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Enzyme immunoassays have developed into a powerful assay technology, transcending several discipline boundaries, extensively applied as a tool in fields other than enzymology and immunology. This volume reflects the rapid progress in the applications of this technique, providing a basic understanding of these techniques and a practical guideline for the choice and experimental detail.
Immunoenzyme technique. --- Science. --- Chemistry. --- Natural history. --- Immunoenzyme Techniques --- Immunoenzyme Techniques. --- 577.15.083.3 --- Antibody Enzyme Technic, Unlabeled --- Enzyme-Labeled Antibody Technic --- Immunoenzyme Technics --- Immunoperoxidase Technics --- Peroxidase-Antiperoxidase Complex Technic --- Peroxidase-Labeled Antibody Technic --- Antibody Enzyme Technique, Unlabeled --- Enzyme Immunoassay --- Enzyme-Labeled Antibody Technique --- Immunoassay, Enzyme --- Immunoperoxidase Techniques --- Peroxidase-Antiperoxidase Complex Technique --- Peroxidase-Labeled Antibody Technique --- Antibody Technic, Enzyme-Labeled --- Antibody Technic, Peroxidase-Labeled --- Antibody Technics, Enzyme-Labeled --- Antibody Technics, Peroxidase-Labeled --- Antibody Technique, Enzyme-Labeled --- Antibody Technique, Peroxidase-Labeled --- Antibody Techniques, Enzyme-Labeled --- Antibody Techniques, Peroxidase-Labeled --- Enzyme Immunoassays --- Enzyme Labeled Antibody Technic --- Enzyme Labeled Antibody Technique --- Enzyme-Labeled Antibody Technics --- Enzyme-Labeled Antibody Techniques --- Immunoassays, Enzyme --- Immunoenzyme Technic --- Immunoenzyme Technique --- Immunoperoxidase Technic --- Immunoperoxidase Technique --- Peroxidase Antiperoxidase Complex Technic --- Peroxidase Antiperoxidase Complex Technique --- Peroxidase Labeled Antibody Technic --- Peroxidase Labeled Antibody Technique --- Peroxidase-Antiperoxidase Complex Technics --- Peroxidase-Antiperoxidase Complex Techniques --- Peroxidase-Labeled Antibody Technics --- Peroxidase-Labeled Antibody Techniques --- Technic, Enzyme-Labeled Antibody --- Technic, Immunoenzyme --- Technic, Immunoperoxidase --- Technic, Peroxidase-Antiperoxidase Complex --- Technic, Peroxidase-Labeled Antibody --- Technics, Enzyme-Labeled Antibody --- Technics, Immunoenzyme --- Technics, Immunoperoxidase --- Technics, Peroxidase-Antiperoxidase Complex --- Technics, Peroxidase-Labeled Antibody --- Technique, Enzyme-Labeled Antibody --- Technique, Immunoenzyme --- Technique, Immunoperoxidase --- Technique, Peroxidase-Antiperoxidase Complex --- Technique, Peroxidase-Labeled Antibody --- Techniques, Enzyme-Labeled Antibody --- Techniques, Immunoenzyme --- Techniques, Immunoperoxidase --- Techniques, Peroxidase-Antiperoxidase Complex --- Techniques, Peroxidase-Labeled Antibody --- Enzymes. Catalysts of biological reactions. Enzymology--?.083.3 --- 577.15.083.3 Enzymes. Catalysts of biological reactions. Enzymology--?.083.3 --- Cytochemistry. --- Cell chemistry --- Biochemistry --- Cytology --- Antibody enzyme techniques, Unlabeled --- Immunoperoxidase technique --- Peroxidase labeled antibody technique --- Enzymatic analysis --- Immunoassay --- Immunology --- Protein binding --- Technique --- Basic Sciences. Chemistry --- Biochemistry. --- Enzymimmunassay. --- Enzym immunoassay. --- Immunoenzyme Techniques - laboratory manuals --- Enzymes --- Immunochemical analysis
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Enzymology --- Molecular biology --- Human biochemistry --- Oxygenases --- Oxygenases. --- Oxidoreductases --- Oxygenase --- OXYGEN --- SUPEROXIDE DISMUTASE --- CYTOCHROME-C OXIDASE --- PEROXIDASE --- OXYGENASE --- FATTY ACIDS --- CYTOCHROME OXIDASE --- BIOLOGICAL STUDIES
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Monoclonal antibodies have become important treatments for cancer, inflammation and a wide range of other diseases, representing an increasing share of the most successful pharmaceutical markets. The technologies to discover these drugs have been developed by select centers of excellence in industry and academia, and are continually being fine tuned in the race to identify the best antibody-based drug candidates and accelerate their paths to patients. The objective of this volume is to provide a series of guides to those evaluating and preparing to enter particular areas within the field and t
Immunoenzyme technique. --- Antibody-drug conjugates. --- Immunology --- Drug development. --- Pharmaceutical biotechnology. --- Biopharmaceutical technology --- Drugs --- Biotechnology --- Pharmaceutical technology --- Development of drugs --- New drug development --- Pharmacology --- Pharmacy --- Conjugates, Antibody-drug --- Drug-antibody conjugates --- Drug immunoconjugates --- Drug-immunoglobulin conjugates --- Immunoconjugates, Drug --- Immunoglobulin-drug conjugates --- Bioconjugates --- Immunopharmacology --- Antibody enzyme techniques, Unlabeled --- Immunoperoxidase technique --- Peroxidase labeled antibody technique --- Enzymatic analysis --- Immunoassay --- Protein binding --- Technique. --- Development --- Dosage forms --- Technique
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This book discusses biochemical adaptation to environments from freezing polar oceans to boiling hot springs, and under hydrostatic pressures up to 1,000 times that at sea level.Originally published in 1984.The Princeton Legacy Library uses the latest print-on-demand technology to again make available previously out-of-print books from the distinguished backlist of Princeton University Press. These editions preserve the original texts of these important books while presenting them in durable paperback and hardcover editions. The goal of the Princeton Legacy Library is to vastly increase access to the rich scholarly heritage found in the thousands of books published by Princeton University Press since its founding in 1905.
Adaptation (Physiology) --- Biochemistry. --- Biological chemistry --- Chemical composition of organisms --- Organisms --- Physiological chemistry --- Compensation (Physiology) --- Plasticity (Physiology) --- Composition --- Biology --- Chemistry --- Medical sciences --- Ecophysiology --- Biochemistry --- 57.017.32 --- 575.826 --- 575.826 Adaptation --- Adaptation --- Biologische wetenschappen in het algemeen. Biologie--?.017.32 --- 6-bisphosphatase. --- ATPase. --- Acid–base homeostasis. --- Adenosine monophosphate. --- Alanine. --- Alcohol dehydrogenase. --- Amino acid. --- Aminooxyacetic acid. --- Anabolism. --- Anaerobic glycolysis. --- Antifreeze. --- Arginine. --- Basal rate. --- Beta oxidation. --- Bohr effect. --- Carbohydrate. --- Carnitine. --- Catabolism. --- Catalase. --- Catalysis. --- Cellular respiration. --- Cofactor (biochemistry). --- Competitive inhibition. --- Cooperativity. --- Deep sea. --- Dehydrogenase. --- Detergent. --- Dissociation constant. --- Enzyme Repression. --- Enzyme inhibitor. --- Enzyme. --- Facultative anaerobic organism. --- Fatty acid. --- Fermentation. --- Flavin adenine dinucleotide. --- Fructose 1. --- Futile cycle. --- Glucagon. --- Gluconeogenesis. --- Glucose-6-phosphate dehydrogenase. --- Glucose. --- Glyceraldehyde 3-phosphate dehydrogenase. --- Glycerol. --- Glycogen phosphorylase. --- Glycogen. --- Glycogenolysis. --- Glycolysis. --- Hemoglobin. --- Hibernation. --- High-energy phosphate. --- Hill equation (biochemistry). --- Histidine. --- Hofmeister series. --- Hormone-sensitive lipase. --- Insulin. --- Isozyme. --- Ketosis. --- Lactic acid. --- Lipid. --- Lipolysis. --- Lysine. --- Mammalian diving reflex. --- Metabolic intermediate. --- Metabolism. --- Michaelis–Menten kinetics. --- Mitochondrial matrix. --- Mitochondrion. --- Molecular mimicry. --- Muscle. --- Nicotinamide adenine dinucleotide. --- Obligate anaerobe. --- Obligate. --- Organism. --- Ornithine. --- Osmolyte. --- Oxidative deamination. --- Peroxidase. --- Phosphagen. --- Phosphofructokinase. --- Phospholipid. --- Phosphorylase kinase. --- Proline. --- Proofreading (biology). --- Protein turnover. --- Protein. --- Proteolysis. --- Pyruvate carboxylase. --- Pyruvic acid. --- Redox. --- Regulatory enzyme. --- Root effect. --- Substrate-level phosphorylation. --- Thermoregulation. --- Thermus aquaticus. --- Thermus thermophilus. --- Triglyceride. --- Tryptophan. --- Turnover number. --- Urea cycle. --- Urea.
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Cellular Responses to Stress brings together a group of scientists who work on different but interrelated aspects of cellular stress responses. The book provides state-of-the-art information on the wide spectrum of ways in which cells can respond to different forms of stress induced by chemicals, oxidants, and DNA-damaging agents. Mechanisms are described that involve altered uptake and efflux of chemical agents, intracellular detoxification, and DNA damage responses. Many of these changes trigger a cascade of reactions mediated by stress-activated signaling pathways, which have the capacity to determine whether a cell will survive or die. The spectrum of topics covered in this book aims to provide a broad overview of our current knowledge of the different forms of adaptive response systems.It is hoped that this text will stimulate further research to establish the relative cellular role of specific response pathways and will enable us to gain a deeper understanding of the mechanisms that allow cells to live or die. This book will be valued by university researchers at all levels, industrial scientists in the pharmaceutical and biotechnology industries, and clinical researchers.Originally published in 1999.The Princeton Legacy Library uses the latest print-on-demand technology to again make available previously out-of-print books from the distinguished backlist of Princeton University Press. These editions preserve the original texts of these important books while presenting them in durable paperback and hardcover editions. The goal of the Princeton Legacy Library is to vastly increase access to the rich scholarly heritage found in the thousands of books published by Princeton University Press since its founding in 1905.
Stress (Physiology) --- Cell metabolism --- Cellular control mechanisms --- Cells --- Metabolism --- Regulation --- AMPK. --- ASK1. --- Actin. --- Activation. --- Angiogenesis. --- Antibody. --- Antigen. --- Apoptosis. --- Autoimmunity. --- Autophosphorylation. --- C-Fos. --- C-Jun N-terminal kinases. --- C-terminus. --- Cell Cycle Arrest. --- Cell Line, Transformed. --- Cell cycle. --- Cell membrane. --- Cell migration. --- Cell surface receptor. --- Cellular differentiation. --- Cellular stress response. --- Conformational change. --- Cytochrome P450. --- Cytokine receptor. --- Cytokine. --- Cytotoxicity. --- DNA-PKcs. --- Drug metabolism. --- Ectopic expression. --- Effector (biology). --- Endonuclease. --- Enzyme. --- Epidermal growth factor receptor. --- Epidermal growth factor. --- Extracellular signal–regulated kinases. --- Fibroblast growth factor. --- Gene expression. --- Gene therapy. --- Gene. --- Germinal center. --- Glutathione S-transferase. --- HMG-CoA reductase. --- Heat shock. --- Histidine kinase. --- Hormone-sensitive lipase. --- Hsp27. --- Immortalised cell line. --- Immunodeficiency. --- Immunoglobulins. --- Immunoprecipitation. --- In vitro. --- Inducer. --- Inflammation. --- Jurkat cells. --- Kinase. --- Lymphotoxin. --- Macrophage colony-stimulating factor. --- Mechanism of action. --- Mechanistic target of rapamycin. --- Metabolism. --- Mitogen-activated protein kinase kinase. --- Mitogen-activated protein kinase. --- Mitogen. --- Mitosis. --- Model organism. --- Neuropeptide. --- Neurotoxin. --- Osmotic shock. --- Oxidative phosphorylation. --- Oxidative stress. --- P38 mitogen-activated protein kinases. --- Pathogenesis. --- Peptide. --- Peroxidase. --- Phosphatase. --- Phosphoinositide 3-kinase. --- Phosphorylation cascade. --- Phosphorylation. --- Post-translational modification. --- Protease. --- Protein kinase. --- Protein phosphorylation. --- Protein synthesis inhibitor. --- Protein. --- Proteolysis. --- RNA interference. --- Receptor (biochemistry). --- Receptor tyrosine kinase. --- Repressor. --- Response element. --- Signal transduction. --- Ternary Complex Factors. --- Thrombin. --- Transcription factor. --- Transcriptional regulation. --- Transfection. --- Transposable element. --- Tumor necrosis factor superfamily. --- Turgor pressure. --- Vascular endothelial growth factor.
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