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Abstract| Volume 252, e105, September 2016

Eicosapentaenoic acid (EPA) membrane incorporation reduces abca1-dependent cholesterol efflux in unloaded as well as in cholesterol-loaded primary human macrophages through different mechanisms

  • N. Fournier
    Affiliations
    Faculté des Sciences Pharmaceutiques- Université Paris-Sud- Université Paris Saclay, LipSys 2- Athérosclérose: homéostasie et trafic du cholestérol des macrophages, Châtenay-Malabry 92296, France
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  • S. Tardivel
    Affiliations
    Faculté des Sciences Pharmaceutiques- Université Paris-Sud- Université Paris Saclay, LipSys 2- Athérosclérose: homéostasie et trafic du cholestérol des macrophages, Châtenay-Malabry 92296, France
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  • B. Vedie
    Affiliations
    Hôpital Européen Georges Pompidou- AP-HP, Laboratoire de Biochimie, Paris 75015, France
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  • J.F. Benoist
    Affiliations
    Hôpital Robert Debré- AP-HP, Laoratoir de Biochimie-Hormonologie, Paris 75019, France
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  • F. Allaoui
    Affiliations
    Faculté des Sciences Pharmaceutiques- Université Paris-Sud- Université Paris Saclay, LipSys 2- Athérosclérose: homéostasie et trafic du cholestérol des macrophages, Châtenay-Malabry 92296, France
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  • J.L. Paul
    Affiliations
    Faculté des Sciences Pharmaceutiques- Université Paris-Sud- Université Paris Saclay, LipSys 2- Athérosclérose: homéostasie et trafic du cholestérol des macrophages, Châtenay-Malabry 92296, France
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      Objectives: Dietary polyunsaturated fatty acids (PUFAs) affect the cellular phospholipids composition which may influence the function of membrane proteins. We investigated the impact of the incorporation of several PUFAs on ABCA1-mediated cholesterol efflux, an anti-atherogenic process.
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