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This book discusses the aspects of protein and peptide-based microarrays for multiplex detection, based on Rabiee's Theory. It provides a thorough introduction to the field, before examining protein and peptide-based microarrays in greater detail, along with their related problems and solutions. Also covered are the materials and fabrication methods involved with protein microarrays. It offers an outlook on the future of the field within its conclusion and provides an understanding of cutting-edge aspects and horizons of this topic and is an excellent guide for scientists, students and doctors.
Protein microarrays. --- Biophysics. --- SCIENCE / Life Sciences / Biophysics.
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RNA --- Molecular diagnosis. --- Protein microarrays. --- Polymerase chain reaction. --- Reverse transcriptase. --- Aviation medicine --- Purification. --- Technological innovations
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The emergence of genomics, the study of genes, is one of the major scientific revolutions of this century. Microarrays, a method used to analyze numerous DNA samples rapidly, enables scientists to make sense of this mountain of data using statistical analysis. They are being used in such areas of biomedical research as studying patterns for gene activity that cause cancers to spread. This book presents a comprehensive methodology for analyzing DNA microarray and protein array data. The most comprehensive treatment of this important emerging field, Exploration and Analysis of DNA Microarray and Protein Array Data includes: A review of basic molecular biology and a chapter introducing microarrays and their preparation Chapters on processing scanned images, preprocessing microarray data, group comparative experiments, and other designs Discussions of clustering, protein arrays, and applications for diagnostic tools Ample exercises assist absorbtion
Mathematical statistics --- DNA microarrays --- Protein microarrays --- Basic Sciences. Statistics --- Statistical methods. --- Statistical Analysis. --- Puces à ADN --- Puces à protéines --- Statistical methods --- Méthodes statistiques
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Protein arrays make possible the detection and quantitation of many proteins simultaneously, thus enabling researchers to ask fundamental questions about biological processes and to discover biomarkers that can be used diagnostically. In Protein Arrays: Methods and Protocols, innovative experimentalists describe in detail the methods they have developed to synthesize and construct protein arrays for basic and clinical research. The authors present protocols to create and immobilize the capture substrate-the first task in designing a protein array-using a variety of affinity capture reagents, including antibodies, peptides, aptamers, biotin, chemical reagents, and chromatographic substrates. Once synthesized, these arrays can be used to analyze protein-protein interactions and posttranslational modifications, such as phosphorylation, as well as to discover and characterize potential diagnostic markers. Protocols to accomplish these tasks are also presented. The protocols presented follow the successful Methods in Molecular Biology™ series format, each one offering step-by-step laboratory instructions, an introduction outlining the principle behind the technique, lists of equipment and reagents, and tips on troubleshooting and avoiding known pitfalls. Diverse and highly practical, Protein Arrays: Methods and Protocols offers basic and clinical investigators a broad spectrum of approaches to the generation of protein arrays, as well as their uses in biomarkers discovery, in assay development, in clinical sample testing, in signal transduction analysis and characterization, and for creating the next generation of molecular tools.
Biochemistry. --- Biochemistry, general. --- Biological chemistry --- Chemical composition of organisms --- Organisms --- Physiological chemistry --- Biology --- Chemistry --- Medical sciences --- Composition --- Protein microarrays. --- Proteins --- Analysis.
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Microarray technology has made strong progress over the past decade, and there have also been significant changes in application areas, from nucleic acids to proteomics and from research to clinical applications. This book provides a comprehensive overview of microarrays in diagnostics and biomarker development, covering DNA, peptide, protein and tissue arrays. The focus is on entities that are in actual clinical use, or quite close, and on recent developments, such as peptide and aptamer arrays. A further topic is the miniaturisation towards “nanoarrays”, which is expected to have great potential in clinical applications. Relevant issues of bioinformatics and statistical analysis of array data are discussed in detail, as well as the barriers to the commercialisation of array-based tests and the vexing IP issues involved. Thus, the book should be very useful tor active array users as well as to newcomers seeking to make the best choice between different technologies.
Cytology. --- DNA microarrays. --- Medicine. --- Protein microarrays. --- DNA microarrays --- Protein microarrays --- Sequence Analysis --- Molecular Probe Techniques --- Investigative Techniques --- Microarray Analysis --- Nucleic Acid Hybridization --- Genetic Techniques --- Microchip Analytical Procedures --- Analytical, Diagnostic and Therapeutic Techniques and Equipment --- Chemistry Techniques, Analytical --- Protein Array Analysis --- Oligonucleotide Array Sequence Analysis --- Clinical Laboratory Techniques --- Human Anatomy & Physiology --- Health & Biological Sciences --- Animal Biochemistry --- Biomedical Engineering --- Biochemical markers. --- Biologic markers --- Biological markers --- Biomarkers --- Markers, Biochemical --- DNA biochips --- Microarrays, DNA --- Microarrays. --- Cell biology. --- Biomedicine. --- Cell Biology. --- Biochemistry --- Indicators (Biology) --- Biochips --- Immobilized nucleic acids --- Cell biology --- Cellular biology --- Biology --- Cells --- Cytologists
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This book is a review on the evolution of cell-based microarrays and an update to the author's earlier book Methods in Molecular Biology: Cell-Based Microarrays. Since their development in 2001, cell-based microarrays have advanced significantly to include expression arrays, short interfering RNA arrays and antibody arrays. The surface used to coat the glass slides has also been significantly improved to allow non-adherent cells to bind to the arrays.
Protein microarrays --- Life sciences --- Statistical methods. --- Biology. --- Biosciences --- Sciences, Life --- Science --- Microarrays, Protein --- Peptide biochips --- Peptide microarrays --- Protein biochips --- Biochips --- Immobilized proteins --- Cytology. --- DNA microarrays. --- Human genetics. --- Cell Biology. --- Microarrays. --- Human Genetics. --- Cell biology --- Cellular biology --- Biology --- Cells --- Cytologists --- Genetics --- Heredity, Human --- Human biology --- Physical anthropology --- DNA biochips --- Microarrays, DNA --- Immobilized nucleic acids --- Cell biology.
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New Antibody Microarray Tube for Cellular Localization and Signaling Pathways describes a new integrated protein biochip system including protein localization, biocomputing and signaling pathways. In the post-genome era, proteomics study for direct analysis of a group of proteins becomes more and more important. Identification of its location often provides crucial information for understanding the function or regulation of a given protein in biological pathways. The book discusses a new microarray tube with incorporation of nuclear and cytoplasmic protein purification and biocomputing technologies, intended for setting-up signaling pathways and making new discoveries. The book is intended for researchers in the fields of medicine, biology, electronics, pharmacy, computer science and mathematics. Lin Wang is an associate professor at the Biomedical Engineering Center, Beijing University of Posts and Telecommunications, China. .
Bioinformatics. --- Protein microarrays. --- Proteomics. --- Microarrays, Protein --- Peptide biochips --- Peptide microarrays --- Protein biochips --- Engineering. --- Biomedical engineering. --- Biomedical Engineering. --- Molecular biology --- Proteins --- Bio-informatics --- Biological informatics --- Biology --- Information science --- Computational biology --- Systems biology --- Data processing --- Biochips --- Immobilized proteins --- Biomedical Engineering and Bioengineering. --- Clinical engineering --- Medical engineering --- Bioengineering --- Biophysics --- Engineering --- Medicine
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The genomics revolution would not have been possible without the 'parallelisation' offered by microarray technology. This technological - and commercial - success has been since emulated by other applications areas, with a tremendous amplification of innovation. This book describes the fundamentals and latest developments in microarray technology, as well as its future directions. It presents detailed overviews of the different techniques of fabricating microarrays, of the chemistries and preparative steps involved, of the different types of microarrays, and of the instrumentation and optical issues involved.
DNA microarrays. --- Protein microarrays. --- Microarrays, Protein --- Peptide biochips --- Peptide microarrays --- Protein biochips --- Biochips --- Immobilized proteins --- DNA biochips --- Microarrays, DNA --- Immobilized nucleic acids --- Medicine. --- Biomedical engineering. --- Nanotechnology. --- Chemistry, Physical organic. --- Biomedicine general. --- Biological and Medical Physics, Biophysics. --- Biomedical Engineering and Bioengineering. --- Physical Chemistry. --- Medicine/Public Health, general. --- Chemistry, Physical organic --- Chemistry, Organic --- Chemistry, Physical and theoretical --- Clinical engineering --- Medical engineering --- Bioengineering --- Biophysics --- Engineering --- Medicine --- Clinical sciences --- Medical profession --- Human biology --- Life sciences --- Medical sciences --- Pathology --- Physicians --- Molecular technology --- Nanoscale technology --- High technology --- Health Workforce --- Biophysics. --- Biological physics. --- Physical chemistry. --- Biomedicine, general. --- Chemistry, Theoretical --- Physical chemistry --- Theoretical chemistry --- Chemistry --- Biological physics --- Biology --- Physics
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