This detailed book provides a set of protocols necessary for the development of a variety of microchip-based electrophoretic assays. It compiles a range of such electrophoretic methods by leading researchers in the field, covering subjects such as microfluidic device fabrication, on-chip sample preparation, theoretical/simulation protocols for assessing these separation methods, as well as common practices followed when applying them to important real world applications. The contents of the book range from protocols for classical assays to those involving pioneering separation techniques recently developed by the scientific community for advancing our analytical capabilities. Written for the highly successful Methods in Molecular Biology series, chapters include introductions to their respective topics, lists of the necessary materials and reagents, step-by-step, readily reproducible laboratory protocols, and tips on troubleshooting and avoiding known pitfalls. Authoritative and accessible, Microfluidic Electrophoresis: Methods and Protocols serves as an convenient text for academic researchers as well as practicing engineers, biochemists, and analytical laboratory professionals.
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This detailed book provides a set of protocols necessary for the development of a variety of microchip-based electrophoretic assays.
Fabrication of Glass Microfluidic Devices.- Soft Lithography, Molding, and Micromachining Techniques for Polymer Micro Devices.- Sample Injection Techniques.- Sample Preconcentration Protocols in Microfluidic Electrophoresis.- Microchip Electrophoresis Containing Electrodes for Integrated Electrochemical Detection.- Micellar Electrokinetic Chromatography.- Microchip Isotachophoresis: Analysis of Pharmaceuticals.- Microfluidic Free-Flow Isoelectric Focusing with Real-Time pI Determination.- Nanochannel Gradient Separations.- Paper-Based Electrophoresis Microchip as a Powerful Tool for Bioanalytical Applications.- Band Broadening Theories in Capillary Electrophoresis.- Estimating Stream Broadening in Free-Flow Electrophoretic Systems Based on the Method-of-Moments Formulation.- Microchip Electrophoresis Tools for the Analysis of Small Molecules.- Integrated Microfluidic System for Rapid DNA Fingerprint Analysis: A Miniaturized Integrated DNA Analysis System (MiDAS): Swab Sample-In to DNAProfile-Out.- Achieving Stable Electrospray Ionization Mass Spectrometry (ESI-MS) Detection from Microfluidic Chips.- Microchip-Based Electrophoretic Separations with a Pressure-Driven Backflow.
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This detailed book provides a set of protocols necessary for the development of a variety of microchip-based electrophoretic assays. It compiles a range of such electrophoretic methods by leading researchers in the field, covering subjects such as microfluidic device fabrication, on-chip sample preparation, theoretical/simulation protocols for assessing these separation methods, as well as common practices followed when applying them to important real world applications. The contents of the book range from protocols for classical assays to those involving pioneering separation techniques recently developed by the scientific community for advancing our analytical capabilities. Written for the highly successful Methods in Molecular Biology series, chapters include introductions to their respective topics, lists of the necessary materials and reagents, step-by-step, readily reproducible laboratory protocols, and tips on troubleshooting and avoiding known pitfalls. Authoritative and accessible, Microfluidic Electrophoresis: Methods and Protocols serves as an convenient text for academic researchers as well as practicing engineers, biochemists, and analytical laboratory professionals.
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Includes cutting-edge techniques Provides step-by-step detail essential for reproducible results Contains key implementation advice from the experts
Produktdetaljer
ISBN
9781493989638
Publisert
2018-11-29
Utgiver
Vendor
Humana Press Inc.
Høyde
254 mm
Bredde
178 mm
Aldersnivå
Professional/practitioner, P, 06
Språk
Product language
Engelsk
Format
Product format
Innbundet
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