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Hyperglycemia, Diabetes and Vascular Disease

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  • 320 Seiten
  • 12 Lesestunden

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There are over 12 million people with diabetes in the U.S. Blindness, renal failure, and coronary heart disease are the three most frequent complications of late-stage diabetes, and diabetic patients are at greater risk for developing these conditions than the rest of the population. This bookexamines the link between hyperglycemia and micro- and macro- vascular disease in diabetes. The authors review clinical, epidemiological, and biochemical evidence that high levels of blood glucose produce metabolic and biochemical alterations in vascular walls. These alterations in turn lead toabnormalities in vascular structure and, ultimately, function. Although there are differences in the pathogenesis of these two types of vascular disease, the emphasis in the book is on the common mechanisms by which hyperglycemia produces vascular alterations. This work is unique in providing anintegrated picture of the effects of hyperglycemia on vascular metabolism, function, and disease. Implications for therapy are also discussed. Hyperglycemia, Diabetes and Vascular Disease is based on a 1989 FASEB symposium offered by the American Physiological Society, and is a volume in theSociety's Clinical Physiology Series.

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Hyperglycemia, Diabetes and Vascular Disease, Joseph Williamson, Michael Brownlee, Neil Ruderman

Sprache
Erscheinungsdatum
1992
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Titel
Hyperglycemia, Diabetes and Vascular Disease
Sprache
Englisch
Erscheinungsdatum
1992
Einband
Hardcover
Seitenzahl
320
ISBN10
0195067738
ISBN13
9780195067736
Reihe
Beschreibung
There are over 12 million people with diabetes in the U.S. Blindness, renal failure, and coronary heart disease are the three most frequent complications of late-stage diabetes, and diabetic patients are at greater risk for developing these conditions than the rest of the population. This bookexamines the link between hyperglycemia and micro- and macro- vascular disease in diabetes. The authors review clinical, epidemiological, and biochemical evidence that high levels of blood glucose produce metabolic and biochemical alterations in vascular walls. These alterations in turn lead toabnormalities in vascular structure and, ultimately, function. Although there are differences in the pathogenesis of these two types of vascular disease, the emphasis in the book is on the common mechanisms by which hyperglycemia produces vascular alterations. This work is unique in providing anintegrated picture of the effects of hyperglycemia on vascular metabolism, function, and disease. Implications for therapy are also discussed. Hyperglycemia, Diabetes and Vascular Disease is based on a 1989 FASEB symposium offered by the American Physiological Society, and is a volume in theSociety's Clinical Physiology Series.