Molecular Biology of Diabetes


Book Description

In a rapidly evolving and extremely important area of medical science, it is often difficult for the student, teacher, and researcher to keep abreast of all the important advances. The purpose of Molecular Biology ofDiabetes, Parts I and II is to bring to these individuals the latest knowledge of diabetes-related research in a comprehensive, yet concise manner. To this end, we have assembled chapters, written by most of the world's experts in the field, that we believe compre hensively survey and synthesize a coherent understanding of the subject. Studies of the etiology of type I and type II diabetes are extremely exciting and essential, since we hope to one day prevent the disease using gene therapy. These aspects are covered in Molecular Biology of Diabetes: I. Autoimmunity and Genetics; Insulin Synthesis and Secretion. In type II diabetes, an abnormality in pancreatic secretion exists concomitantly with peripheral insulin resistance. This abnor mality of insulin secretion is believed to be related to a defect(s) in glucose sensing. Uncoupling of glucose sensing from insulin secre tion may be the crucial step in the pathogenesis of noninsulin-depen dent diabetes. In this volume, we have invited authors to describe their studies on all known factors affecting ~-cell function, including autoimmunity and genetics of diabetes, as well as molecular mecha nisms of insulin synthesis and secretion. In the last few years, the most rapidly advancing area of research in diabetes has been, in fact, related to insulin action.




Molecular Nutrition and Diabetes


Book Description

Molecular Nutrition and Diabetes: A Volume in the Molecular Nutrition Series focuses on diabetes as a nutritional problem and its important metabolic consequences. Fuel metabolism and dietary supply all influence the outcome of diabetes, but understanding the pathogenesis of the diabetic process is a prelude to better nutritional control. Part One of the book provides general coverage of nutrition and diabetes in terms of dietary patterns, insulin resistance, and the glucose-insulin axis, while Part Two presents the molecular biology of diabetes and focuses on areas such as oxidative stress, mitochondrial function, insulin resistance, high-fat diets, nutriceuticals, and lipid accumulation. Final sections explore the genetic machinery behind diabetes and diabetic metabolism, including signaling pathways, gene expression, genome-wide association studies, and specific gene expression. While the main focus of each chapter is the basic and clinical research on diabetes as a nutritional problem, all chapters also end with a translational section on the implications for the nutritional control of diabetes. Offers updated information and a perspective on important future developments to different professionals involved in the basic and clinical research on all major nutritional aspects of diabetes mellitus Explores how nutritional factors are involved in the pathogenesis of both type1 and type2 diabetes and their complications Investigates the molecular and genetic bases of diabetes and diabetic metabolism through the lens of a rapidly evolving field of molecular nutrition




Molecular and Cell Biology of Type 2 Diabetes and Its Complications


Book Description

The present volume summarizes current research on type 2 diabetes, its etiology, pathogenesis and long-term vascular and neurological consequences, with special emphasis on molecular and biochemical mechanisms. Alterations in insulin secretion are comprehensively treated, focusing on the role of glucokinase as glucose sensor. Moreover, insulin action is analyzed with regard to both nonoxidative glucose utilization and glucose oxidation. Concerning the complications in chronic diabetes, topics covered include the effects of high glucose concentration on cellular and endothelial functions and on the glucose phosphorylation rate in non-insulin-sensitive tissues. Furthermore, the role of oxidative stress and advanced glycation end products as well as the significance of alterations in lipoprotein structure are considered. Finally, the pericyte loss in retinopathy and microalbuminuria as related to cardiovascular risk are discussed. Taken as a whole, the contributions included in this book represent a large body of information that will be of great interest to diabetologists, endocrinologists and internists interested in both the basic and clinical aspects of diabetes and its complications.




Diabetes


Book Description

Diabetes: Oxidative Stress and Dietary Antioxidants, Second Edition, builds on the success of the first edition, covering updated research on the science of oxidative stress in diabetes and the potentially therapeutic usage of natural antioxidants in the diet and food matrix. The processes within the science of oxidative stress are not described in isolation, but rather in concert with other processes, such as apoptosis, cell signaling and receptor mediated responses. This approach recognizes that diseases are often multifactorial and oxidative stress is a single component of this. Since the publication of the first edition, the science of oxidative stress and free radical biology continues to rapidly advance with thousands of the research articles on the topic. New sections in this update cover the role of dietary advanced glycation end products (AGEs) in causing OS in diabetes, oxidative stress and diabetes-induced bone metabolism, and oxidative stress and diabetic foot ulcer. Saves clinicians and researchers time in quickly accessing the very latest details on a broad range of diabetes and oxidation issues Combines the science of oxidative stress and the putative therapeutic usage of natural antioxidants in the diet, its food matrix or plant Includes preclinical, clinical and population studies to help endocrinologists, diabetologists, nutritionists, dieticians and clinicians map out key areas for research and further clinical recommendations




Molecular Biology of Diabetes


Book Description

In a rapidly evolving and extremely important area of medical science, it is often difficult for the student, teacher, and researcher to keep abreast of all the important advances. The purpose of Molecular Biology ofDiabetes, Parts I and II is to bring to these individuals the latest knowledge of diabetes-related research in a comprehensive, yet concise manner. To this end, we have assembled chapters, written by most of the world's experts in the field, that we believe compre hensively survey and synthesize a coherent understanding of the subject. Studies of the etiology of type I and type II diabetes are extremely exciting and essential, since we hope to one day prevent the disease using gene therapy. These aspects are covered in Molecular Biology of Diabetes: I. Autoimmunity and Genetics; Insulin Synthesis and Secretion. In type II diabetes, an abnormality in pancreatic secretion exists concomitantly with peripheral insulin resistance. This abnor mality of insulin secretion is believed to be related to a defect(s) in glucose sensing. Uncoupling of glucose sensing from insulin secre tion may be the crucial step in the pathogenesis of noninsulin-depen dent diabetes. In this volume, we have invited authors to describe their studies on all known factors affecting ~-cell function, including autoimmunity and genetics of diabetes, as well as molecular mecha nisms of insulin synthesis and secretion. In the last few years, the most rapidly advancing area of research in diabetes has been, in fact, related to insulin action.







Pharmacological and Molecular Perspectives on Diabetes


Book Description

Pharmacological and Molecular Perspectives on Diabetes is a compilation of reviews on clinical and scientific aspects of diabetes mellitus. It presents 11 contributions by eminent scholars that give the reader rational pharmacological and genetic perspectives of the disease and its treatment. The reviews approach diabetes from different angles, and highlight research that has been done to understand some questions about the molecular biology of diabetes in experimental settings. Topics of clinical significance such as the use of different hypoglycemic agents, and diabetic complications in clinical settings are also covered. Topics included in this book are: · Epigenetic alterations and type 2 diabetes mellitus · Responses to nutritional chromium supplements for type 2 diabetes mellitus · Endocrine role of osteocalcin in homeostatic regulation of glucose metabolism · Effect of diabetes on memory · Osteoarthritis in relation to type 2 diabetes mellitus: prevalence, etiology, symptoms and molecular mechanism · Infection of novel coronavirus in patients with diabetes mellitus · Role of an anti-inflammatory agent in the management of type 2 diabetes mellitus · Role of antidiabetic agents which helps regulates TCF7L2 variations in type 2 diabetes mellitus · Relationship between type 2 diabetes mellitus, PCOD and neurological disorders: role of antidiabetic drugs · Comparison of different types of insulin available for type 1 diabetes treatment · Circadian rhythm disruption: special reference to type 2 diabetes mellitus · Type 2 diabetes mellitus and its complications: pharmacogenetics based correlations and circulating microRNA as biomarkers Pharmacological and Molecular Perspectives on Diabetes should prove to be of interest to all pharmaceutical and molecular biology scientists who are involved in research in anti-diabetic drug design and discovery, and practicing endocrinologists who wish to keep abreast of recent developments in the field.




Animal Models in Diabetes Research


Book Description

In recent years, human studies have made enormous contributions towards an understanding of the genetic basis of diabetes mellitus; however, most of the experimentation needed for the invention and testing of novel therapeutic approaches cannot be performed in humans. Thus, there is no alternative to appropriate animal models. In Animal Models in Diabetes Research, expert researchers explore the current status of the most important models and procedures in order to provide a timely resource in experimental diabetology. The first half of the volume serves as a comprehensive overview on our current knowledge of the pathogenesis and pathophysiology of diabetes in animal models through a series of reviews in model strains. The book then continues with vital, established protocols that are employed in the characterization and study of animal models of diabetes. As a volume in the highly successful Methods in Molecular BiologyTM series, this work contains the type of detailed description and key implementation advice necessary to achieve successful results. Authoritative and cutting-edge, Animal Models in Diabetes Research delivers essential content that will be an important resource to advance diabetes research in the years to come.