E R Miller1, L J Appel, T H Risby. 1. Welch Center for Prevention, Epidemiology, and Clinical Research, The Johns Hopkins Medical Institutions, Baltimore, MD, USA. ermiller@welchlink.welch.jhu.edu
Abstract
BACKGROUND: Free radical-mediated oxidative damage to lipids is thought to be an important process in the pathogenesis of atherosclerosis. Although previous studies have demonstrated a beneficial impact of antioxidant vitamin supplements on lipid peroxidation, the effect of dietary patterns on lipid peroxidation is unknown. METHODS AND RESULTS: During the 3-week run-in period of a randomized trial, 123 healthy individuals were fed a control diet, low in fruits, vegetables, and dairy products, with 37% of calories from fat. Participants were then randomized to consume for 8 weeks: (1) the control diet, (2) a diet rich in fruits and vegetables but otherwise similar to the control diet, and (3) a combination diet rich in fruits, vegetables, and low-fat dairy products and reduced in fat. Serum oxygen radical-absorbing capacity, malondialdehyde (an in vitro measure of lipid peroxidation), and breath ethane (an in vivo measure of lipid peroxidation) were measured at the end of run-in and intervention periods. Between run-in and intervention, mean (95% CI) change in oxygen radical-absorbing capacity (U/mL) was -35 (-93, 13) in the control diet, 26 (-15, 67) in the fruits and vegetables diet (P=0.06 compared with control), and 19 (-22, 54) in the combination diet (P=0.10 compared with control). Median (interquartile range) change in ethane was 0.84 (0.10, 1.59) in the control diet, 0.02 (-0.61, 0.83) in the fruits and vegetables diet (P=0.04 compared with control), and -1.00 (-1.97, 0.25) in the combination diet (P=0.005 compared with control). Change in malondialdehyde did not differ between diets. CONCLUSIONS: This study demonstrates that modification of diet can favorably affect serum antioxidant capacity and protect against lipid peroxidation.
RCT Entities:
BACKGROUND:Free radical-mediated oxidative damage to lipids is thought to be an important process in the pathogenesis of atherosclerosis. Although previous studies have demonstrated a beneficial impact of antioxidant vitamin supplements on lipid peroxidation, the effect of dietary patterns on lipid peroxidation is unknown. METHODS AND RESULTS: During the 3-week run-in period of a randomized trial, 123 healthy individuals were fed a control diet, low in fruits, vegetables, and dairy products, with 37% of calories from fat. Participants were then randomized to consume for 8 weeks: (1) the control diet, (2) a diet rich in fruits and vegetables but otherwise similar to the control diet, and (3) a combination diet rich in fruits, vegetables, and low-fat dairy products and reduced in fat. Serum oxygen radical-absorbing capacity, malondialdehyde (an in vitro measure of lipid peroxidation), and breathethane (an in vivo measure of lipid peroxidation) were measured at the end of run-in and intervention periods. Between run-in and intervention, mean (95% CI) change in oxygen radical-absorbing capacity (U/mL) was -35 (-93, 13) in the control diet, 26 (-15, 67) in the fruits and vegetables diet (P=0.06 compared with control), and 19 (-22, 54) in the combination diet (P=0.10 compared with control). Median (interquartile range) change in ethane was 0.84 (0.10, 1.59) in the control diet, 0.02 (-0.61, 0.83) in the fruits and vegetables diet (P=0.04 compared with control), and -1.00 (-1.97, 0.25) in the combination diet (P=0.005 compared with control). Change in malondialdehyde did not differ between diets. CONCLUSIONS: This study demonstrates that modification of diet can favorably affect serum antioxidant capacity and protect against lipid peroxidation.
Authors: Lee Hooper; Carolyn D Summerbell; Rachel Thompson; Deirdre Sills; Felicia G Roberts; Helen J Moore; George Davey Smith Journal: Cochrane Database Syst Rev Date: 2012-05-16
Authors: Aifric O'Sullivan; Patrice Armstrong; Gertrud U Schuster; Theresa L Pedersen; Hooman Allayee; Charles B Stephensen; John W Newman Journal: J Nutr Date: 2013-11-20 Impact factor: 4.798
Authors: Katie A Meyer; Femke P C Sijtsma; Jennifer A Nettleton; Lyn M Steffen; Linda Van Horn; James M Shikany; Myron D Gross; Jaakko Mursu; Maret G Traber; David R Jacobs Journal: Free Radic Biol Med Date: 2012-08-25 Impact factor: 7.376
Authors: Diego Botero; Cara B Ebbeling; Jeffrey B Blumberg; Judy D Ribaya-Mercado; Mark A Creager; Janis F Swain; Henry A Feldman; David S Ludwig Journal: Obesity (Silver Spring) Date: 2009-06-18 Impact factor: 5.002
Authors: Lee Hooper; Carolyn D Summerbell; Rachel Thompson; Deirdre Sills; Felicia G Roberts; Helen Moore; George Davey Smith Journal: Cochrane Database Syst Rev Date: 2011-07-06