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Design of Caspase Inhibitors as Potential Clinical Agents - Tom O'Brien (Editor), Steven D. Linton (Editor)
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Design of Caspase Inhibitors as Potential Clinical Agents - new book

ISBN: 9781420045406

Presents the Therapeutic Potential for Caspase Inhibitors: Present and FutureCaspases represent one of the most specific protease families described to date. These extremely important enzymes are crucial to the destruction of aberrant cells – the body’s self-protection mechanism for warding off the growth of abnormal cells, many of which can promote cancer. Design of Caspase Inhibitors as Potential Clinical Agents introduces cutting-edge evidence regarding caspases’ role in pro-inflammatory responses. New research now shows that the inhibition of caspase function is a critical component for the treatment of many diseases, including:Arthritic and neurological disordersLung diseaseHereditary fever syndromesInflammatory bowel and skin diseasesSepsisLiver fibrosisOutlines Efforts to Develop Molecule Inhibitors for Caspase Activity TransformationUnder the editorial guidance of authoritative inflammatory disease, small molecule discovery, and apoptosis researchers, the book organizes the wide array of caspase literature into one convenient resource. It also summarizes the relative difficulty of transitioning a caspase small molecule inhibitor from the lab to the clinic and suggests approaches to circumvent this difficulty. Taking a novel, yet core approach to disease treatment, this seminal work sets the stage to combat a slew of debilitating diseases through groundbreaking drug development. Textbooks New Books ~~ Medicine~~ Biochemistry Design-of-Caspase-Inhibitors-as-Potential-Clinical-Agents~~Tom-OBrien CRC Press Caspases (cysteine aspartyl proteases) represent one of the most specific protease families described to date. As caspase family members are involved in pro-inflammatory responses, inhibition of caspase activity represents a novel yet core approach to disease treatment. Design of Caspase Inhibitors as Potential Clinical Agents discusses the role of caspases in inducing cell death. It reviews recent efforts to develop small molecule inhibitors that are capable of modulating caspase activity. The text also examines the difficulties encountered in transitioning small molecule inhibitors from the lab to clinical use, and discusses how these challenges can best be overcome to allow continued progress.

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Design of Caspase Inhibitors as Potential Clinical Agents - O'Brien, Tom; Linton, Steven D.
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O'Brien, Tom; Linton, Steven D.:
Design of Caspase Inhibitors as Potential Clinical Agents - new book

ISBN: 9781420045406

This title presents the therapeutic potential for caspase inhibitors. Present and Future Caspases represent one of the most specific protease families described to date. These extremely important enzymes are crucial to the destruction of aberrant cells - the body's self-protection mechanism for warding off the growth of abnormal cells, many of which can promote cancer."Design of Caspase Inhibitors as Potential Clinical Agents" introduces cutting-edge evidence regarding caspases' role in pro-inflammatory responses. New research now shows that the inhibition of caspase function is a critical component for the treatment of many diseases, including: Arthritic and neurological disorders; Lung disease; Hereditary fever syndromes; Inflammatory bowel and skin diseases; and, Sepsis Liver fibrosis.This book outlines efforts to develop molecule inhibitors for caspase activity transformation. Under the editorial guidance of authoritative inflammatory disease, small molecule discovery, and apoptosis researchers, the book organizes the wide array of caspase literature into one convenient resource. It also summarizes the relative difficulty of transitioning a caspase small molecule inhibitor from the lab to the clinic and suggests approaches to circumvent this difficulty. Taking a novel, yet core approach to disease treatment, this seminal work sets the stage to combat a slew of debilitating diseases through groundbreaking drug development. Technology Technology eBook Caspases (cysteine aspartyl proteases) represent one of the most specific protease families described to date. As caspase family members are involved in pro-inflammatory responses, inhibition of caspase activity represents a novel yet core approach to disease treatment. Design of Caspase Inhibitors as Potential Clinical Agents discusses the role of caspases in inducing cell death. It reviews recent efforts to develop small molecule inhibitors that are capable of modulating caspase activity. The text also examines the difficulties encountered in transitioning small molecule inhibitors from the lab to clinical use, and discusses how these challenges can best be overcome to allow continued progress.

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Design of Caspase Inhibitors as Potential Clinical Agents - Tom O'Brien
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Tom O'Brien:
Design of Caspase Inhibitors as Potential Clinical Agents - new book

2008, ISBN: 9781420045406

ID: 9781420045406

Design of Caspase Inhibitors as Potential Clinical Agents: Hardback: CRC Press Inc: 9781420045406: 24 Sep 2008: Presents evidence regarding caspases' role in pro-inflammatory responses. This book outlines efforts to develop molecule inhibitors for caspase activity transformation. It also summarizes the relative difficulty of transitioning a caspase small molecule inhibitor from the lab to the clinic and suggests approaches to circumvent this difficulty. Presents the Therapeutic Potential for Caspase Inhibitors: Present and Future Caspases represent one of the most specific protease families described to date. These extremely important enzymes are crucial to the destruction of aberrant cells? the body's self-protection mechanism for warding off the growth of abnormal cells, many of which can promote cancer. Design of Caspase Inhibitors as Potential Clinical Agents introduces cutting-edge evidence regarding caspases' role in pro-inflammatory responses. New research now shows that the inhibition of caspase function is a critical component for the treatment of many diseases, including: Arthritic and neurological disorders Lung disease Hereditary fever syndromes Inflammatory bowel and skin diseases Sepsis Liver fibrosis Outlines Efforts to Develop Molecule Inhibitors for Caspase Activity Transformation Under the editorial guidance of authoritative inflammatory disease, small molecule discovery, and apoptosis researchers, the book organizes the wide array of caspase literature into one convenient resource. It also summarizes the relative difficulty of transitioning a caspase small molecule inhibitor from the lab to the clinic and suggests approaches to circumvent this difficulty. Taking a novel, yet core approach to disease treatment, this seminal work sets the stage to combat a slew of debilitating diseases through groundbreaking drug development. Biochemistry, , , , Design of Caspase Inhibitors as Potential Clinical Agents, Tom O'Brien, 9781420045406, Taylor & Francis Inc, , , , ,, [PU: CRC Press]

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Design of Caspase Inhibitors as Potential Clinical Agents - O'Brien, Tom; Linton, Steven D.
book is out-of-stock
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O'Brien, Tom; Linton, Steven D.:
Design of Caspase Inhibitors as Potential Clinical Agents - new book

ISBN: 9781420045406

ID: 365192

This title presents the therapeutic potential for caspase inhibitors. Present and Future Caspases represent one of the most specific protease families described to date. These extremely important enzymes are crucial to the destruction of aberrant cells - the body's self-protection mechanism for warding off the growth of abnormal cells, many of which can promote cancer."Design of Caspase Inhibitors as Potential Clinical Agents" introduces cutting-edge evidence regarding caspases' role in pro-inflammatory responses. New research now shows that the inhibition of caspase function is a critical component for the treatment of many diseases, including: Arthritic and neurological disorders; Lung disease; Hereditary fever syndromes; Inflammatory bowel and skin diseases; and, Sepsis Liver fibrosis.This book outlines efforts to develop molecule inhibitors for caspase activity transformation. Under the editorial guidance of authoritative inflammatory disease, small molecule discovery, and apoptosis researchers, the book organizes the wide array of caspase literature into one convenient resource. It also summarizes the relative difficulty of transitioning a caspase small molecule inhibitor from the lab to the clinic and suggests approaches to circumvent this difficulty. Taking a novel, yet core approach to disease treatment, this seminal work sets the stage to combat a slew of debilitating diseases through groundbreaking drug development. Technology Technology eBook, CRC Press

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Design of Caspase Inhibitors as Potential Clinical Agents - Tom O'Brien; Steven D. Linton
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Tom O'Brien; Steven D. Linton:
Design of Caspase Inhibitors as Potential Clinical Agents - hardcover

2008, ISBN: 9781420045406

ID: 9166659

Hardcover, Buch, [PU: Crc Press Inc]

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Design of Caspase Inhibitors as Potential Clinical Agents

Caspases (cysteine aspartyl proteases) represent one of the most specific protease families described to date. As caspase family members are involved in pro-inflammatory responses, inhibition of caspase activity represents a novel yet core approach to disease treatment. Design of Caspase Inhibitors as Potential Clinical Agents discusses the role of caspases in inducing cell death. It reviews recent efforts to develop small molecule inhibitors that are capable of modulating caspase activity. The text also examines the difficulties encountered in transitioning small molecule inhibitors from the lab to clinical use, and discusses how these challenges can best be overcome to allow continued progress.

Details of the book - Design of Caspase Inhibitors as Potential Clinical Agents


EAN (ISBN-13): 9781420045406
ISBN (ISBN-10): 1420045407
Hardcover
Publishing year: 2008
Publisher: CRC PR INC
299 Pages
Weight: 0,590 kg
Language: eng/Englisch

Book in our database since 11.11.2007 22:29:14
Book found last time on 27.06.2017 10:44:06
ISBN/EAN: 9781420045406

ISBN - alternate spelling:
1-4200-4540-7, 978-1-4200-4540-6


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