A 3-week intensive diet and exercise intervention in obese men significantly reduced markers of oxidative stress, inflammation, and cell adhesion (P<0.05), resolving metabolic syndrome in 9 of 15 men.
Observational (n=31)
Does a 3-week high-fiber, low-fat diet and daily aerobic exercise improve markers of oxidative stress, inflammation, and endothelial activation in obese men?
A 3-week intensive lifestyle modification program consisting of a high-fiber, low-fat diet and daily aerobic exercise significantly improved markers of oxidative stress, inflammation, and endothelial activation in obese men.
p-value: p=<0.05
The present study was designed to examine the effects of lifestyle modification on key contributing factors to atherogenesis, including oxidative stress, inflammation, chemotaxis, and cell adhesion. Obese men (n = 31), 15 of whom had metabolic syndrome, were placed on a high-fiber, low-fat diet in a 3-wk residential program where food was provided ad libitum and daily aerobic exercise was performed. In each subject, pre- and postintervention fasting blood was drawn for circulating levels of serum lipids, glucose and insulin (for estimation of insulin sensitivity), oxidative stress-generating enzyme myeloperoxidase and marker 8-isoprostaglandin F2alpha, the inflammatory protein C-reactive protein, soluble ICAM-1 as an indicator of endothelial activation, sP-selectin as a marker of platelet activation, the chemokine macrophage inflammatory protein-1alpha, and total matrix metalloproteinase-9. Using subject sera and human aortic endothelial cell culture systems, we measured VCAM-1 cell surface abundance and monocyte chemotactic protein-1, nitric oxide, superoxide, and hydrogen peroxide production in vitro by fluorometric detection. Also determined in vitro was serum-induced, monocyte adhesion and monocyte chemotactic activity. After 3 wk, significant reductions (P < 0.05) in body mass index, all serum lipids and lipid ratios, fasting glucose, insulin, homeostasis model assessment for insulin resistance, myeloperoxidase, 8-isoprostaglandin F2alpha, C-reactive protein, soluble ICAM-1, soluble P-selectin, macrophage inflammatory protein-1alpha, and matrix metalloproteinase-9 were noted. In vitro, serum-stimulated cellular VCAM-1 expression, monocyte chemotactic protein-1 production, and fluorometric detection of superoxide and hydrogen peroxide production decreased, whereas a concomitant increase in NO production was noted (all P < 0.01). Additionally, both monocyte adhesion (P < 0.05) and MCA (P < 0.01) decreased. Nine of 15 were no longer positive for metabolic syndrome postintervention. Intensive lifestyle modification may ameliorate novel coronary artery disease risk factors in men with metabolic syndrome factors before reversal of obesity.
Roberts et al. (Fri,) conducted a observational in Obese men with metabolic syndrome factors (n=31). High-fiber, low-fat diet and daily aerobic exercise vs. Pre-intervention baseline was evaluated on Changes in body mass index, serum lipids, glucose, insulin, and markers of oxidative stress and inflammation (p=<0.05). A 3-week intensive diet and exercise intervention in obese men significantly reduced markers of oxidative stress, inflammation, and cell adhesion (P<0.05), resolving metabolic syndrome in 9 of 15 men.