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Lentiviral Vectors and Exosomes as Gene and Protein Delivery Tools

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Cover of 'Lentiviral Vectors and Exosomes as Gene and Protein Delivery Tools'

Table of Contents

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    Book Overview
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    Chapter 1 Construction of Modular Lentiviral Vectors for Effective Gene Expression and Knockdown.
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    Chapter 2 Development of Inducible Molecular Switches Based on All-in-One Lentiviral Vectors Equipped with Drug Controlled FLP Recombinase.
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    Chapter 3 Lentiviral Vectors and Exosomes as Gene and Protein Delivery Tools
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    Chapter 4 Optimized Lentiviral Transduction Protocols by Use of a Poloxamer Enhancer, Spinoculation, and scFv-Antibody Fusions to VSV-G.
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    Chapter 5 Transduction of Murine Hematopoietic Stem Cells with Tetracycline-regulated Lentiviral Vectors.
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    Chapter 6 Lentiviral Vectors and Exosomes as Gene and Protein Delivery Tools
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    Chapter 7 Production and Concentration of Lentivirus for Transduction of Primary Human T Cells.
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    Chapter 8 Generating Transgenic Mice by Lentiviral Transduction of Spermatozoa Followed by In Vitro Fertilization and Embryo Transfer.
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    Chapter 9 Lentiviral Vectors and Exosomes as Gene and Protein Delivery Tools
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    Chapter 10 Conditional RNAi Using the Lentiviral GLTR System.
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    Chapter 11 Lentiviral Vectors and Exosomes as Gene and Protein Delivery Tools
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    Chapter 12 Transient Expression of Green Fluorescent Protein in Integrase-Defective Lentiviral Vector-Transduced 293T Cell Line.
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    Chapter 13 Lentiviral Vectors and Exosomes as Gene and Protein Delivery Tools
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    Chapter 14 Development of Lentiviral Vectors for Targeted Integration and Protein Delivery.
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    Chapter 15 Biogenesis and Functions of Exosomes and Extracellular Vesicles.
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    Chapter 16 Generation, Quantification, and Tracing of Metabolically Labeled Fluorescent Exosomes.
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    Chapter 17 Lentiviral Vectors and Exosomes as Gene and Protein Delivery Tools
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    Chapter 18 Lentiviral Vectors and Exosomes as Gene and Protein Delivery Tools
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    Chapter 19 Lentiviral Vectors and Exosomes as Gene and Protein Delivery Tools
Attention for Chapter 2: Development of Inducible Molecular Switches Based on All-in-One Lentiviral Vectors Equipped with Drug Controlled FLP Recombinase.
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Chapter title
Development of Inducible Molecular Switches Based on All-in-One Lentiviral Vectors Equipped with Drug Controlled FLP Recombinase.
Chapter number 2
Book title
Lentiviral Vectors and Exosomes as Gene and Protein Delivery Tools
Published in
Methods in molecular biology, January 2016
DOI 10.1007/978-1-4939-3753-0_2
Pubmed ID
Book ISBNs
978-1-4939-3751-6, 978-1-4939-3753-0
Authors

Tobias Maetzig Ph.D., Axel Schambach M.D., Ph.D., Tobias Maetzig, Axel Schambach

Editors

Maurizio Federico

Abstract

Drug-inducible recombination based on flippase (FLP) is frequently used in animal models and in transgenic cell lines to initiate or to abrogate gene expression. Although the system is highly efficient, functional gene analyses depend on the availability of suitable animal models. In contrast, lentiviral vectors are readily available and versatile tools for the transfer of genetic information into a wide variety of target cells, and can be produced at high titer in a timely manner. To combine the advantages of both approaches, we generated a tight, drug-controlled FLP recombinase consisting of a 5' FKBP12 derived conditional destruction domain and a 3' estrogen receptor ligand binding (ERT2) domain. We successfully constructed lentiviral vectors expressing drug-controlled FLP in combination with a fluorescent reporter for recombination of FLP recognition target (FRT) sites located in trans as well as with target alleles located in cis (all-in-one configuration). In this chapter, we describe the design of the drug controlled FLP recombinase, the construction of molecular switches consisting of FLP expressing lentiviral vectors for inducible recombination of target sites located in cis and in trans, as well as the details for the characterization of lentiviral FLP vectors in cell lines.

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Mendeley readers

The data shown below were compiled from readership statistics for 8 Mendeley readers of this research output. Click here to see the associated Mendeley record.

Geographical breakdown

Country Count As %
Unknown 8 100%

Demographic breakdown

Readers by professional status Count As %
Researcher 2 25%
Professor 1 13%
Student > Ph. D. Student 1 13%
Other 1 13%
Unknown 3 38%
Readers by discipline Count As %
Biochemistry, Genetics and Molecular Biology 1 13%
Neuroscience 1 13%
Medicine and Dentistry 1 13%
Unknown 5 63%