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Bontoux N., Dauphinot L Potier M.-C. (Eds.) Unravelling Single Cell Genomics: Micro and Nanotools

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Bontoux N., Dauphinot L Potier M.-C. (Eds.) Unravelling Single Cell Genomics: Micro and Nanotools
Royal Society of Chemistry, UK, 2010. — 333 p. — (RSC Nanoscience & Nanotechnology No.15) — ISBN: 1847559115
This unique introduction to the growing field of microfluidics applied to genomics provides an overview of the latest technologies and emphasizes its potential in answering important biological questions. Written by a physicist and a biologist, it offers a more comprehensive view than the previous literature. The book starts with key ideas in molecular biology, developmental biology and microtechnology before going on to cover the specifics of single cell analysis and microfluidic devices for single cell molecular analysis. Review chapters discuss the state-of-the art and will prove invaluable to all those planning to develop microdevices for molecular analysis of single cells. Methods allowing complete analysis of gene expression in the single cell are stressed - as opposed the more commonly used techniques that allow analysis of only a few genes at a time. As pioneers in the field, the authors understand how critical it is for a physicist to understand the biological issues and questions related to single cell analysis, as well for biologists to understand what microfluidics is all about. Aimed predominantly at graduate students, this book will also be of significant interest to scientists working in or affiliated with this field.
An Introduction to Molecular Biology
The Central Dogma in Molecular Biology
From Unicellular to Multicellular Organisms: Tells from Evolution and from Development
Understanding Cellular Differentiation
Realistic Models of Neurons Require Quantitative Information at the Single-cell Level
Application to Cancerogenesis: Towards Targeted Cancer Therapies?
Capturing a Single Cell
Looking at the DNA of a Single Cell
Gene Analysis of Single Cells
Proteomics
Microfluidics: Basic Concepts and Microchip Fabrication
Cell Capture and Lysis on a Chip
DNA Analysis in Microfluidic Devices and their Application to Single Cell Analysis
Gene Expression Analysis on Microchips
Analysis of Proteins at the Single Cell Level
A Concrete Case: A Microfluidic Device for Single Cell Whole Transcriptome Analysis
Tiny Droplets for High-throughput Cell-based Assays
New Detection Methods for Single Cells
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