Differential Display Methods and Protocols

Differential Display Methods and Protocols

Author: Peng Liang

Publisher: Springer Science & Business Media

Published: 2008-02-04

Total Pages: 321

ISBN-13: 1592599680

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Since the first edition of this book dedicated to differential display (DD) technology was published in 1997, we have witnessed an explosive interest in studying differential gene expression. The gene-hunting euphoria was initially powered by the invention of DD, which was gradually overtaken by DNA microarray technology in recent years. Then why is there still the need for second edition of this DD book? First of all, DD still enjoys a substantial lead over DNA microarrays in the ISI citation data (see Table 1), despite the h- dreds of millions of dollars spent each year on arrays. This may come as a surprise to many, but to us it implies that many of the DNA microarray studies went unpublished owing to their unfulfilled promises (1). Second, unlike DNA microarrays, DD is an “open”-ended gene discovery method that does not depend on prior genome sequence information of the organism being studied. As such, DD is applicable to the study of all living organisms—from bacteria, fungi, insects, fish, plants, to mammals—even when their genomes are not sequenced. Second, DD is more accessible technically and financially to most cost-conscious “cottage-industry” academic laboratories. So clearly DD still has its unique place in the modern molecular biological toolbox for gene expression analysis.


Oxidative Stress in Vertebrates and Invertebrates

Oxidative Stress in Vertebrates and Invertebrates

Author: Tahira Farooqui

Publisher: John Wiley & Sons

Published: 2011-10-24

Total Pages: 433

ISBN-13: 1118148118

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This volume presents a unique comparative treatment of the role oxidative stress plays in vertebrates and invertebrates in multiple organ systems with regards to cell death, development, aging, and human diseases, and anti-oxidant therapy. It offers comprehensive reviews of the current understanding of oxidative stress-mediated physiology and pathology as well as directions for future research. It also provides current information on the role of oxidative stress in neurodegenerative diseases, cardiovascular diseases, and various types of cancer mediated by oxidative stress.


Index Medicus

Index Medicus

Author:

Publisher:

Published: 2004

Total Pages: 1930

ISBN-13:

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Vols. for 1963- include as pt. 2 of the Jan. issue: Medical subject headings.


Circadian Clocks: Role in Health and Disease

Circadian Clocks: Role in Health and Disease

Author: Michelle L. Gumz

Publisher: Springer

Published: 2016-02-29

Total Pages: 382

ISBN-13: 1493934503

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This book sheds new light on the molecular mechanisms that generate circadian rhythms. It examines how biological rhythms influence physiological processes such as sleep, hormone synthesis and secretion, immunity, kidney function, the cardiovascular system, blood pressure, and the digestive system. Clinical implications are considered while exploring the impact of rhythms on neuropsychiatric disorders and chronotherapy’s potential for reducing cardiovascular risk. Offering a cross-section of expertise in both basic and translational (bench-to-bedside) research, this book serves as a guide for physicians and scientists who wish to learn more about the impact of circadian rhythms on physiological processes in health and disease.


Molecular Biology of Circadian Rhythms

Molecular Biology of Circadian Rhythms

Author: Amita Sehgal

Publisher: John Wiley & Sons

Published: 2004-04

Total Pages: 302

ISBN-13: 9780471418245

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This text begins with a general introduction to biochemical and biophysical aspects of circadian timing, then proceeds to its essential focus on collating the newest information on molecular mechanisms of circadian rhythms. It includes a chapter on the implications for clinical research on affective disorders, sleep disorders, and the relevance for therapeutic treatment, as well as coverage of multiple oscillators and hormonal rhythms. Sections include: Molecular Control of Circadian Rhythms: Animal Models Molecular Control of Circadian Rhythms: From Cyanobacteria to Plants Circadian Organization in Complex Organisms. Chapter topics include examinations of circadian rhythms in non-mammalian vertebrates, neurospora, and humans.