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Plasma HDL Reduces Nonesterified Fatty Acid Hydroperoxides Originating from Oxidized LDL: a Mechanism for Its Antioxidant Ability
Authors:Mari Kotosai  Sachiko Shimada  Mai Kanda  Namiko Matsuda  Keiko Sekido  Yoshibumi Shimizu  Akira Tokumura  Toshiyuki Nakamura  Kaeko Murota  Yoshichika Kawai  Junji Terao
Affiliation:1. Department of Food Science, Institute of Health Biosciences, University of Tokushima Graduate School, Kuramoto-cho 3-18-15, Tokushima, 770-8503, Japan
2. Department of Nursing Education, Institute of Health Biosciences, University of Tokushima Graduate School, Kuramoto-cho 3-18-15, Tokushima, 770-8503, Japan
4. Keiko Kekido, Graduate School of Health Sciences, Kobe University, Kobe, 654-0142, Japan
3. Department of Pharmaceutical Health Chemistry, University of Tokushima Graduate School, Kuramoto-cho 3-18-15, Tokushima, 770-8503, Japan
5. Kaeko Murota, Department of Life Sciences, School of Science and Engineering, Kinki University, Osaka, 577-8502, Japan
6. Laboratory of Food and Biodynamics, Graduate School of Bioagricultural Sciences, Nagoya University, Nagoya, 464-8601, Japan
Abstract:The antioxidant property of plasma high-density lipoprotein (HDL) is thought to be involved in potential anti-atherogenic effects but the exact mechanism is not known. We aimed to reveal the contribution of HDL on the elimination of lipid hydroperoxides (LOOH) derived from oxidized low-density lipoprotein (LDL). Oxidized LDL prepared by copper ion-induced oxidation contained nonesterified fatty acid hydroperoxides (FFA-OOH) and lysophosphatidylcholine (lysoPtdCho), in addition to cholesteryl ester hydroperoxides (CE-OOH) and phosphatidylcholine hydroperoxides (PtdCho-OOH). A platelet-activating factor-acetylhydrolase (PAF-AH) inhibitor suppressed formation of FFA-OOH and lysoPtdCho in oxidized LDL. Among LOOH species, FFA-OOH was preferentially reduced by incubating oxidized LDL with HDL. HDL exhibited selective FFA-OOH reducing ability if it was mixed with a liposomal solution containing FFA-OOH, CE-OOH and PtdCho-OOH. Two-electron reduction of the hydroperoxy group to the hydroxy group was confirmed by the formation of 13-hydroxyoctadecadienoic acid from 13-hydroperoxyoctadecadienoic acid in HPLC analyses. This reducing effect was also found in apolipoprotein A-1 (apoA-1). FFA-OOH released from PtdCho-OOH due to PAF-AH activity in oxidized LDL undergo two-electron reduction by the reducing ability of apoA1 in HDL. This preferential reduction of FFA-OOH may participate in the mechanism of the antioxidant property of HDL.
Keywords:HDL  Nonesterified fatty acid hydroperoxides  Atherosclerosis  Oxidized LDL  Apolipoprotein A‐1  Platelet activating factor‐acetyl hydrolase
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