Basic biology and current understanding of skeletal muscle /

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Bibliographic Details
Imprint:[Hauppauge] New York : Nova Biomedical, [2013]
Description:1 online resource.
Language:English
Series:Muscular system--anatomy, functions, and injuries
Muscular system--anatomy, functions, and injuries series.
Subject:
Format: E-Resource Book
URL for this record:http://pi.lib.uchicago.edu/1001/cat/bib/11200976
Hidden Bibliographic Details
Other authors / contributors:Sakuma, Kunihiro, editor of compilation.
ISBN:9781628083699
1628083697
9781628083675
1628083670
Notes:Includes bibliographical references and index.
Description based on print version record.
Other form:Print version: Basic biology and current understanding of skeletal muscle [Hauppauge] New York : Nova Biomedical, [2013] 9781628083675 (hardcover)

MARC

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490 1 |a Muscular system--anatomy, functions, and injuries 
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505 0 |a BASIC BIOLOGY AND CURRENT UNDERSTANDING OF SKELETAL MUSCLE; Library of Congress Cataloging-in-Publication Data; Contents; Preface; Chapter 1: Stem Cell Hierarchies in Muscle Satellite Cells; Abstract; 1. Introduction; 2. Stem Cell Potential of Satellite Cells; 3. Satellite Cell Heterogeneity; 3.1. Evidence of Satellite Cell Heterogeneity among Muscles; 3.2. Evidence of Satellite Cell Heterogeneity within Fibres; 3.3. Molecular Characteristics of Satellite Cell Heterogeneity within Fibres; 3.4. Slow-Dividing Satellite Cell Populations; 3.5. Molecular Characteristics of Slow-Dividing Cells. 
505 8 |a 3.6. Slow-Dividing Cells and AgingConclusion; Acknowledgments; References; Chapter 2: Cellular Mechanisms Regulating Protein Metabolism in Skeletal Muscle Cells: Age-Associated Alteration of Intracellular Signaling Governing Protein Synthesis and Degradation; Abstract; Introduction; 1. Translational Control of Muscle Protein Synthesis mTOR -- A Central Regulatory Hub for Protein Synthesis; Regulatory Mechanisms of mTORC1 Activation in Skeletal Muscle -Insulin/IGF-1-Dependent Pathway; Mitogen-Activated Protein Kinase Pathway; Nutrient-Dependent Pathway; Cellular Stresses and mTORC1 Inhibition. 
505 8 |a Energy Status and mTOR Activity2. Molecular Mechanisms Regulating Protein; Degradation in Skeletal Muscle; Transcriptional Regulation of Atrogin1 and MuRF1 Expression; Targeted Substrates of Atrogin1 and MuRF1; 3. Basal Protein Metabolism in Skeletal Muscle; Between Young and Elderly; Age-Associated Anabolic Resistance in Skeletal Muscle; Resistance Exercise; Amino Acids Supplementation; 4. Muscle Protein Degradation during Aging and Chronic Diseases -- Inflammation and Cachexia; Chronic Low -- Grade Inflammation and Sarcopenia; Conclusion; Acknowledgments; References. 
505 8 |a Chapter 3: Biological Actions of Insulin-Like Growth Factor-I (IGF-I) Isoforms and IGF Binding Proteins in Skeletal MuscleAbstract; Introduction; IGF-I Isoforms; IGF Binding Proteins; IGF Binding of IGFBPs; IGFBP Related Proteins; Circulating and Local IGF-I; Modulation of IGFs Action by IGFBPs; IGF-Independent Actions of IGFBPs; Intracellular Signaling in Association with IGF-I and IGFBPs; IGF-I isoforms and Skeletal Muscle Growth; IGFBPs and Skeletal Muscle Growth; Conclusion; References; Chapter 4: An Overview of the Therapeutic Strategies for Preventing Sarcopenia; Abstract. 
505 8 |a Abbreviations1. Introduction; 2. Exercise; 2.1. Resistance Training; 2.2. Endurance Training; 2.3. Combined Exercise; 3. Supplemental Approach; 3.1. Amino Acid Supplementation; 3.2. Creatine Supplementation; 3.3. Ursolic Acid; 3.4. Eicosapentaenoic Acid (EPA); 3.5. Antioxidant Supplementation; 4. Hormonal Supplementation; 4.1. Testosterone; 4.2. Estrogen; 4.3. Growth Hormone (GH); 4.4. Ghrelin; 5. Pharmacological Approach; 5.1. Myostatin Inhibition; 5.2. Angiotensin-Converting Enzyme (ACE) Inhibitors; 5.3. Proteasome Inhibitors; 5.4. Vitamin D; 6. The Other Candidate. 
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