|Item||:||Antibiotic Drug Discovery: New Targets and Molecular Entities [Hardcover]|
|Price||:||$256.99 (see below)|
|Publisher||Publisher||:||Royal Society of Chemistry|
Recent years have seen a resurgence of antibiotic drug discovery. This book brings together the relevant information to assess the state-of-the-art. It identifies and elaborates the most recent and compelling strategies for antibiotic drug discovery with a primary focus on new targets, mechanisms and molecular entities. Addressing the need for continued investment in antibiotic drug development, the book provides a point of reference for the rapidly expanding infectious disease research community.
In addition to its attention on new targets, the book focusses on the medicinal chemistry and chemistry of the targets. Within this framework, chapters from leading researchers in academia and industry address findings in important areas such as biofilm production, narrow spectrum antibiotics and novel antibacterials from previously uncultured soil bacteria.
This book will be a useful resource for postgraduate students and researchers in medicinal chemistry wishing to understand the latest approaches to antibiotic drug discovery.
This book identifies and elaborates the most recent and compelling strategies for antibiotic drug discovery with a primary focus on new targets, mechanisms and molecular entities.Recent years have seen an important resurgence in antibiotic drug discovery. Coupled with this new interest has been progress towards the discovery and elucidation of new targets for antibacterial drug discovery. Additionally, vast amounts of research on the current state-of-the-art for infectious disease drug discovery have been published. This book collates the most recent and compelling strategies for antibiotic drug discovery, with a primary focus on new targets, mechanisms and molecular entities.Treatment of Clostridium difficile Infections; Targeting Purine Biosynthesis for Antibacterial Drug Design; Inhibitors of Biofilm Production; Narrow Spectrum Antibacterial Agents; The LPS Transport Pathway: A New Target for the Development of Gram-Negative AntibioticlSw
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