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Modern Molecular Biology:

eBook - Approaches for Unbiased Discovery in Cancer Research, Applied Bioinformatics and Biostatistics in Cancer Research

Erschienen am 02.09.2010, 1. Auflage 2010
173,95 €
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Bibliografische Daten
ISBN/EAN: 9780387697451
Sprache: Englisch
Umfang: 192 S., 4.45 MB
E-Book
Format: PDF
DRM: Digitales Wasserzeichen

Beschreibung

Molecular biology has rapidly advanced since the discovery of the basic flow of information in life, from DNA to RNA to proteins. While there are several important and interesting exceptions to this general flow of information, the importance of these biological macromolecules in dictating the phenotypic nature of living creatures in health and disease is paramount. In the last one and a half decades, and particularly after the completion of the Human Genome Project, there has been an explosion of technologies that allow the broad characterization of these macromolecules in physiology, and the perturbations to these macromolecules that occur in diseases such as cancer. In this volume, we will explore the modern approaches used to characterize these macromolecules in an unbiased, systematic way. Such technologies are rapidly advancing our knowledge of the coordinated and complicated changes that occur during carcinogenesis, and are providing vital information that, when correctly interpreted by biostatistical/bioinformatics analyses, can be exploited for the prevention, diagnosis, and treatment of human cancers.

The purpose of this volume is to provide an overview of modern molecular biological approaches to unbiased discovery in cancer research. Advances in molecular biology allowing unbiased analysis of changes in cancer initiation and progression will be overviewed. These include the strategies employed in modern genomics, gene expression analysis, and proteomics.

Inhalt

Genome-Scale Analysis of Data from High-Throughput Technologies.- Analysis of Inherited and Acquired Genetic Variation.- Examining DNAProtein Interactions with Genome-Wide Chromatin Immunoprecipitation Analysis.- Genome-Wide DNA Methylation Analysis in Cancer Research.- Use of Expression Microarrays in Cancer Research.- Signal Sequencing for Gene Expression Profiling.- Mass Spectrometry Based Proteomics in Cancer Research.- Tissue Microarrays in Cancer Research.

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