Applying Genomic and Proteomic Microarray Technology in Drug Discovery

Author:   Robert S. Matson (QuantiScientifics, LLC, Irvine, California, USA)
Publisher:   Taylor & Francis Ltd
Edition:   2nd edition
ISBN:  

9781032922072


Pages:   324
Publication Date:   14 October 2024
Format:   Paperback
Availability:   In Print   Availability explained
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Applying Genomic and Proteomic Microarray Technology in Drug Discovery


Overview

Microarrays play an increasingly significant role in drug discovery. The commercial landscape has changed dramatically over the past few years and researchers have made great advancements with regard to construction and use. Now in its second edition, Applying Genomic and Proteomic Microarray Technology in Drug Discovery highlights, describes, and evaluates current scientific research using microarray technology in genomic and proteomic applications. Updated and revised to reflect recent progress in the field, the second edition discusses: Expanded omics-driven applications, including the areas of metabolomics and chemical biology The commercialization of the microarray platform, with a historical perspective aimed at recognizing key technological developments Solid-supports (substrates) and surface chemistries currently used in the creation of nucleic acid and protein microarrays Different approaches to producing microarrays that achieve spot equality with the same number of molecules properly oriented The development of the gene expression microarray and representative applications The development of protein microarray technology, including its history and key applications Unique to this edition is a new chapter on multiplex assays that examines the development and applications of arrays across diverse platforms. It discusses applications for qPCR, multiplex lateral flow, and multiplex bead assays. It also presents platform-to-platform comparisons. Microarrays remain an invaluable tool for omics-based research not only in drug discovery, but in the life sciences, in clinical research, and for diagnostic applications worldwide. This volume presents the current state of the art on the utility of this technology to solve a host of important biological problems.

Full Product Details

Author:   Robert S. Matson (QuantiScientifics, LLC, Irvine, California, USA)
Publisher:   Taylor & Francis Ltd
Imprint:   CRC Press
Edition:   2nd edition
Weight:   0.453kg
ISBN:  

9781032922072


ISBN 10:   1032922079
Pages:   324
Publication Date:   14 October 2024
Audience:   Professional and scholarly ,  Professional & Vocational
Format:   Paperback
Publisher's Status:   Active
Availability:   In Print   Availability explained
This item will be ordered in for you from one of our suppliers. Upon receipt, we will promptly dispatch it out to you. For in store availability, please contact us.

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Reviews

"""This publication offers a detailed perspective and insight into the present and future uses of this technology"" Anticancer Research ""A basic reference on the benefits of microarray technology in drug discovery, this publication offers a detailed perspective and insight into the present and future uses of this technology."" Anticancer Research"


Author Information

Robert S. Matson is president and co-founder of QuantiScientifics, LLC. The company is involved in the commercialization of multiplexed assays for life science, clinical research, and in vitro diagnostics. Previously, Matson was involved in the research and development of microarray technologies, detection chemistries, as well as point-of-care devices for more than 17 years while at Beckman Coulter, Inc. He participated in the National Institute of Standards and Technology’s (NIST) Advanced Technology Program sponsored Genosensor Consortium and collaborated with Sir Edwin Southern on the development of an in situ oligonucleotide array synthesis platform for the corporation. Other work included development of the A2 MicroArray System, a microplate-based array platform for multiplexed micro-ELISA, which QuantiScientifics recently licensed for commercialization.

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