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Heat Shock Proteins and Stress

By: Material type: TextTextPublication details: Ashland : Delve Publishing, (c)2019.Description: 1 online resource (461 pages)Content type:
  • text
Media type:
  • computer
Carrier type:
  • online resource
ISBN:
  • 9781773618326
Subject(s): Genre/Form: LOC classification:
  • QP552 .H438 2019
Online resources: Available additional physical forms:
Contents:
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Item type Current library Collection Call number URL Status Date due Barcode
Online Book (LOGIN USING YOUR MY CIU LOGIN AND PASSWORD) Online Book (LOGIN USING YOUR MY CIU LOGIN AND PASSWORD) G. Allen Fleece Library ONLINE Non-fiction QP552 (Browse shelf(Opens below)) Link to resource Available on1085164193

Includes bibliographies and index.

Cover; Half Title Page; Title Page; Copyright Page; Declaration; About the Editor; Table of Contents; List of Contributors; List of Abbreviations; Preface; Chapter 1 Roles of Heat Shock Proteins in Apoptosis, Oxidative Stress, Human Inflammatory Diseases, and Cancer; Abstract; Introduction; Role of HSPS in Apoptosis; HSPS and Oxidative Stress; HSPS in Human Inflammatory Diseases (HIDS), And Cancer; Cancer; Association Between Heat Shock Proteins, Oxidative Stress, Apoptosis, Human Inflammatory Diseases (HIDS), And Cancer; Future Direction In The Use of HSPS as Therapeutic Candidates

ConclusionsReferences; Chapter 2 T Cell-Mediated Chronic Inflammatory Diseases Are Candidates For Therapeutic Tolerance Induction With Heat Shock Proteins; Peripheral Tolerance Mechanisms; MHC-Associated Diseases Are T Cell-Mediated And Possible Targets For Induction of Heat Shock Protein (HSP)-Driven Therapeutic Tolerance; HSP And The Induction Of Therapeutic Tolerance; Author Contributions; References; Chapter 3 Heat Shock Proteins And Autophagy Pathways In Neuroprotection: From Molecular Bases To Pharmacological Interventions; Abstract; Introduction; Heat Shock Proteins

ER-Stress, UPR, Erad, Ubiquitination, And The Ubiquitin- Proteasome System (UPS)Endo-Lysosomal System And Autophagy; Prevention And Treatment Of NDDS; Conclusions; Acknowledgments; Author Contributions; References; Chapter 4 The Heat Shock Response In Neurons and Astroglia and Its Role in Neurodegenerative Diseases; Abstract; Background; The HSR; The HSR In The Mammalian CNS; Studying The Therapeutic Effects of Increasing HSR Components; Conclusions; Acknowledgements; Authors' Contributions; References

Chapter 5 Cellular Response To ELF-MF and Heat: Evidence For A Common Involvement of Heat Shock Proteins?Introduction; Chaperones-Heat Shock Proteins; ELF-MF And Heat Shock Proteins; Combined Exposure To ELF-MF and Heat; Summary And Concluding Remarks; Author Contributions; References; Chapter 6 Redox Aspects of Chaperones in Cardiac Function; Introduction; Reactive Oxygen and Nitrogen Species and Redox Signaling; Redox Regulation of Chaperone Proteins; Chaperones in The Heart; Chaperones in Cardiac Mitochondria; Chaperones in Physiological Exercise

Chaperones in Myocardial Ischemia/Reperfusion Injury and CardioprotectionConclusions; Author Contributions; Acknowledgments; References; Chapter 7 Cross-Adaptation: Heat And Cold Adaptation To Improve Physiological And Cellular Responses To Hypoxia; Abstract; Introduction; Heat To Hypoxia Cross-Adaptation; Cold To Hypoxia Cross-Adaptation; Conclusions; References; Chapter 8 Molecular Chaperone Accumulation In Cancer And Decrease in Alzheimer's Disease: The Potential Roles of HSF1; Introduction; Heat Shock Proteins- An Inducible Class of Molecular Chaperones

Regulation of The Heat Shock Response By HSF1

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