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Ebolaviruses

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Cover of 'Ebolaviruses'

Table of Contents

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    Book Overview
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    Chapter 1 Marburg- and Ebolaviruses: A Look Back and Lessons for the Future
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    Chapter 2 Forty Years of Ebolavirus Molecular Biology: Understanding a Novel Disease Agent Through the Development and Application of New Technologies
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    Chapter 3 Ebolavirus: An Overview of Molecular and Clinical Pathogenesis
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    Chapter 4 Production of Filovirus Glycoprotein-Pseudotyped Vesicular Stomatitis Virus for Study of Filovirus Entry Mechanisms
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    Chapter 5 Lentiviral Vectors Pseudotyped with Filoviral Glycoproteins
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    Chapter 6 Modeling Ebola Virus Genome Replication and Transcription with Minigenome Systems
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    Chapter 7 Quantification of RNA Content in Reconstituted Ebola Virus Nucleocapsids by Immunoprecipitation
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    Chapter 8 Modeling Ebolavirus Budding with Virus Like Particles
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    Chapter 9 Modeling the Ebolavirus Life Cycle with Transcription and Replication-Competent Viruslike Particle Assays
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    Chapter 10 Assays to Measure Suppression of Type I Interferon Responses by Filovirus VP35 Proteins
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    Chapter 11 Nonradioactive Northern Blot Analysis to Detect Ebola Virus Minigenomic mRNA
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    Chapter 12 A Semi-automated High-Throughput Microtitration Assay for Filoviruses
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    Chapter 13 Generation of Recombinant Ebola Viruses Using Reverse Genetics
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    Chapter 14 Luciferase-Expressing Ebolaviruses as Tools for Screening of Antivirals
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    Chapter 15 Live-Cell Imaging of Filoviruses
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    Chapter 16 Assessment of Inhibition of Ebola Virus Progeny Production by Antiviral Compounds
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    Chapter 17 Analysis of the Cellular Stress Response During Ebola Virus Infection by Immunofluorescence
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    Chapter 18 Analyzing Apoptosis Induction and Evasion in Ebola Virus-Infected Cells
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    Chapter 19 Electron Microscopy of Ebola Virus-Infected Cells
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    Chapter 20 Validating the Inactivation Effectiveness of Chemicals on Ebola Virus
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    Chapter 21 Visualizing Ebolavirus Particles Using Single-Particle Interferometric Reflectance Imaging Sensor (SP-IRIS)
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    Chapter 22 Assessing Antiviral Countermeasures Using Mouse Models of Ebolavirus Infection
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    Chapter 23 Evaluation of Ebola Virus Countermeasures in Guinea Pigs
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    Chapter 24 Evaluation of Medical Countermeasures Against Ebolaviruses in Nonhuman Primate Models
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    Chapter 25 Quantification of Filovirus Glycoprotein-Specific Antibodies
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    Chapter 26 Monitoring Innate Immune Gene Responses in the Hamster Model of Ebola Virus Disease by RT-PCR
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    Chapter 27 Real-Time and End-Point PCR Diagnostics for Ebola Virus
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    Chapter 28 Production of Antigens for ELISA
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    Chapter 29 ELISA Methods for the Detection of Ebolavirus Infection
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    Chapter 30 Ebola Virus Field Sample Collection
Attention for Chapter 15: Live-Cell Imaging of Filoviruses
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Chapter title
Live-Cell Imaging of Filoviruses
Chapter number 15
Book title
Ebolaviruses
Published in
Methods in molecular biology, January 2017
DOI 10.1007/978-1-4939-7116-9_15
Pubmed ID
Book ISBNs
978-1-4939-7115-2, 978-1-4939-7116-9
Authors

Gordian Schudt, Olga Dolnik, Stephan Becker

Editors

Thomas Hoenen, Allison Groseth

Abstract

Observation of molecular processes inside living cells is fundamental to a deeper understanding of virus-host interactions in filoviral-infected cells. These observations can provide spatiotemporal insights into protein synthesis, protein-protein interaction dynamics, and transport processes of these highly pathogenic viruses. Thus, live-cell imaging provides the possibility for antiviral screening in real time and gives mechanistic insights into understanding filovirus assembly steps that are dependent on cellular factors, which then represent potential targets against this highly fatal disease. Here we describe analysis of living filovirus-infected cells under maximum biosafety (i.e., BSL4) conditions using plasmid-driven expression of fluorescently labeled viral and cellular proteins and/or viral genome-encoded expression of fluorescently labeled proteins. Such multiple-color and multidimensional time-lapse live-cell imaging analyses are a powerful method to gain a better understanding of the filovirus infection cycle.

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Mendeley readers

The data shown below were compiled from readership statistics for 1 Mendeley reader of this research output. Click here to see the associated Mendeley record.

Geographical breakdown

Country Count As %
Unknown 1 100%

Demographic breakdown

Readers by professional status Count As %
Researcher 1 100%
Readers by discipline Count As %
Biochemistry, Genetics and Molecular Biology 1 100%