly studies examining both circulating BDNF levels and genetic variation in the BDNF gene and cognitive function over time.

Keywords

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Grants

  1. DK075119/NIDDK NIH HHS
  2. 1S10RR023457-01A1/NCRR NIH HHS
  3. P30 AG028740/NIA NIH HHS
  4. S10 RR023457/NCRR NIH HHS
  5. R56 DK075119/NIDDK NIH HHS
  6. R01 HL089311/NHLBI NIH HHS
  7. HLO89311/PHS HHS
  8. R01 DK075119/NIDDK NIH HHS

MeSH Term

Aged
Aged, 80 and over
Alleles
Attention
Brain
Brain-Derived Neurotrophic Factor
Cardiovascular Diseases
Cognition
Cognition Disorders
Female
Genetic Markers
Genetic Predisposition to Disease
Geriatric Assessment
Humans
Male
Memory
Methionine
Middle Aged
Neuropsychological Tests
Polymorphism, Genetic
Valine

Chemicals

Brain-Derived Neurotrophic Factor
Genetic Markers
Methionine
Valine

Word Cloud

Created with Highcharts 10.0.0=0BDNFfunctioncognitiveCVDβPpersonscardiovasculardiseaseoneamongmechanismsgeneticneurotrophicgenestudygenotypeindividualsparticipantsattention/executivememorylanguagevisuospatialabilitiessamplemethionineallelecategorizedgroupnfindingsworkAIM:Cognitiveimpairmentcommonseveralpotentialaetiologicaldescribedincludingcontributionsmarkersvariationsbrain-derivedcurrentexaminedassociationsMETHODS:included110completedcomprehensiveneuropsychologicalbatteryassessedglobalalsounderwentblooddrawprovideDNAuseddetermineCarrierseithertwocopies33non-carrierssecond77RESULTS:adjustmentdemographicmedicalcharacteristicshierarchicalregressionanalysesrevealedallelesdisplayedbetterperformancevaline/valine220472503welltrend19082106CONCLUSIONS:BDNF Val66MetlittleimpactfunctioningolderadultssignificantcontradictedpredictedpastFuturemuchneededclarifyparticularlystudiesexaminingcirculatinglevelsvariationtimeBrain-derivedfactorVal66MetpolymorphismMetgenetics

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