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  1. Deconvolution Microscopy

    Since its introduction in 1983, deconvolution microscopy has become a key image-processing tool for visualizing the cellular structures of fixed and...
    Jean-Baptiste Sibarita in Microscopy Techniques
    Chapter
  2. Total Internal Reflection Fluorescence Microscopy in Single Molecule Nanobioscience

    Recent development in total internal reflection fluorescence microscopy (TIRFM) has made it possible to directly monitor the behaviors of...
    Tetsuichi Wazawa, Masahiro Ueda in Microscopy Techniques
    Chapter
  3. Tracking Movement in Cell Biology

    This article is an overview of techniques for measuring movement of proteins, vesicles and cells using digital image processing. Diverse techniques...
    Kota Miura in Microscopy Techniques
    Chapter
  4. Fluorescence Lifetime Imaging Microscopy (FLIM)

    Fluorescence lifetime imaging microscopy (FLIM) is a technique to map the spatial distribution of nanosecond excited state lifetimes within...
    Erik B. van Munster, Theodorus W. J. Gadella in Microscopy Techniques
    Chapter
  5. Spectral Imaging and Linear Unmixing in Light Microscopy

    Fluorescence microscopy is an essential tool for modern biological research. The wide range of available fluorophores and labeling techniques allows...
    Timo Zimmermann in Microscopy Techniques
    Chapter
  6. Higher Harmonic Generation Microscopy

    Higher harmonic-generation, including second harmonic generation and third harmonic generation, leaves no energy deposition to the interacted matters...
    Chi-Kuang Sun in Microscopy Techniques
    Chapter
  7. Advanced Targeting Strategies for Murine Retroviral and Adeno-associated Viral Vectors

    Targeted gene delivery involves broadening viral tropism to infect previously nonpermissive cells, replacing viral tropism to infect a target cell...
    Julie H. Yu, David V. Schaffer in Gene Therapy and Gene Delivery Systems
    Chapter
  8. Nonviral Delivery of Cancer Genetic Vaccines

    The potential use of genetic vaccines to address numerous diseases including cancer is promising, but currently unrealized. Here, we review...
    Steven R. Little, Robert Langer in Gene Therapy and Gene Delivery Systems
    Chapter
  9. Production and Formulation of Adenovirus Vectors

    Adenovirus vectors have attracted considerable interest over the past decade, with ongoing clinical development programs for applications ranging...
    Nedim E. Altaras, John G. Aunins, ... Jayanthi J. Wolf in Gene Therapy and Gene Delivery Systems
    Chapter
  10. Molecular Conjugates

    Molecular conjugates are nanometer-sized entities consisting of synthetic materials (lipids, polycations, targeting agents, and so on) and nucleic...
    Jeremy Heidel, Swaroop Mishra, Mark E. Davis in Gene Therapy and Gene Delivery Systems
    Chapter
  11. Fluorescence Correlation Spectroscopy with Autofluorescent Proteins

    Fluorescence correlation spectroscopy (FCS) is a versatile technique operating at the single-molecule level, that successfully meets many challenges...
    Tobias Kohl, Petra Schwille in Microscopy Techniques
    Chapter
  12. Adeno-associated Virus as a Gene Therapy Vector: Vector Development, Production and Clinical Applications

    Adeno-associated virus (AAV) has emerged as an attractive vector for gene therapy. AAV vectors have successfully been utilized to promote...
    Joshua C. Grieger, Richard J. Samulski in Gene Therapy and Gene Delivery Systems
    Chapter
  13. Lentiviral Vectors

    We review the use of lentiviral vectors in current human gene therapy applications that involve genetic modification of nondividing tissues with...
    Nils Loewen, Eric M. Poeschla in Gene Therapy and Gene Delivery Systems
    Chapter
  14. Plasmid Vaccines and Therapeutics: From Design to Applications

    In the late 1980s, Vical and collaborators discovered that the injection into tissues of unformulated plasmid encoding various proteins resulted in...
    Marston Manthorpe, Peter Hobart, ... Alain Rolland in Gene Therapy and Gene Delivery Systems
    Chapter
  15. Engineering Fluorescent Proteins

    Green fluorescent protein from the jellyfish Aequorea victora (GFP) and GFP-like proteins from Anthozoa species encode light-absorbing chromophores...
    Atsushi Miyawaki, Takeharu Nagai, Hideaki Mizuno in Microscopy Techniques
    Chapter
  16. Live Cell Spinning Disk Microscopy

    In vivo microscopy of dynamic processes in cells and organisms requires very fast and sensitive acquisition methods. Confocal laser scanning...
    Ralph Gräf, Jens Rietdorf, Timo Zimmermann in Microscopy Techniques
    Chapter
  17. Fluorescence Recovery after Photobleaching: Application to Nuclear Proteins

    Fluorescence redistribution after photobleaching (FRAP) has received increasing attention ever since it was first introduced into cell biological...
    Adriaan B. Houtsmuller in Microscopy Techniques
    Chapter
  18. Rescue of nucleus pulposus cells from an oxidative stress microenvironment via glutathione-derived carbon dots to alleviate intervertebral disc degeneration

    The senescence of nucleus pulposus (NP) cells (NPCs), which is induced by the anomalous accumulation of reactive oxygen species (ROS), is a major...

    Wenzhen Bu, Yu Shi, ... Jianwei Du in Journal of Nanobiotechnology
    Article Open access 12 July 2024
  19. Macrophage membrane-reversibly camouflaged nanotherapeutics accelerate fracture healing by fostering MSCs recruitment and osteogenic differentiation

    The fracture healing outcome is largely dependent on the quantities as well as osteogenic differentiation capacities of mesenchymal stem cells (MSCs)...

    Cheng Wu, **g Yan, ... Lichen Yin in Journal of Nanobiotechnology
    Article Open access 12 July 2024
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