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Alzheimers Disease Research Guide:Animal Models for Understanding Mechanisms and Medications

Saido, Takaomi
Alzheimers Disease Research Guide:Animal Models for Understanding Mechanisms and Medications Cover Image
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Book Information
Edition: 1st
Publisher: Academic Press, Incorporated
ISBN: 0-443-28979-4 (0443289794)
ISBN-13: 978-0-443-28979-8 (9780443289798)
Binding: Softcover
Copyright: 2024
Weight: 0.00 Lbs.
Pages: 300
Subject Class: NEU (Neurology and Neuroscience)
Remarks:
This Title is Not Yet Published, Scheduled to Release 08/09/24
Return Policy: Returns accepted up to 90 days provided no other recalls or return restrictions apply.
 
Class Specifications
Abstract: Alzheimer's disease affects approximately 50 million individuals worldwide, and studies indicate that the number will triple by 2050, according to the World Health Organization (WHO). Therefore, there is an urgent need to develop accurate methods for proper diagnosis, and effective treatments, but it all begins with research. Alzheimers Disease Research Guide provides researchers with a comprehensive guide, detailing every aspect of Alzheimers Disease research including chapters on neuroinflammation, immunotherapy, biomarkers, and animal modelling. This book begins with historical perspective of both pathological chronology and pathological biochemistry in relation to Alzheimer' disease. The next set of chapters review Amyloidogenic AB and Non-Amyloidogenic tau and Metabolism of AB major components to the research and understanding of Alzheimer's research. The book concludes with specific treatment chapters including how to develop safe, effective, and inexpensive medications and the application of genome editing to the treatment of Familial Alzheimers Disease. Written by world renowned expert in Alzheimer's research, this book is a valuable resource for all researchers. Explains how various Alzheimer's disease medications have failed clinical testsReviews why familial Alzheimer's disease is vital to understanding sporadic Alzheimer's diseaseDetails the application of genome editing as a treatment of familial Alzheimer's disease

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