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Trace elements are involved in almost every biochemical process in body cells, and inadequacy or unbalance of trace element supply consequently affects a number of physiological functions. Recently developed and improved analytical techniques have strongly contributed to an increased understanding of the role of trace elements for health and disease. This publication gives an excellent overview of the present knowledge concerning their significance in a number of conditions. The specific problems in evaluating trace element intakes and status are highlighted. An adequate nutrient supply is particularly important in periods of growth, especially for infants, children and pregnant women. Improvement of trace element status through food fortification or supplementation is another central theme of this volume. Moreover, the biochemical and epidemiological evidences that they play a role in the prevention of coronary heart disease, cancer and osteoporosis are discussed. To keep track of the exciting developments in the field of trace elements, this publication is important for nutritionists, dietitians, pediatricians, general practitioners, public health professionals and food technologists alike.
Diet and Health examines the many complex issues concerning diet and its role in increasing or decreasing the risk of chronic disease. It proposes dietary recommendations for reducing the risk of the major diseases and causes of death today: atherosclerotic cardiovascular diseases (including heart attack and stroke), cancer, high blood pressure, obesity, osteoporosis, diabetes mellitus, liver disease, and dental caries.
This volume is the newest release in the authoritative series issued by the National Academy of Sciences on dietary reference intakes (DRIs). This series provides recommended intakes, such as Recommended Dietary Allowances (RDAs), for use in planning nutritionally adequate diets for individuals based on age and gender. In addition, a new reference intake, the Tolerable Upper Intake Level (UL), has also been established to assist an individual in knowing how much is "too much" of a nutrient. Based on the Institute of Medicine's review of the scientific literature regarding dietary micronutrients, recommendations have been formulated regarding vitamins A and K, iron, iodine, chromium, copper, manganese, molybdenum, zinc, and other potentially beneficial trace elements such as boron to determine the roles, if any, they play in health. The book also: Reviews selected components of food that may influence the bioavailability of these compounds. Develops estimates of dietary intake of these compounds that are compatible with good nutrition throughout the life span and that may decrease risk of chronic disease where data indicate they play a role. Determines Tolerable Upper Intake levels for each nutrient reviewed where adequate scientific data are available in specific population subgroups. Identifies research needed to improve knowledge of the role of these micronutrients in human health. This book will be important to professionals in nutrition research and education.
Trace Elements in Human Health and Disease is a collection of papers presented at an international symposium on trace elements held in Detroit, Michigan on July 10-12, 1974. The symposium provided a forum for discussing the role of essential and toxic elements in human health and disease. These two volumes bring together a vast amount of information on trace elements zinc and copper, magnesium, selenium, fluoride, cadmium, lead, and mercury. They will be of great value to physicians, nutritionists, and toxicologists. A particularly interesting section relates to the leaching of important trace metals by excess dietary fiber in some developing countries. These books are one of the important monograph series published by the American Nutrition Foundation.
Trace elements are involved in almost every biochemical process in body cells, and inadequacy or unbalance of trace element supply consequently affects a number of physiological functions. Recently developed and improved analytical techniques have strongly contributed to an increased understanding of the role of trace elements for health and disease. This publication gives an excellent overview of the present knowledge concerning their significance in a number of conditions. The specific problems in evaluating trace element intakes and status are highlighted. An adequate nutrient supply is particularly important in periods of growth, especially for infants, children and pregnant women. Improvement of trace element status through food fortification or supplementation is another central theme of this volume. Moreover, the biochemical and epidemiological evidences that they play a role in the prevention of coronary heart disease, cancer and osteoporosis are discussed. To keep track of the exciting developments in the field of trace elements, this publication is important for nutritionists, dietitians, pediatricians, general practitioners, public health professionals and food technologists alike.
Dietary trace minerals are pivotal and hold a key role in numerous metabolic processes. Trace mineral deficiencies (except for iodine, iron, and zinc) do not often develop spontaneously in adults on ordinary diets; infants are more vulnerable because their growth is rapid and their intake varies. Trace mineral imbalances can result from hereditary disorders (e.g., hemochromatosis, Wilson disease), kidney dialysis, parenteral nutrition, restrictive diets prescribed for people with inborn errors of metabolism, or various popular diet plans. The Special Issue “Dietary Trace Minerals” comprised 13 peer-reviewed papers on the most recent evidence regarding the dietary intake of trace minerals, as well as their effect on the prevention and treatment of non-communicable diseases. Original contributions and literature reviews further demonstrated the crucial and central part that dietary trace minerals play in human health and development. This editorial provides a brief and concise overview of the content of the Dietary Trace Minerals Special Issue.
Essentials of Toxicology for Health Protection is a key handbook and course reader for all health protection professionals. It covers the basics of toxicology and its application to issues of topical concern including contaminated land, water pollution and traditional medicines.
This volume provides readers with a systematic assessment of current literature on the link between nutrition and immunity. Chapters cover immunonutrition topics such as child development, cancer, aging, allergic asthma, food intolerance, obesity, and chronic critical illness. It also presents a thorough review of microflora of the gut and the essential role it plays in regulating the balance between immune tolerance and inflammation. Written by experts in the field, Nutrition and Immunity helps readers to further understand the importance of healthy dietary patterns in relation to providing immunity against disorders and offering readily available immunonutritional programming in clinical care. It will be a valuable resource for dietitians, immunologists, endocrinologists and other healthcare professionals.
This book describes the role of trace elements in health and longevity, pursuing a biogerontological approach. It offers essential information on the impact of trace elements on molecular and physiological processes of aging, and on their impact on health in connection with aging. The major topics covered in its 11 chapters, each dedicated to a specific trace element or mineral, are: a) Role of the element in species longevity, b) Recommended intake for longevity in animal species and in the elderly, c) Deficiency and age-related disease, d) Excess/toxicity and age-related disease, and e) Interactions with drugs prescribed in the elderly. Clinical, animal and other laboratory models of interest in aging are included, which enable a more in-depth analysis to be made. The respective chapters are a mixture of overviews and more in-depth reviews in which the mechanisms of aging are described from the point of view of their specific interactions with trace elements and minerals.