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      Effects of freeze-dried cranberry powder on serum lipids and inflammatory markers in lipopolysaccharide treated rats fed an atherogenic diet

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          Abstract

          This study investigated the effects of freeze-dried cranberry powder on anti-inflammation and lipid profiles of lipopolysaccharide (LPS)-treated rats fed an atherogenic diet for 6 weeks. Forty Sprague-Dawley male rats (6-weeks-old) were equally divided into the following five groups: 1) normal diet group + saline (NC); 2) atherogenic diet + saline (HFC); 3) atherogenic diet + LPS (HL); 4) atherogenic diet with 5% cranberry power + LPS (C5); 5) atherogenic diet with 10% cranberry power + LPS (C10). LPS (0.5 mg/kg) was injected into the abdominal cavities of rats 18 hours prior to sacrifice. At the end of the experimental period, we measured serum lipid profiles as well as levels of serum C-reactive protein (CRP), nitric oxide (NO), and pro-inflammatory cytokines such as tumor necrosis factor-α (TNF-α), interleukin (IL)-1β, IL-6, and IL-10 as an anti-inflammatory cytokine. The mean serum high density lipoprotein (HDL)-cholesterol level in C5 rats was significantly higher than that in NC and HL rats ( P < 0.05). The mean serum levels of CRP and IL-1β were significantly lower ( P < 0.05) in the cranberry powder groups compared to those in HL rats. Additionally, mean serum IL-6 levels tended to be lower in the cranberry groups than that in the HL group, whereas serum IL-10 and NO showed 29% and 88% higher mean values in the C5 group and 49% and 24% higher in the C10 group than those in the HL group, respectively. These results suggest that freeze-dried cranberry powder may have beneficial effects on cardiovascular diseases by modifying serum lipids and the early inflammatory response.

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          Most cited references43

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          Report of the American Institute of Nurtition ad hoc Committee on Standards for Nutritional Studies.

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            Inflammation and atherosclerosis: role of C-reactive protein in risk assessment.

            Inflammation participates critically in atherosclerosis. Circulating levels of several inflammatory markers rise in individuals at risk for atherosclerotic events. In particular, elevation of plasma C-reactive protein (CRP), a nonspecific acute-phase reactant that is easily and reliably measured, has strong predictive power for cardiovascular events. Indeed, measurements of high-sensitivity CRP (hs-CRP) plasma levels add to both the prognostic information gleaned from assay of plasma lipid risk factors and the risk levels estimated by means of Framingham study-based criteria. Retrospective data suggest the hypothesis that hs-CRP plasma levels may be useful for guiding use of lipid-lowering therapy in individuals who appear to be at low risk according to traditional risk assessment. A large-scale, randomized clinical trial-Justification for the Use of Statins in Primary Prevention: an Intervention Trial Evaluating Rosuvastatin (JUPITER)-will test whether rosuvastatin therapy will reduce incident cardiovascular disease in subjects with elevated plasma hs-CRP concentrations who do not meet current criteria for initiation of lipid-lowering drug therapy. Such clinical trial data may provide an evidence base for the use of plasma CRP assay as an adjuvant guide to therapy to complement the established traditional risk factors such as plasma lipid levels. Thus, medical practitioners are ushering in an era in which the biology of inflammation in atherosclerosis will find its way into clinical application.
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              Cranberry and blueberry: evidence for protective effects against cancer and vascular diseases.

              Growing evidence from tissue culture, animal, and clinical models suggests that the flavonoid-rich fruits of the North American cranberry and blueberry (Vaccinium spp.) have the potential ability to limit the development and severity of certain cancers and vascular diseases including atherosclerosis, ischemic stroke, and neurodegenerative diseases of aging. The fruits contain a variety of phytochemicals that could contribute to these protective effects, including flavonoids such as anthocyanins, flavonols, and proanthocyanidins; substituted cinnamic acids and stilbenes; and triterpenoids such as ursolic acid and its esters. Cranberry and blueberry constituents are likely to act by mechanisms that counteract oxidative stress, decrease inflammation, and modulate macromolecular interactions and expression of genes associated with disease processes. The evidence suggests a potential role for dietary cranberry and blueberry in the prevention of cancer and vascular diseases, justifying further research to determine how the bioavailability and metabolism of berry phytonutrients influence their activity in vivo.
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                Author and article information

                Journal
                Nutr Res Pract
                NRP
                Nutrition Research and Practice
                The Korean Nutrition Society and the Korean Society of Community Nutrition
                1976-1457
                2005-6168
                October 2011
                28 October 2011
                : 5
                : 5
                : 404-411
                Affiliations
                [1 ]Department of Food and Nutrition, College of Natural Sciences, Seoul Women's University, Seoul 139-774, Korea.
                [2 ]Department of Home Economics, Korea National Open University, 86 Daehangno Jongno-gu, Seoul 110-791, Korea.
                Author notes
                Corresponding Author: Ho-Kyung Kwak, Tel. 82-2-3668-4649, Fax. 82-2-3668-4188, hkkwak@ 123456knou.ac.kr
                Article
                10.4162/nrp.2011.5.5.404
                3221825
                22125677
                cae36761-6552-480f-b1d3-799d6cf3bd6e
                ©2011 The Korean Nutrition Society and the Korean Society of Community Nutrition

                This is an Open Access article distributed under the terms of the Creative Commons Attribution Non-Commercial License ( http://creativecommons.org/licenses/by-nc/3.0/) which permits unrestricted non-commercial use, distribution, and reproduction in any medium, provided the original work is properly cited.

                History
                : 25 March 2011
                : 14 September 2011
                : 27 September 2011
                Categories
                Original Research

                Nutrition & Dietetics
                il-1β,il-10,cranberry powder,atherogenic diet,c-reactive protein (crp)
                Nutrition & Dietetics
                il-1β, il-10, cranberry powder, atherogenic diet, c-reactive protein (crp)

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