Article
Omega-3 Fatty Acids and Genome-Wide Interaction Analyses Reveal DPP10-Pulmonary Function Association.
American journal of respiratory and critical care medicine - 1 Mar 2019
Xu Jiayi, Gaddis Nathan C, Bartz Traci M, Hou Ruixue, Manichaikul Ani W, Pankratz Nathan, Smith Albert V, Sun Fangui, Terzikhan Natalie, Markunas Christina A, Patchen Bonnie K, Schu Matthew, Beydoun May A, Brusselle Guy G, Eiriksdottir Gudny, Zhou Xia, Wood Alexis C, Graff Mariaelisa, Harris Tamara B, Ikram M Arfan, Jacobs David R, Launer Lenore J, Lemaitre Rozenn N, O'Connor George T, Oelsner Elizabeth C, Psaty Bruce M, Vasan Ramachandran S, Rohde Rebecca R, Rich Stephen S, Rotter Jerome I, Seshadri Sudha, Smith Lewis J, Tiemeier Henning, Tsai Michael Y, Uitterlinden André G, Voruganti V Saroja, Xu Hanfei, Zilhão Nuno R, Fornage Myriam, Zillikens M Carola, London Stephanie J, Barr R Graham, Dupuis Josée, Gharib Sina A, Gudnason Vilmundur, Lahousse Lies, North Kari E, Steffen Lyn M, Cassano Patricia A, Hancock Dana B
Abstract excerpt
RATIONALE: Omega-3 polyunsaturated fatty acids (n-3 PUFAs) have anti-inflammatory properties that could benefit adults with comprised pulmonary health. OBJECTIVE: To investigate n-3 PUFA associations with spirometric measures of pulmonary function tests (PFTs) and determine underlying genetic susceptibility. METHODS: Associations of n-3 PUFA biomarkers (α-linolenic acid, eicosapentaenoic acid, docosapentaenoic...
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