Literature DB >> 22748167

Red blood cell omega-3 fatty acid levels and neurocognitive performance in deployed U.S. Servicemembers.

Daniel T Johnston1, Patricia A Deuster, William S Harris, Holden Macrae, Michael N Dretsch.   

Abstract

OBJECTIVE: To explore the cross-sectional relationships between blood eicosapentaenoic acid + docosahexaenoic acid (HSOmega-3 Index(®)) and sleep disorders, depression, anxiety, and neurocognitive performance in Servicemembers deployed to Iraq.
METHODS: Servicemembers with mild-to-moderate depression by the Patient Health Questionnarie-9 from two US military camps were invited to participate in this study. A battery of validated psychosocial (Pittsburgh Sleep Quality Index, and Zung Depression, Zung Anxiety, Epworth Sleepiness, and Combat Experiences scales) and computerized neurocognitive tests were completed by each participant. Five neurocognitive domain scores were calculated--Processing Speed, Complex Attention, Reaction Time, Cognitive Flexibility (CF), and Executive Function (EF). A drop of blood was also collected on an anti-oxidant-treated filter paper card and sent for HS-Omega-3 Index(®) analysis. An analysis of variance contrast was used to test for linear trends between quartiles of the HS-Omega-3 Index(®) for both EF and CF.
RESULTS: The mean HS-Omega-3 Index(®) was 3.5 ± 0.7% (n = 78). The HS-Omega-3 Index(®) was not significantly associated with scores for anxiety, depression, or sleep, whether assessed as continuous or dichotomous variables, but was directly associated with CF and EF (P < 0.02 and 0.01, respectively), especially in the 81% who reported poor sleep quality. In those with poor sleep quality (n = 63), EF and CF were higher (P = 0.005) in subjects with Omega-3 levels above versus below the mean.
CONCLUSION: Optimal neurocognitive performance is essential during deployment. Our finding that EF and CF were positively related to HS-Omega-3 Index(®) suggests that improving omega-3 status through an increase in omega-3 intake may improve neurocognitive performance and confer an element of resilience to poor sleep.

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Year:  2012        PMID: 22748167     DOI: 10.1179/1476830512Y.0000000025

Source DB:  PubMed          Journal:  Nutr Neurosci        ISSN: 1028-415X            Impact factor:   4.994


  26 in total

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3.  Fast transmethylation of total lipids in dried blood by microwave irradiation and its application to a population study.

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Review 5.  Long-chain omega-3 fatty acids and optimization of cognitive performance.

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6.  A genome-wide association study of saturated, mono- and polyunsaturated red blood cell fatty acids in the Framingham Heart Offspring Study.

Authors:  N L Tintle; J V Pottala; S Lacey; V Ramachandran; J Westra; A Rogers; J Clark; B Olthoff; M Larson; W Harris; G C Shearer
Journal:  Prostaglandins Leukot Essent Fatty Acids       Date:  2014-12-02       Impact factor: 4.006

7.  What is the relationship between gestational age and docosahexaenoic acid (DHA) and arachidonic acid (ARA) levels?

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8.  Omega-3 Index and Obstructive Sleep Apnea: A Cross-Sectional Study.

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9.  Polyunsaturated fatty acids moderate the effect of poor sleep on depression risk.

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10.  The Omega-3 Index Is Inversely Associated with Depressive Symptoms among Individuals with Elevated Oxidative Stress Biomarkers.

Authors:  Sherman J Bigornia; William S Harris; Luis M Falcón; José M Ordovás; Chao-Qiang Lai; Katherine L Tucker
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