Microarray technology provides a highly sensitive and precise te- nique for obtaining information from biological samples, with the added advantage that it can handle a large number of samples simultaneously that may be analyzed rapidly. Researchers are applying microarray technology to understand gene expression, mutation analysis, and the sequencing of genes. Although this technology has been experimental, and thus has been through feasibility studies, it has just recently entered into widespread use for advanced research. The purpose of DNA Arrays: Methods and Protocols is to provide instruction in designing and constructing DNA arrays, as well as hybridizing them with biological samples for analysis. An additional purpose is to p- vide the reader with a broad description of DNA-based array technology and its potential applications. This volume also covers the history of DNA arrays―from their conception to their ready off-the-shelf availability―for readers who are new to array technology as well as those who are well versed in this field. Stepwise, detailed experimental procedures are described for constructing DNA arrays, including the choice of solid support, attachment methods, and the general conditions for hybridization. With microarray technology, ordered arrays of oligonucleotides or other DNA sequences are attached or printed to the solid support using au- mated methods for array synthesis. Probe sequences are selected in such a way that they have the appropriate sequence length, site of mutation, and T .
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Microarray technology, which permits the rapid, simultaneous, and highly sensitive analysis of large numbers of biological samples, is now coming into widespread use for advanced research on gene expression, mutation analysis, proteomics, and gene sequencing. In DNA Arrays: Methods and Protocols, Jang Rampal and a authoritative panel of researchers, engineers, and technologists explain in detail how to design and construct these DNA arrays, as well as how to hybridize them with biological samples for analysis. In step-by-step instructions these experts detail not only how to attach or print arrays on various matrices, but also biological sample preparation (DNA and RNA), hybridization conditions, signal detection, probe optimization, different printing technologies, and data collection and analysis (bioinformatics). Additional topics covered include genotyping, sequencing by hybridization, antisense reagents, HLA-DQA typing techniques, and gene expression analysis. Rounding out the technical presentation are three chapters that review the history of microarrays, the ethical ramifications of genetic analysis using DNA arrays, and the business aspects of biochip technologies. Forward-looking and state-of-the-art, DNA Arrays: Methods and Protocols provides all investigators engaged in biological and biomedical research the full range of effective, readily reproducible microarray techniques needed today to analyze on a large scale the many different genes and gene sequences now available from the Human Genome Project.
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