Analyzing Biomolecular Interactions by Mass Spectrometry

Nonfiction, Science & Nature, Science, Chemistry, Technical & Industrial
Cover of the book Analyzing Biomolecular Interactions by Mass Spectrometry by , Wiley
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Author: ISBN: 9783527673414
Publisher: Wiley Publication: February 9, 2015
Imprint: Wiley-VCH Language: English
Author:
ISBN: 9783527673414
Publisher: Wiley
Publication: February 9, 2015
Imprint: Wiley-VCH
Language: English

This monograph reviews all relevant technologies based on mass spectrometry that are used to study or screen biological interactions in general.
Arranged in three parts, the text begins by reviewing techniques nowadays almost considered classical, such as affinity chromatography and ultrafiltration, as well as the latest techniques. The second part focusses on all MS-based methods for the study of interactions of proteins with all classes of biomolecules. Besides pull down-based approaches, this section also emphasizes the use of ion mobility MS, capture-compound approaches, chemical proteomics and interactomics. The third and final part discusses other important technologies frequently employed in interaction studies, such as biosensors and microarrays.
For pharmaceutical, analytical, protein, environmental and biochemists, as well as those working in pharmaceutical and analytical laboratories.

View on Amazon View on AbeBooks View on Kobo View on B.Depository View on eBay View on Walmart

This monograph reviews all relevant technologies based on mass spectrometry that are used to study or screen biological interactions in general.
Arranged in three parts, the text begins by reviewing techniques nowadays almost considered classical, such as affinity chromatography and ultrafiltration, as well as the latest techniques. The second part focusses on all MS-based methods for the study of interactions of proteins with all classes of biomolecules. Besides pull down-based approaches, this section also emphasizes the use of ion mobility MS, capture-compound approaches, chemical proteomics and interactomics. The third and final part discusses other important technologies frequently employed in interaction studies, such as biosensors and microarrays.
For pharmaceutical, analytical, protein, environmental and biochemists, as well as those working in pharmaceutical and analytical laboratories.

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