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This book elucidates the role of brain-gut peptides in neuroendocrine regulation for understanding how these peptides interact with the reproductive neuroendocrine axis and for developing novel therapeutic agents for fertility or contraceptive therapies.
Neuroendocrinology underpins fundamental physiological, molecular, biological, and genetic principles such as the regulation of gene transcription and translation. This handbook highlights the experimental and technical foundations of each area's major concepts and principles.
The Fifth Annual Washington Spring Symposium on Health Sciences attracted over 400 scientists from 20 countries. It was held at the Lisner Auditorium of the George Washington University in Washington. D.C. The theme of the meeting was neural and endocrine peptides and receptors. The meeting emphasized basic and clinical research on neural and endocrine peptides and receptors. The six plenary sessions emphasized pituitary peptides, releasing factors, brain peptides, growth factors, peripheral peptides, and clinical applications. The chapters in this volume are derived from each of these six scientific sessions plus the poster and special sessions. The Abraham White Distinguished Scientist A w...
Gerald Reaven, the discoverer of Syndrome X, and a panel of world-class investigators thoughtfully summarize our current understanding of how insulin resistance and its compensating hyperinsulinemia play a major role in the pathogenesis and clinical course of high blood pressure and cardiovascular disease-the so-called diseases of Western civilization. These distinguished authorities detail, for the first time, the pathophysiological consequences and the clinical syndromes, excluding Type 2 diabetes, related to insulin resistance. They also examine the genetic and lifestyle factors that contribute to the wide differences in insulin action that exist in the population at large. Timely and authoritative, Insulin Resistance: The Metabolic Syndrome X illuminates the full importance of insulin resistance as a major cause of hypertension, heart disease, and polycystic ovary syndrome.
Since the observation in the 19th century that an extract of the suprarenal bodies injected into the circulation caused a rise in blood pressure, the endocrine system has become a major component in our understanding of human physiology. The introduction of radioimmunoassay techniques and the ability to measure minimal amounts of hor mones (a term derived from the Greek "to excite") have shown that acute exercise causes a release of a large number of hormones and that chronic exercise may further lead to long-term alterations in endocrine homeostasis. Actually, almost every organ and system in the body is affected by physical activity and exercise, much of it through the endocrine and neuroe...
Leading medical specialists critically review for the general practitioner the latest techniques for the clinical management of diabetic neuropathy. These authoritative contributors focus on the practical aspects of diabetic neuropathy and describe in detail the treatments that are currently available or expected to become available in the near future. They also include concise discussions of the causes of diabetic neuropathy and highlight the relatively unknown features of neuropathy that can significantly impact a patient's life. Comprehensive, up-to-date bibliographies at the end of each chapter provide an opportunity for the interested physician to gain a more detailed picture of a particular topic. This book offers family physicians, internists, endocrinologists, podiatrists, cardiologists, neurologists, and gastroenterologists an authoritative practical guide and a vital day-to-day reference source for the management of their neuropathic diabetic patients.
Polycystic Ovarian Syndrome (PCOS) is the most common endocrinopathy in women of reproductive age. Providing a state-of-the-art analysis of the connection between insulin resistance and PCOS, this book comprehensively covers a range of topics. It provides an up-to-date and balanced overview of PCOS, with specific attention to the role of insulin resistance in its pathogenesis. It also examines diet and lifestyle factors in the aetiology and management of PCOS.
During the past five to ten years, a variety of tools has been developed in the disciplines of both gene engineering, and molecular and structural biology. Some of these advances have permitted scientists not only to identify and characterize genes, but also to target these genes by disruption, thus eliminating their function in living animals, and to det- mine the biological responses to altered gene products. This has particular significance in endocrine systems, in which feedback mechanisms between the hypothalamus, pi- itary, and end organs are critical in normal physiology. Interpretation of the physiological significance, or the site of action of specific molecules in this context, has...
A cutting-edge review of how derangements in the hormonal and growth factor mechanisms controlling normal mammary development lead to breast cancer. Drawing on the multidisciplinary expertise of leading authorities, the book highlights the roles of oncogenes and tumor suppressor genes, spelling out the importance of autocrine/paracrine loops (e.g., stromal epithelial interactions) in supporting breast cancer cell proliferation and the progression to hormone independence. The book's many prominent contributors also illuminate significant recent advances in the biochemistry and physiology of hormone receptors and review the state-of -the-art in the endocrine therapy of breast cancer. Endocrinology of Breast Cancer provides a unique integrated overview of the most significant basic and clinical developments concerning the hormonal aspects of breast cancer.
More than a collection of review articles, G Proteins, Receptors, and Disease summarizes in depth the state of our knowledge today concerning not only how cells communicate via G-protein-coupled signal transduction processes, but also how defects in these proteins and their receptors can cause serious human disease involving many different organ systems. Written by leading investigators, each chapter describes in detail the structure and function of a particular G protein or receptor, outlines possible mutations, and discusses fully the molecular pathogenesis of associated diseases. Diagnostic and therapeutic implications are also discussed when relevant. In its unique blend of cutting-edge basic science and clinical medicine, G Proteins, Receptors, and Disease offers deep insights into the physiological significance of this key signal transduction pathway, as well as into the molecular basis of diseases ranging from obesity to malignancy. The basic understanding of the complex signal transduction process achieved here provides a firm foundation for future efforts to prevent and cure these diseases.