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Nuclear analytical techniques have many advantages over other techniques, such as high sensitivity and precision. They couple powerful selective separation with sensitive element-specific detection. The uses of metalloproteomics studies are restricted to the fields of analytical and nuclear chemistry. They also have great potential to elucidate the origins of certain diseases and assist in their diagnosis and treatment via the development of new drugs. Nuclear Analytical Techniques for Metallomics and Metalloproteomics provides readers with a comprehensive view of this relatively new and exciting area of bioanalytical and inorganic chemistry. It contains contributions from experts in discipl...
Metabolic and endocrine disorders are the main burden of noncommunicable chronic diseases, and they serve as important risk factors for cardiovascular diseases or multiple cancers. To date, a large number of correlates have been identified, but few of them were modifiable and causal. In general, causal relationships can be conceptualized not only in a probabilistic sense involving statistical terms and procedures, but also in the complexity of biological phenomena. The limited understanding of many underlying mechanisms hinders a deterministic conceptualization of disease causation. The identification of modifiable risk factors that have a causal effect on the incidence of these diseases and their complications is critical to the primary or secondary prevention of metabolic and endocrine diseases.
Increasing numbers of parents grapple with children who are acting out without obvious reason. Revved up and irritable, many of these children are diagnosed with ADHD, bipolar illness, autism, or other disorders but don’t respond well to treatment. They are then medicated, often with poor results and unwanted side effects. Based on emerging scientific research and extensive clinical experience, integrative child psychiatrist Dr. Victoria Dunckley has pioneered a four-week program to treat the frequent underlying cause, Electronic Screen Syndrome (ESS). Dr. Dunckley has found that everyday use of interactive screen devices — such as computers, video games, smartphones, and tablets — can...
Glycans are complex, multi-unit carbohydrate structures that cover the surfaces of cells and guide cellular interactions. Glycobiology studies the synthesis, structure, function, regulation, and evolution of glycans and glycan-binding molecules. Glycans are synthesized and added as modifications to proteins, lipids, and RNA. Though they are often associated with functions outside of cells (glycoproteins and glycolipids are most often extracellular or secreted), glycans are also active within cells. Glycans are known to have diverse physiological roles ranging from cell adhesion (maintaining tissue structure and integrity) to molecular recognition (marking position during development, or self-identity in immunity and reproduction). Glycans also regulate cellular activity and physiological state. The families of proteins that bind glycans are called lectins. Glycans and lectins are vital in many diseases such as cancer, neurodegeneration, inflammation, allergies, asthma, and autoimmune disorders.
This book and its sister volumes, i.e., LNCS vols. 3610, 3611, and 3612, are the proceedings of the 1st International Conference on Natural Computation (ICNC 2005), jointly held with the 2nd International Conference on Fuzzy Systems and Knowledge Discovery (FSKD 2005, LNAI vols. 3613 and 3614) from 27 to 29 August 2005 in Changsha, Hunan, China.