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Synthetic mRNA: Production, Introduction Into Cells, and Physiological Consequences: Methods in Molecular Biology, cartea 1428

Editat de Robert E. Rhoads
en Limba Engleză Paperback – 26 mai 2018
This volumepresents detailed laboratory protocols for invitro synthesis of mRNA with favorable properties, its introduction intocells by a variety of techniques, and the measurement of physiological andclinical consequences such as protein replacement and cancer immunotherapy. Synthetictechniques are described for structural features in mRNA that provide investigationaltools such as fluorescence emission, click chemistry, photo-chemicalcrosslinking, and that produce mRNA with increased stability in the cell, increased translational efficiency, and reducedactivation of the innate immune response. Protocols are described for clinicalapplications such as large-scale transfection of dendritic cells, production ofGMP-grade mRNA, redirecting T cell specificity, and use of molecularadjuvants for RNA vaccines. Writtenin the highly successful Methods inMolecular Biology series format, chapters include introductions to theirrespective topics, lists of the necessarymaterials and reagents, step-by-steplaboratory protocols, and tips on troubleshooting and avoiding known pitfalls.

SyntheticmRNA: Production, Introduction into Cells, and Physiological Consequences
is a valuable and cutting-edge resourcefor both laboratory investigators and clinicians interested in this powerfuland rapidly evolving technology. 
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Specificații

ISBN-13: 9781493980987
ISBN-10: 149398098X
Ilustrații: XII, 320 p. 62 illus., 39 illus. in color.
Dimensiuni: 178 x 254 mm
Greutate: 0.58 kg
Ediția:Softcover reprint of the original 1st ed. 2016
Editura: Springer
Colecția Humana
Seria Methods in Molecular Biology

Locul publicării:New York, NY, United States

Cuprins

Synthetic mRNA: Production, Introduction into Cells, and Physiological Consequences.- Synthetic Capped mRNAs for Cap-Specific Photo-Crosslinking Experiments.- Enzymatic Modification of 5’-Capped RNA and Subsequent Labeling by Click Chemistry.- Preparation of Functional, Fluorescently Labeled mRNA Capped with Anthraniloyl-m7GpppG.- Intronless b-Globin Reporter:  A Tool for Studying Nuclear RNA Stability Elements.- Synthetic mRNA with Superior Properties that Mimics the Intracellular Fates of Natural Histone mRNA.- Engineering WT1-Encoding mRNA to Increase Translational Efficiency in Dendritic Cells.- Electroporation of Alphavirus RNA Translational Reporters into Fibroblastic and Myeloid Cells as a Tool to Study the Innate Immune System.- GMP-Grade mRNA Electroporation of Dendritic Cells for Clinical Use.- Large Scale mRNA Transfection of Dendritic Cells by Electroporation in Continuous Flow Systems.- FLT3 Ligand as a Molecular Adjuvant for Naked RNA Vaccines.- Transfecting Human Monocytes with RNA.- In Vitro Synthesis, Delivery and Bioavailability of Exogenous mRNA in Gene Transfer Mediated byPiggyBac Transposition.- Transfection of Human Keratinocytes with Nucleoside-Modified mRNA Encoding CPD-Photolyase to Repair DNA Damage.- Delivery of Synthetic mRNA Encoding FOXP3 Antigen into Dendritic Cells for Inflammatory Breast Cancer Immunotherapy.- Immune Monitoring using mRNA-Transfected Dendritic Cells.- Transfection of Tumor-Infiltrating T Cells with mRNA Encoding CXCR2.- mRNA Electroporation of Dendritic Cells with WT1, Survivin and TriMix (A Mixture of caTLR4, CD40L, and CD70).- Redirecting T Cell Specificity Using T Cell Receptor Messenger RNA Electroporation.- Measuring Hematocrit in Mice Injected with In Vitro-Transcribed Erythropoietin mRNA.- Genetic Modification of Human Pancreatic Progenitor Cells through Modified mRNA.


Textul de pe ultima copertă

This volumepresents detailed laboratory protocols for invitro synthesis of mRNA with favorable properties, its introduction intocells by a variety of techniques, and the measurement of physiological andclinical consequences such as protein replacement and cancer immunotherapy. Synthetictechniques are described for structural features in mRNA that provide investigationaltools such as fluorescence emission, click chemistry, photo-chemicalcrosslinking, and that produce mRNA with increased stability in the cell, increased translational efficiency, and reducedactivation of the innate immune response. Protocols are described for clinicalapplications such as large-scale transfection of dendritic cells, production ofGMP-grade mRNA, redirecting T cell specificity, and use of molecularadjuvants for RNA vaccines. Writtenin the highly successful Methods inMolecular Biology series format, chapters include introductions to theirrespective topics, lists of the necessarymaterials and reagents, step-by-steplaboratory protocols, and tips on troubleshooting and avoiding known pitfalls.

SyntheticmRNA: Production, Introduction into Cells, and Physiological Consequences
is a valuable and cutting-edge resourcefor both laboratory investigators and clinicians interested in this powerfuland rapidly evolving technology. 

Caracteristici

Includes cutting-edge methods and protocols Provides step-by-step detail essential for reproducible results Contains key notes and implementation advice from the experts Includes supplementary material: sn.pub/extras