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Titlebook: Hyperglycemia, Diabetes and Vascular Disease; Neil Ruderman,Joseph Williamson,Michael Brownlee Book 1992 American Physiological Society 19

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发表于 2025-3-21 19:36:17 | 显示全部楼层 |阅读模式
书目名称Hyperglycemia, Diabetes and Vascular Disease
编辑Neil Ruderman,Joseph Williamson,Michael Brownlee
视频video
概述There are over 12 million people with diabetes in the US.The authors review clinical, epidemiological, and biochemical evidence that high levels of blood glucose produce metabolic and biochemical alte
丛书名称Clinical Physiology
图书封面Titlebook: Hyperglycemia, Diabetes and Vascular Disease;  Neil Ruderman,Joseph Williamson,Michael Brownlee Book 1992 American Physiological Society 19
描述It is estimated that 1-5% ofthe world‘s population is affected by some form of diabetes. Patients with these disorders are highly likely to develop microvas­ cular pathology in the retina and glomerulus and they are at a 2--6-fold greater risk for atherosclerotic vascular disease than individuals without diabetes. In addition, hypertension is far more prevalent in patients with diabetes than in the general population. As a consequence of these complications, diabetes is a leading cause of blindness and renal failure in young and middle-aged adults and it is a major risk factor for coronary heart disease, stroke and peripheral vascular disease in the Western world. An understanding of the relationship of these vascular complications to diabetic hyperglycemia has become a critical issue for clinicians in recent years, since the prevalence of diabetes appears to be increasing dramatically world-wide. In addition, it is now possible to achieve improved glycemic control in many patients-although not without incurring other risks. This volume explores two principal hypotheses concerning these complications. One is that hyperglycemia underlies or at least contributes to the pathogenesis o
出版日期Book 1992
关键词Diabetes; Diabetes mellitus; Hyperglycemia; Vascular Disease; endothelium; metabolism; physiology; signal t
版次1
doihttps://doi.org/10.1007/978-1-4614-7524-8
isbn_ebook978-1-4614-7524-8
copyrightAmerican Physiological Society 1992
The information of publication is updating

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发表于 2025-3-21 20:23:13 | 显示全部楼层
Diabetes Mellitus and the Vascular Endothelium function of the endothelium. Because these vasomotor abnormalities result from the abnormal release of substances from the endothelium that may play a role in thrombosis and growth, an understanding of their mechanism of action may provide new insights to the basis of vascular complications in diabetes mellitus.
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Mobilization of Arachidonic Acid from Diacyl and Ether Phospholipids in Cultured Endothelial Cellsted manner. In this chapter, the discussion focuses on studies undertaken to examine arachidonic acid metabolism in endothelial cells and the influence upon it by elevated glucose levels similar to those found in patients with diabetes.
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Nonenzymatic Glycosylation of Macromolecules: Prospects for Pharmacologic Modulationascular complications. Current evidence suggests that a particular diabetic individual’s clinical course is also influenced by genetic determinants of tissue susceptibility and independent accelerating factors such as hypertension.
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Effects of Nonenzymatic Glycation on Molecular Interactions of Basement Membrane Moleculesonents that are thought to be the building blocks for this structure. It should be emphasized that the current list of well-characterized basement membrane macromolecules is a partial one, and certainly other components will soon be added.
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Epidemiology of Hyperglycemia and Atherosclerosistes a continued high prevalence of diabetes, largely undetected, among the general population (2). Despite improved diagnostic methods and better treatment, physicians continue to encounter a high rate of atherosclerotic cardiovascular sequelae in their diabetic patients.
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vels of blood glucose produce metabolic and biochemical alteIt is estimated that 1-5% ofthe world‘s population is affected by some form of diabetes. Patients with these disorders are highly likely to develop microvas­ cular pathology in the retina and glomerulus and they are at a 2--6-fold greater r
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