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Cell-Penetrating Peptides

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Cover of 'Cell-Penetrating Peptides'

Table of Contents

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    Book Overview
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    Chapter 1 Classes of Cell-Penetrating Peptides.
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    Chapter 2 Cell-Penetrating Peptides
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    Chapter 3 Prediction of Cell-Penetrating Peptides
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    Chapter 4 Computer-Aided Virtual Screening and Designing of Cell-Penetrating Peptides.
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    Chapter 5 Investigating Membrane Interactions and Structures of CPPs.
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    Chapter 6 Determining the Effects of Membrane-Interacting Peptides on Membrane Integrity.
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    Chapter 7 Study of CPP Mechanisms by Mass Spectrometry.
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    Chapter 8 Methods to Study the Role of the Glycocalyx in the Uptake of Cell-Penetrating Peptides
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    Chapter 9 Toxicity, Immunogenicity, Uptake, and Kinetics Methods for CPPs
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    Chapter 10 Unraveling the Mechanisms of Peptide-Mediated Delivery of Nucleic Acids Using Electron Microscopy.
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    Chapter 11 SCARA Involvement in the Uptake of Nanoparticles Formed by Cell-Penetrating Peptides
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    Chapter 12 Protein Mimicry and the Design of Bioactive Cell-Penetrating Peptides.
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    Chapter 13 Pepducins and Other Lipidated Peptides as Mechanistic Probes and Therapeutics.
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    Chapter 14 Identification and Characterization of Homing Peptides Using In Vivo Peptide Phage Display.
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    Chapter 15 The Antimicrobial and Antiviral Applications of Cell-Penetrating Peptides
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    Chapter 16 Visualizing Actin Architectures in Cells Incubated with Cell-Penetrating Peptides.
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    Chapter 17 Cell-Penetrating Peptides as Carriers for Transepithelial Drug Delivery In Vitro.
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    Chapter 18 A Pathway Toward Tumor Cell-Selective CPPs?
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    Chapter 19 PepFects and NickFects for the Intracellular Delivery of Nucleic Acids
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    Chapter 20 In Vitro Assays to Assess Exon Skipping in Duchenne Muscular Dystrophy.
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    Chapter 21 Applications of ApoB LDLR-Binding Domain Approach for the Development of CNS-Penetrating Peptides for Alzheimer's Disease.
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    Chapter 22 CPP-Based Delivery System for In Vivo Gene Delivery
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    Chapter 23 Application of CPPs for Brain Delivery
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    Chapter 24 Intracellular Delivery of Nanoparticles with Cell Penetrating Peptides.
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    Chapter 25 Cell-Penetrating Peptides
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    Chapter 26 Cell Penetrating Peptides for Chemical Biological Studies.
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    Chapter 27 Experiences with CPP-Based Self Assembling Peptide Systems for Topical Delivery of Botulinum Toxin.
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    Chapter 28 Applications of CPPs in Genome Modulation of Plants.
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    Chapter 29 DNA Transfer into Animal Cells Using Stearylated CPP Based Transfection Reagent.
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    Chapter 30 Live Cell Genomics: Cell-Specific Transcriptome Capture in Live Tissues and Cells.
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    Chapter 31 Live Cell Genomics: RNA Exon-Specific RNA-Binding Protein Isolation.
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    Chapter 32 ERRATUM TO: Methods to Study the Role of the Glycocalyx in the Uptake of Cell-Penetrating Peptides.
Attention for Chapter 10: Unraveling the Mechanisms of Peptide-Mediated Delivery of Nucleic Acids Using Electron Microscopy.
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Chapter title
Unraveling the Mechanisms of Peptide-Mediated Delivery of Nucleic Acids Using Electron Microscopy.
Chapter number 10
Book title
Cell-Penetrating Peptides
Published in
Methods in molecular biology, January 2015
DOI 10.1007/978-1-4939-2806-4_10
Pubmed ID
Book ISBNs
978-1-4939-2805-7, 978-1-4939-2806-4
Authors

Helerin Margus, Carmen Juks, Margus Pooga

Editors

Ülo Langel

Abstract

Cell-penetrating peptides (CPPs) are efficient non-viral delivery vectors for bioactive cargos, both in vitro and in vivo. Cargo molecules can be attached to CPPs either via covalent conjugation or by complex formation using co-incubation, which is typically used for charged molecules such as nucleic acids. The latter technique is efficiently used in case of CADY, MPG, Pep peptides, NickFects and PepFects that condense oligonucleotides (ONs) into nanoparticles, which efficiently enter cells and induce biological effects. Despite being highly promising candidates for developing new-generation medicines, CPPs' internalization mechanisms and intracellular trafficking are still far from being well-understood, and obtained data are often controversial. Transmission electron microscopy (TEM) is an informative and valuable tool for examining the mechanisms of CPP-ON nanoparticles. TEM enables to visualize nanoparticles or single molecules labeled with Nanogold™ tag, and follow their association with cells and intracellular localization. In this chapter, we present methods for preparation of CPP-ON nanoparticles for TEM analysis and for examination of their interactions with the plasma membrane, and subsequent cellular uptake either by direct translocation or endocytosis. In case of endocytosis, ONs have to be released from endosomes and reach their target site in nucleus or cytoplasm to reveal their activity. TEM enables to estimate when the endosomal escape begins, from which type of endosomal vesicles it occurs, whether the vesicles are broken, or nanocomplexes translocate across the membrane into cytosol. Since single ONs could be followed, the time-frame that is necessary for the splice-switching nucleotides to translocate into cell nucleus can be analyzed by TEM.

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Mendeley readers

The data shown below were compiled from readership statistics for 6 Mendeley readers of this research output. Click here to see the associated Mendeley record.

Geographical breakdown

Country Count As %
Unknown 6 100%

Demographic breakdown

Readers by professional status Count As %
Researcher 3 50%
Librarian 1 17%
Student > Ph. D. Student 1 17%
Lecturer 1 17%
Readers by discipline Count As %
Agricultural and Biological Sciences 3 50%
Chemistry 2 33%
Linguistics 1 17%