RNA Nanotechnology and Therapeutics
eBook - ePub

RNA Nanotechnology and Therapeutics

  1. 632 pages
  2. English
  3. ePUB (mobile friendly)
  4. Available on iOS & Android
eBook - ePub

RNA Nanotechnology and Therapeutics

About this book

Interest in RNA nanotechnology has increased in recent years as recognition of its potential for applications in nanomedicine has grown. Edited by the world's foremost experts in nanomedicine, this comprehensive, state-of-the-art reference details the latest research developments and challenges in the biophysical and single molecule approaches in RNA nanotechnology. In addition, the text also provides in-depth discussions of RNA structure for nanoparticle construction, RNA computation and modeling, single molecule imaging of RNA, RNA nanoparticle assembly, RNA nanoparticles in therapeutics, immunorecognition of RNA nanomaterials, RNA chemistry for nanoparticle synthesis, and conjugation and labeling.

  • Presents the latest research and discoveries in RNA nanotechnology
  • Features contributions from world-class experts in the field
  • Covers RNA nanoparticles in therapeutics
  • Describes self-assembled RNA nanoparticles

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Yes, you can access RNA Nanotechnology and Therapeutics by Peixuan Guo,Kirill A. Afonin in PDF and/or ePUB format, as well as other popular books in Medicine & Pharmacology. We have over one million books available in our catalogue for you to explore.

Information

Publisher
CRC Press
Year
2022
Print ISBN
9781138312869
eBook ISBN
9781000552737
Edition
2
Subtopic
Pharmacology

Table of contents

  1. Cover Page
  2. Half Title page
  3. Title Page
  4. Copyright Page
  5. Contents
  6. Preface
  7. Acknowledgments
  8. Introduction
  9. Contributors
  10. 1 RNA Structure and Folding
  11. 2 RNA Regulation and Function in Nature
  12. 3 Principles and Fundamentals of RNA Nanotechnology
  13. 4 Computation and Folding Predictions
  14. 5 Enzymatic Synthesis and Modification of RNA Nanoparticles
  15. 6 Synthetic and Enzymatic Methods for RNA Labeling and Modifications
  16. 7 Methods and Assembly of RNA Nanotechnology
  17. 8 Purification, Characterization, and Structure Determination of RNA Nanoparticles
  18. 9 SELEX
  19. 10 Uniqueness, Advantages, Challenges, Solutions, and Perspectives in Therapeutics Applying RNA Nanotechnology
  20. 11 The Natural Versatility of RNA
  21. 12 Nucleic Acids as a Building Material in Nanotechnology
  22. 13 Multiple Functionalities for RNA Nanoparticles
  23. 14 From Computational RNA Structure Prediction to the Design of Biologically Active RNA-Based Nanostructures
  24. 15 Application of RNA Tertiary Structure Prediction Tool iFoldRNA in RNA Nanotechnology
  25. 16 HyperFold A Web Server for Predicting Nucleic Acid Complexes
  26. 17 RNA Switches Towards Conditional Dynamic RNA-Based Constructs for Therapeutics and Bioassays
  27. 18 RNA Multiway Junction Motifs as Lego for the Construction of Multifunctional RNA Nanoparticles
  28. 19 Fabrication Methods for RNA Nanoparticle Assembly Based on Bacteriophage Phi29 pRNA Structural Features
  29. 20 Purification of RNA, Modified Oligos, and RNA Nanoparticles
  30. 21 Physicochemical Characterization of Nucleic Acid Nanoparticles
  31. 22 Light Scattering Techniques for Characterization of NANPs and Their Formulations
  32. 23 Electron Microscopy of Nucleic Acid Nanoparticles
  33. 24 A Single-Molecule FRET Approach for Investigating the Binding Mechanisms of Anti-Viral Aptamers
  34. 25 Entropy and Enthalpy in RNA Nanoparticle Assembly and Thermodynamic Stability for Medical Application Using RNA Nanotechnology
  35. 26 Immunorecognition of Nucleic Acid Nanoparticles
  36. 27 Viral Noncoding RNAs in Modulating Cellular Defense and Their Potential for RNA Nanotechnology
  37. 28 RIG-I as a Therapeutic Target for Nucleic Acid Nanoparticles (NANPs)
  38. 29 Driving Dynamic Functions with Programmable RNA Nanostructures
  39. 30 Defining Immunological Properties of Nucleic Acid Nanoparticles Using Human Peripheral Blood Mononuclear Cells
  40. 31 The Emerging Field of RNA Nanotechnology
  41. 32 Thermodynamically Stable RNA Three-Way Junction for Constructing Multifunctional Nanoparticles for Delivery of Therapeutics1
  42. 33 RNAi Nanotherapeutics for Localized Cancer Therapy
  43. 34 Delivery of RNA Nanoparticles
  44. 35 Recommendations for Planning In Vivo Studies for RNAi Therapeutics
  45. 36 Mesoporous Silica Nanoparticles for Efficient siRNA Delivery
  46. 37 Method of Large-Scale Exosome Purification and Its Use for Pharmaceutical Applications
  47. 38 Engineered Extracellular Vesicle-Based Therapeutics for Liver Cancer
  48. 39 Extracellular Vesicles (EVs) An Innovative Approach to Engineering Nucleic Acid Delivery
  49. 40 Extracellular Vesicles (EVs) Naturally Occurring Vehicles for RNA Nanotherapeutics
  50. 41 Harnessing Exosomes and Bioinspired Exosome-Like Nanoparticles for siRNA Delivery
  51. 42 RNA Structural Modeling for Therapeutic Applications
  52. 43 RNA Micelles for Therapeutics Delivery and Cancer Therapy
  53. 44 Bacteriophage RNA Leading the Way in RNA Nanotechnology for Targeted Cancer Therapy
  54. 45 Current State in the Development of RNAi Self-Assembled Nanostructures
  55. 46 RNA-Based Devices for Diagnostic and Biosensing
  56. 47 MicroRNAs Biology and Role in RNA Nanotechnology
  57. 48 Conjugation of RNA Aptamer to RNA Nanoparticles for Targeted Drug Delivery
  58. 49 MicroRNAs in Human Cancers and Therapeutic Applications
  59. 50 Tuning the Size, Shape, and Structure of RNA Nanoparticles for Favorable Cancer Targeting and Immunostimulation1
  60. 51 RNA Nanotechnology and Extracellular Vesicles (EVs) for Gene Therapy
  61. 52 Application of RNA Aptamers in Nanotechnology and Therapeutics
  62. Index