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Showing 1 - 6 of 6 matches in All Departments
A timely primer on the new reality of antisense and RNA inhibition for treating a broad range of diseases. The authors show how antisense oligonucleotides are being designed and studied in relation to hypertension, various cancers, inflammatory bowel disease, brain disorders, the blood-brain barrier, and drug delivery. Highlights include RNA-based therapies for many diseases, up-to-date methods and applications, and insight into the enormous potential to provide a new generation of drugs.
This text introduces underlying principles of the endocrine
regulation of behavior in animals and humans. Every chapter begins
by stating a principle, followed by specific examples of hormone
actions derived from scientific experiments and clinical
observations, and concludes with a few challenging unanswered
questions. The reference source Hormones, Brain & Behavior
identified this field as rapidly expanding within neurobiology and
endocrinology. Now, this well-illustrated and referenced text will
serve students from undergraduate school to medical school as they
learn this new discipline.
Scientific advances over the past two decades have afforded unprecedented oppor tunities to understand the structure and function of receptors, receptor-ligand interactions, and receptor signaling. The extent ofprogress in this area is underscored by the recent Nobel Prize for Medicine and Physiology to Alfred Gilman and Martin Rodbell, both of whose work in understanding receptorlG-protein interactions has redefined the way in which we think of how hormones and neurochemicals exert their activity on cellular function. This book is replete with examples of current research approaches to help us better understand the cellular roles in which the renin-angiotensin system and the angiotensin receptors participate. Clearly, defining the structure of angiotensin receptor subtypes is an important first step in cJarifying the mechanisms by which these receptors take part in cellular function. However, the chapters within this book range far beyond structural studies and encompass research on tissue specific expression of the angiotensin receptor subtypes, the genetic regulation ofthese receptors, and the unique function ofvarious angiotensin subtypes in different organ systems, such as the brain, the reproductive system, adipose tissue, the heart, and the kidneys."
A timely primer on the new reality of antisense and RNA inhibition for treating a broad range of diseases. The authors show how antisense oligonucleotides are being designed and studied in relation to hypertension, various cancers, inflammatory bowel disease, brain disorders, the blood-brain barrier, and drug delivery. Highlights include RNA-based therapies for many diseases, up-to-date methods and applications, and insight into the enormous potential to provide a new generation of drugs.
This volume in the prestigious Methods in Enzymology series
discusses methods currently used in preclinical and clinical gene
therapy. Subjects covered in this book, such as the use of
adeno-associated virus delivery for treatment of Parkinson's
disease, are topical and are presented in the methods-oriented
style popularized by this series.
Antisense technology is the ability to manipulate gene expression
within mammalian cells providing powerful experimental approaches
for the study of gene function and gene regulation. For example,
methods that inhibit gene expression permit studies which probe the
normal function of a specific product within a cell. Such
methodology can be used in many disciplines such as pharmacology,
oncology, genetics, cell biology, developmental biology, molecular
biology, biochemistry, and neurosciences. This volume will be a
truly important tool in biomedical-oriented research.
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