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An important new technology, biosensors are made from biomolecules or cells which are immobilized but retain their functionality. This book is an up-to-date collection of reliable methods for immobilizing biomolecules. It includes techniques for measuring the functionality of biomolecules.
Analytical biochemistry --- Biosensors --- Immobilized ligands (Biochemistry) --- Ligand binding (Biochemistry) --- BIOCOMPATIBLE MATERIALS --- SILANES --- AVIDIN --- BIOTIN --- POLYMERS --- BIOSENSORS --- IMMOBILIZED LIGANDS (BIOCHEMISTRY) --- LIGAND BINDING (BIOCHEMISTRY) --- LABORATORY MANUALS
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Metal ions --- Ligand binding (Biochemistry) --- Bioinorganic chemistry --- Clinical chemistry --- Metabolism --- Metal ions - Metabolism
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"Introduction to Macromolecular Binding Equilibria gives students in medicinal chemistry, pharmaceuticals, and bioengineering the necessary background in biophysical chemistry for research applications in drug discovery and development. Building upon a fundamental knowledge of calculus and physical chemistry, this compact, graduate-level text prepares students for advanced work in solution thermodynamics and binding phenomena and applying methods in this book to their own research." "This book describes the underlying theory of binding phenomena and explains how to apply the binding polynomial approach for building models and interpreting data. It also covers practical considerations for setting up binding experiments and describes how to obtain true thermodynamic isotherms unbiased by model assumption via model-free analysis of binding data."--BOOK JACKET.
Binding sites (Biochemistry) --- Ligand binding (Biochemistry) --- Macromolecules --- Binding Sites --- Ligands --- Macromolecular Substances --- Models, Molecular
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This book provides the first systematic treatment of the thermodynamic theory of site-specific effects in biological macromolecules. It describes the phenomenological and conceptual bases required to allow a mechanistic understanding of these effects from analysis of experimental data. The thermodynamic theory also results in novel experimental strategies that enable the derivation of information on local, site-specific properties of a macromolecular system from analysis of perturbed global properties. The treatment focuses on binding phenomena, but is amenable to extension both conceptually and formally to the analysis of other cooperative processes, such as folding and helix-coil transitions. This book will interest any scientist involved in structure-function studies of biological macromolecules, or as a text for graduate students in biochemistry and biophysics.
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Protein binding --- Calorimetry --- Hydrodynamics --- Ligand binding (Biochemistry) --- Protéines --- Calorimétrie --- Hydrodynamique --- Ligands (Biochimie) --- Laboratory manuals. --- Fixation --- Manuels de laboratoire --- Proteins --- Ligands (Biochemistry) --- Protein Binding --- Ligands --- Protéines --- Calorimétrie --- Hydrodynamics. --- Acqui 2006 --- Ligand binding (biochemistry)
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Written by experienced experts in the field, this book describes the basics to the extent necessary for reliably judging the results from molecular modeling calculations. Without unnecessary overhead, it leads readers from simple calculations on small molecules to the modeling of proteins and other relevant biomolecules. Beginners are guided through their first modeling experiment, while routine users of modeling software are provided with invaluable troubleshooting hints. A unique resource for students, researchers and lecturers, now available in this all-new, enlarged edition. "If the currently popular 'Dummies' series of computer books were to publish a volume on molecular modeling this would be it" (Journal of the American Chemical Society) "The book is well written and assumes no prior knowledge of molecular biology, statistical mechanics, or quantum chemistry. The authors provide practical hints for the application of the majority of available programs in computational chemistry" (Computers in Physics)
Biomolecules --- Proteins --- Molecules --- Drugs --- Ligand binding (Biochemistry) --- Structure --- Computer simulation --- Models --- Design --- fysicochemie --- Stereochemistry --- Computer simulation. --- Biomolecules - Structure - Computer simulation --- Proteins - Structure - Computer simulation --- Molecules - Models - Computer simulation --- Drugs - Design - Computer simulation --- Ligand binding (Biochemistry) - Computer simulation
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Biosensors are becoming increasingly important bioanalytical tools in the pharmaceutical, biotechnology, food, and other consumer oriented industries. The technology, though well developed in Europe, is slowly developing and has begun to generate interest in the United States only over the past couple of years. Research is now being directed toward the development of biosensors that are versatile, economical, and simple to use. Engineering Biosensors is a comprehensive introduction to biosensors that includes numerous illustrations to further explain the main concepts and practical exa
Biosensors. --- Ligand binding (Biochemistry). --- Basic Sciences. Biotechnology --- Biotechnology (General). --- Engineering --- Electronics --- Ligand binding (Biochemistry) --- Binding, Ligand (Biochemistry) --- Biochemistry --- Dye-ligand affinity chromatography --- Radioligand assay --- Biodetectors --- Biological detectors --- Biological sensors --- Biomedical detectors --- Biomedical sensors --- Detectors --- Medical instruments and apparatus --- Physiological apparatus
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Proteins. --- Spectrum analysis. --- Ligands (Biochemistry) --- Ligand binding (Biochemistry) --- Protéines --- Analyse spectrale --- Ligands (Biochimie) --- Fixation --- Proteins --- Spectrum analysis --- Protéines
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Ligand binding (Biochemistry) --- Biochemie: chemische bindingen --- Binding, Ligand (Biochemistry) --- Biochemistry --- Dye-ligand affinity chromatography --- Radioligand assay --- Ligands (biochimie) --- Fixation --- Fixation.
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The book Ligand describes the diversity and versatility of ligands, covering structural features, donor-acceptor properties and secondary functions like molecular recognition. Moreover, this book also provides a comprehensive account on the applicability like catalysis, sensors, supramolecular assembly, photochemical property, bioinorganic chemistry, and so on. The advancement of fundamentals in ligand design and the control of physicochemical properties of coordination compounds has largely increased emphasis on understanding the structural and electronic features toward different perspectives in materials science. In this regard, this book has a special appeal to chemists, biologists and others. This book will be beneficial for the graduate students, teachers, researchers and other professionals who are interested to fortify and expand their knowledge in chemistry, biology, microbiology, biotechnology, materials science, environmental science and so on.
Ligand binding (Biochemistry) --- Binding, Ligand (Biochemistry) --- Biochemistry --- Dye-ligand affinity chromatography --- Radioligand assay --- Physical Sciences --- Engineering and Technology --- Chemistry --- Bioinorganic Chemistry --- Inorganic Chemistry
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