ENGLISH

Rhinovirus Infections: Rethinking the Impact on Human Health and Disease

Book information

Publisher
Academic Press
Year
2019
ISBN
0128164174, 9780128164174
Language
english
Format
PDF
Filesize
6 MB (6742058 bytes)
Pages
314\304
Time added
2020-05-15 18:39:35

Description

Rhinovirus Infections: Rethinking the Impact on Human Health and Disease provides a timely review of the impact of rhinovirus infections on human health. It identifies disease mechanisms relating to the virus, human host and environmental factors. This viewpoint allows us to look forward to the development of treatments for a virus for which treatment options are currently non-existent. By providing detailed insights into this virus, its host and the environmental factors that play into rhinovirus induced diseases, this book explains disease mechanisms and summarizes existing and developing therapeutic approaches for better research, diagnosis and potential treatments. Cover Rhinovirus Infections Copyright List of Contributors Foreword 1 Rhinovirus structure, replication, and classification 1.1 Introduction 1.2 Biology of human rhinoviruses 1.2.1 Rhinovirus genome organization 1.2.2 Rhinovirus structural organization 1.2.3 Rhinovirus replication cycle 1.2.3.1 Binding and entry 1.2.3.2 Uncoating 1.2.3.3 Translation of the polyprotein and replication 1.2.3.4 Assembly and release of infectious viral particles 1.3 Classification of human rhinoviruses 1.3.1 Early methods of classification 1.3.1.1 Serotyping 1.3.1.2 Additional characterizations of rhinoviruses 1.3.2 Current rhinovirus classification 1.3.2.1 Technical improvements, rhinovirus C discovery, and new classification proposals 1.3.2.2 Genotyping 1.3.3 Challenges in rhinovirus classification and diversity 1.4 Summary References 2 Rhinovirus diversity and virulence factors 2.1 Introduction 2.2 Species and subtypes in clinical presentation 2.2.1 Species and illness severity 2.2.1.1 Association of rhinovirus species C with severe illnesses and asthma 2.2.1.2 More than just diversity in the species 2.2.2 Toward the identification of more pathogenic subtypes 2.2.2.1 Cases of rhinovirus subtypes with increased pathogenicity 2.2.2.2 An increased need for surveillance to identify circulating subtypes 2.3 Factors contributing to increased subtype pathogenicity 2.3.1 Rhinovirus diversity, receptor and cell tropism 2.3.2 Viral load as an marker of illness severity 2.3.3 Rhinovirus diversity and immune response 2.3.4 Host cell shutdown and disease 2.4 Rhinovirus proteases and subtype-specific disease 2.4.1 The proteases and proteolytic roles in viral replication 2.4.1.1 2A protease 2.4.1.2 3C/3CD protease 2.5 Variances in proteases between rhinovirus subtypes 2.6 Rhinovirus proteases as virulence factors 2.6.1 Host cell shutoff 2.6.1.1 Nuclear pore cleavage 2.6.1.2 Translation inhibition 2.6.1.3 Modulation of apoptosis 2.7 Conclusion References 3 Ground zero—the airway epithelium 3.1 Introduction 3.2 Structure of the airway epithelium 3.2.1 Basal cells 3.2.2 Club cells 3.2.3 Ciliated cells 3.2.4 Goblet cells 3.2.5 Pulmonary neuroendocrine cells 3.2.6 Tuft cells 3.2.7 Pulmonary ionocytes 3.2.8 Airway basement membrane and submucosal glands 3.3 Functions of the airway epithelium 3.3.1 The airway mucus barrier 3.3.2 Barrier function of the airway epithelium 3.3.3 Reparative function of the airway epithelium 3.4 Rhinovirus targeting of airway epithelial cells 3.4.1 Viral attachment 3.4.1.1 Intercellular adhesion molecule 1 (ICAM-1) 3.4.1.2 Low-density lipoprotein receptor (LDLR) 3.4.1.3 Cadherin-related family member 3 (CDHR3) 3.4.1.4 Serotype variance 3.5 Airway epithelial cell responses to rhinovirus infection 3.5.1 Innate immune response induction 3.5.2 Treatment strategies to combat rhinovirus infection 3.6 Conclusion References 4 Immunity to rhinoviruses 4.1 Introduction 4.2 Innate immune response 4.2.1 Dendritic cells 4.2.2 Macrophages 4.2.3 Neutrophils 4.2.4 Eosinophils 4.2.5 Basophils and mast cells 4.2.6 Natural killer cells 4.2.7 Innate lymphoid cells 4.3 Adaptive immune response 4.3.1 Type I and type II immunity 4.3.2 Type III immune response 4.3.3 Regulatory T cells 4.3.4 Memory T cells 4.3.5 Neutralizing antibodies 4.4 Conclusion Funding source References 5 Rhinoviruses and the onset of asthma 5.1 Introduction 5.2 Rhinovirus infections in early life 5.3 The association between rhinovirus infections in early life and asthma 5.4 Viral factors 5.5 Host factors 5.6 Environmental factors 5.7 How could viral wheezing illnesses in early life promote asthma? 5.8 Therapeutic implications and conclusion Conflicts of interest disclosure References 6 Exacerbations of chronic respiratory diseases 6.1 Introduction 6.2 Exacerbations of asthma 6.3 Exacerbations of chronic obstructive pulmonary disease 6.4 Exacerbations of cystic fibrosis 6.5 Exacerbations of interstitial lung disease 6.6 Characteristics of rhinovirus that may promote exacerbations of chronic respiratory diseases 6.7 Rhinovirus–treatment interactions in chronic respiratory diseases 6.8 Future directions for therapeutic approaches 6.9 Summary References 7 The interplay of the host, virus, and the environment 7.1 Introduction 7.2 Severe infection with rhinovirus 7.3 Allergic airway inflammation and rhinovirus infection 7.3.1 Abnormal antiviral signaling in the airways of those with allergic asthma 7.4 Evidence of impaired systemic immune responses to virus infection with allergic airways disease 7.5 Virus infection worsens type 2 airway inflammation 7.6 Chronic inflammatory airways diseases not associated with allergic and type 2 inflammation are also susceptible to rhin... 7.7 Chronic obstructive pulmonary disease and susceptibility to rhinovirus infection 7.8 Cellular oxidative stress and increased susceptibility to rhinovirus infection 7.9 Conclusions References 8 In vivo experimental models of infection and disease 8.1 Human models of rhinovirus infection 8.2 Rationale for human infection studies 8.3 Rhinovirus infection and exacerbations of asthma and chronic obstructive pulmonary disease 8.4 Experimental rhinovirus infection in asthma 8.5 Experimental rhinovirus infection in chronic obstructive pulmonary disease 8.6 Future directions for human infection models 8.6.1 Animal models of rhinovirus infection 8.7 Mouse models 8.8 Origins of rhinovirus mouse models 8.9 Technical details and main findings from mouse rhinovirus infection models 8.10 Preclinical testing in mouse models of rhinovirus infection 8.11 Rhinovirus-induced disease exacerbation models in mice 8.11.1 Mouse asthma exacerbation models 8.11.2 Mouse chronic obstructive pulmonary disease exacerbation models 8.11.3 Mouse chronic sinusitis exacerbation models 8.12 Other rhinovirus animal models 8.12.1 Cotton rat 8.13 Nonhuman primates 8.14 Animal models using other viruses 8.14.1 Considerations, cautions, and limitations of animal infection models 8.14.2 Future directions for animal models 8.15 Conclusion References 9 Emerging therapeutic approaches 9.1 Chemotherapeutics 9.1.1 Viral targets 9.1.1.1 Entry inhibitors 9.1.1.2 Protease inhibitors 9.1.1.3 Polymerase inhibitors 9.1.2 Host targets 9.1.2.1 Entry inhibitors 9.1.2.2 The replication complex 9.1.2.3 Novel membrane targets 9.1.2.4 Assembly inhibitors 9.2 Biotherapeutics and immunotherapies 9.2.1 Innate immune stimulators 9.2.2 Targeting virus induced pathogenic responses 9.2.3 The use of heat against the cold 9.3 The potential for a successful human rhinovirus vaccine 9.3.1 The first attempts at rhinovirus vaccines: human clinical trials 9.3.2 Second attempts at rhinovirus vaccines: animal studies 9.3.3 Recent approaches: application of mouse and rat models of human rhinovirus infection 9.3.4 Revisiting the multivalent inactivated rhinovirus approach References 10 Techniques for detection and research 10.1 Overview 10.2 Narrative description 10.2.1 Does polymerase chain reaction detect replication competent virus or fragments of viral RNA not directly associated ... 10.2.2 Should you always carry out an assay which demonstrates virus infectivity? 10.2.3 Can polymerase chain reaction lead to false positive results? 10.2.4 Practical ways to detect rhinovirus 10.2.5 How to take samples: overview 10.2.6 Sampling site 10.2.7 Sample preparation/storage 10.2.8 The ideal study 10.3 Technical considerations to detecting rhinovirus 10.3.1 Polymerase chain reaction 10.3.2 Extraction methods 10.3.3 Reverse transcription 10.3.4 Primer design 10.3.5 Polymerase chain reaction sensitivity 10.3.6 Digital polymerase chain reaction 10.3.7 Molecular assays to detect different rhinovirus genotypes 10.3.8 Standard sequencing to determine rhinovirus genotype 10.3.9 Alternative approaches to polymerase chain reaction sequencing 10.3.10 Future perspectives References Index Back Cover

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