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Skip to Search Results- 3Mangat, Rabban
- 2Borthwick, Faye
- 2Hassanali, Zahra
- 2Proctor, Spencer D.
- 2Russell, James C.
- 2Vine, Donna F.
- 3Metabolic Syndrome
- 1ApoB48 Remnants
- 1Arterial Remodeling
- 1Arterial Retention
- 1Atherosclerosis
- 1Biglycan
- 2Agricultural, Food and Nutritional Science, Department of
- 2Agricultural, Food and Nutritional Science, Department of/Journal Articles (Agricultural, Food and Nutritional Science)
- 1Graduate and Postdoctoral Studies (GPS), Faculty of
- 1Graduate and Postdoctoral Studies (GPS), Faculty of /Theses and Dissertations
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Arterial retention of remnant lipoproteins ex-vivo is increased during insulin resistance due to increased arterial biglycan and production of cholesterol-rich atherogenic particles, that can be improved by ezetimibe in the JCR:LA-cp rat
Download2012
Russell, James C., Proctor, Spencer D., Uwiera, Richard R. E., Vine, Donna F., Mangat, Rabban, Hassanali, Zahra, Cheeseman, Christopher I., Borthwick, Faye, Warnakula, Samantha
Background Literature supports the “response-to-retention” hypothesis—that during insulin resistance, impaired metabolism of remnant lipoproteins can contribute to accelerated cardiovascular disease progression. We used the JCR:LA-cp rat model of metabolic syndrome (MetS) to determine the extent...
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Chronic dietary n-3 PUFA intervention improves dyslipidaemia and subsequent cardiovascular complications in the JCR:LA-cp rat model of the metabolic syndrome
Download2011
Borthwick, Faye, Field, Catherine J., Wang, Ye, Proctor, Spencer D., Jaeschke, Anja, Shi, Danni, Hassanali, Zahra, Ruth, Megan, Russell, James C., Mangat, Rabban, Vine, Donna F., Lu, Jing
There is increasing interest in the potential chronic beneficial effects of dietary n-3 PUFA on the metabolic syndrome (MetS) and associated cardiovascular complications. We have recently established that increased dietary n-3 PUFA has a profound acute benefit on fasting lipids and the...
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The Role of Intestinal Derived Remnant Lipoproteins in the Progression of Atherosclerosis in Animal Models of Type 1 and Type 2 Diabetes.
DownloadFall 2011
Introduction: Subjects with insulin resistance (IR) and diabetes are at increased risk of cardiovascular disease (CVD) than those without diabetes, however the mechanistic basis remains elusive. Despite LDL-cholesterol lowering by statin therapy, two-thirds of all CVD events remain, constituting...