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The Nutrition and Health series of books has as an overriding mission to provide health professionals with texts that are considered essential because each includes: a synthesis of the state of the science; timely, in-depth reviews by the leading researchers in their respective fields; extensive, up-to-date fully annotated reference lists; a detailed index; relevant tables and figures; identification of paradigm shifts and the consequences; of information between chapters, but targeted, inter-chapter refer virtually no overlap rals, suggestions of areas for future research; and balanced, data-driven answers to patient questions that are based on the totality of evidence rather than the findings of any single study. The series volumes are not the outcome of a symposium. Rather, each editor has the potential to examine a chosen area with a broad perspective, both in subject matter as well as in the choice of chapter authors. The international perspective, especially with regard to public health initiatives, is emphasized where appropriate. The editors, whose training is both research and practice oriented, have the opportunity to develop a primary objective for their book, define the scope and focus, and then invite the leading authori ties from around the world to be part of their initiative. The authors are encouraged to provide an overview of the field, discuss their own research, and relate the research de findings to potential human health consequences.
First Published in 1981, this book offers a full, comprehensive guide into the relationship between our Intestines and the way in which we absorb Calcium. Carefully compiled with a vast repertoire of notes, and references this book serves as a useful reference for Students of Medicine, and other practitioners in their respective fields.
Many advances in vitamin D physiology and biochemistry have been made in recent years. Vitamin D metabolites and analogs have found increasing application in clinical medicine. The purpose of this text is to review what is known about vitamin D physiology and draw attention to areas of vitamin D research that have changed within the last 2-3 years. Additionally, information concerning clinical aspects of vitamin D is also presented. More than 40 scientists have generously contributed chapters to this text; I thank them for their efforts. As might be expected, not everyone has the same point of view. Finally, I would like to acknowledge the secretarial and editorial efforts of Mrs. Cheryl Collins without whom this book would not have been completed. CONTRIBUTORS ETSUKO ABE, Department of Biochemistry, School of Dentistry, Showa University, 1-5-8, Hatanodai, Shinagawa-KU, Tokyo 142, Japan DAVID J. BAYLINK, Department of Medicine, Loma Linda University, Loma Linda, CA, and Pettis Veterans Hospital, 11201 Benton Street, Loma Linda, CA, 92357, USA NORMAN H. BELL, Department of Medicine, Medical University of South Carolina and Veterans Administration Medical Center, 109 Bee Street, Charleston, SC, 29403, USA WARNER M. BURCH, Jr. , Departments of Medicine and Physiology, Duke Univer sity Medical Center, Durham, NC, 27710, USA DAVID V. COHN, ICCRH, Inc. , 1238 Wyncrest Court, Arden Hills, MN, 55112, USA ROBERT A. CORRADINO, Department of Physiology, New York State College of Veterinary Medicine, Cornell University, 720 VRT, Ithaca, NY, 14853, USA HECTOR F.
The ability to measure accurately the hormones regulating calcium homeosta sis is the fundamental first step toward understanding the roles these hormones play in health and disease. Techniques for such measurements have only been available for the past 10 years or so and remain in a state of rapid development. Sensitive parathyroid hormone (PTH) radioimmunoassays appeared in the early 1970s, and with them came a whole new appreciation for the prevalence and implications of hyperparathyroidism, primary or secondary, in the popu lation. The calcitonin (CT) radioimmunoassay came later and achieved rapid success in the. diagnosis of a previously poorly understood cancer, medullary carcinoma of the thyroid, frequently associated with the familial multiple endo crine neoplasia type 2 syndromes (a and b). As the sensitivity of the calcitonin radioimmunoassay has improved, our understanding of the role of calcitonin in normal physiological processes has increased. The knowledge that vitamin D must be metabolized to produce its biologic effects is only 15 years old. This has had profound implications in our understanding of a variety of metabolic bone, kidney, and gastrointestinal diseases. Assays to measure the major cir culating form of vitamin D, 25-hydroxyvitamin D, were described 10 years ago. Assays for the other metabolites, in particular, 1,25-dihydroxyvitamin D, were described even more recently. As of today, we know of many vitamin D metabolites and have developed the techniques to measure most of them; how ever, many questions remain concerning their physiological role.
This book, the third volume in the series, continues to explore the application of chemistry to our understanding of the functioning of the human in health and disease. It is the objective of the authors to continue to present, in this and subsequent volumes, the biochemical aspects of clinical chemistry, and to indicate how this knowledge applies to the diagnosis of disease and the treatment of the patient. For this purpose, the literature is reviewed carefully and the findings of the different study groups are integrated, to present an overall view of the present status of the various fields. The text is written with the intent to serve in the training of clinical chemists, clinical pathologists, and medical students in clinical biochemistry. It is also intended to serve as a reference text for the practicing physician who desires a more rational approach to the use of the clinical chemistry laboratory, as an aid in understanding (1) the chemical changes in disease and (2) the logical use of the laboratory data in the treatment of the patient. This volume is concerned with the plasma proteins and their significance in normal human metabolism. The immunoglobulins are not included in this study since, along with complement and clotting factors, they form an integrated system concerned with defense against invading organisms. These will be discussed in Volume 4 of this series. A historical introduction (Chapter I) is followed by a general presentation of the composition and properties of proteins (Chapter 2).
Vitamin D, a steroid hormone, has mainly been known for its effects on bone and osteoporosis. The current therapeutic practices expand into such markets as cancer research, pediatrics, nephrology, dermatology, immunology, and genetics. This 3e includes over 100 chapters covering everything from chemistry and metabolism to mechanisms of action, diagnosis and management, new analogs, and emerging therapies. This complete reference works is a must-have resource for anyone working in endocrinology, osteology, bone biology, or cancer research.
Regulation of Calcium and Phosphate