↓ Skip to main content

Flow Cytometry Protocols

Overview of attention for book
Cover of 'Flow Cytometry Protocols'

Table of Contents

  1. Altmetric Badge
    Book Overview
  2. Altmetric Badge
    Chapter 1 Flow Cytometry: The Glass Is Half Full
  3. Altmetric Badge
    Chapter 2 High-Dimensional Modeling for Cytometry: Building Rock Solid Models Using GemStone™ and Verity Cen-se’™ High-Definition t-SNE Mapping
  4. Altmetric Badge
    Chapter 3 Mass Cytometry Assays for Antigen-Specific T Cells Using CyTOF
  5. Altmetric Badge
    Chapter 4 RNA Flow Cytometry Using the Branched DNA Technique
  6. Altmetric Badge
    Chapter 5 Analysis of Individual Extracellular Vesicles by Flow Cytometry
  7. Altmetric Badge
    Chapter 6 Quantitative Fluorescence Measurements with Multicolor Flow Cytometry
  8. Altmetric Badge
    Chapter 7 High Throughput Flow Cytometry for Cell Surface Profiling
  9. Altmetric Badge
    Chapter 8 Multiparameter Conventional Flow Cytometry
  10. Altmetric Badge
    Chapter 9 Multiparameter Intracellular Cytokine Staining
  11. Altmetric Badge
    Chapter 10 Multiparametric Analysis of Apoptosis by Flow Cytometry
  12. Altmetric Badge
    Chapter 11 Multiparameter Cell Cycle Analysis
  13. Altmetric Badge
    Chapter 12 Monitoring Cell Proliferation by Dye Dilution: Considerations for Probe Selection
  14. Altmetric Badge
    Chapter 13 Immunophenotypic Identification of Early Myeloerythroid Development
  15. Altmetric Badge
    Chapter 14 Flow Cytometry Assays in Primary Immunodeficiency Diseases
  16. Altmetric Badge
    Chapter 15 Real-Time Deformability Cytometry: Label-Free Functional Characterization of Cells
  17. Altmetric Badge
    Chapter 16 Nuclear Cytometry: Analysis of the Patterns of DNA Synthesis and Transcription Using Flow Cytometry, Confocal Microscopy, and RNA Sequencing
  18. Altmetric Badge
    Chapter 17 Flow Cytometric FRET Analysis of Protein Interactions
  19. Altmetric Badge
    Chapter 18 Overview of Fluorescence Lifetime Measurements in Flow Cytometry
  20. Altmetric Badge
    Chapter 19 Overview of Lasers for Flow Cytometry
  21. Altmetric Badge
    Chapter 20 Flow Cytometry: The Glass Is Half Empty
Attention for Chapter 4: RNA Flow Cytometry Using the Branched DNA Technique
Altmetric Badge

Citations

dimensions_citation
18 Dimensions

Readers on

mendeley
31 Mendeley
You are seeing a free-to-access but limited selection of the activity Altmetric has collected about this research output. Click here to find out more.
Chapter title
RNA Flow Cytometry Using the Branched DNA Technique
Chapter number 4
Book title
Flow Cytometry Protocols
Published in
Methods in molecular biology, January 2018
DOI 10.1007/978-1-4939-7346-0_4
Pubmed ID
Book ISBNs
978-1-4939-7344-6, 978-1-4939-7346-0
Authors

Kah Teong Soh, Paul K. Wallace

Abstract

The systematic modulation of mRNA and proteins governs the complicated and intermingled biological functions of our cells. Traditionally, transcriptomic technologies such as DNA microarray and RNA-Seq have been used to identify, characterize, and profile gene expression data. These are, however, considered bulk methods as they are unable to measure gene expression at the single-cell level, unless the cells are pre-sorted. Branched DNA is a flow cytometry-based detection platform that has been developed recently to measure mRNA at the single-cell level. Originally adapted from microscopy, the current system has been modified to achieve compatibility with the detection of surface and intracellular antigens using monoclonal antibodies conjugated to fluorochromes, thus permitting simultaneous detection of mRNAs and proteins. The Branched DNA method offers a variety of advantages when compared to traditional or standard methods used for the quantification of mRNA, such as (a) the detection of specific mRNA on a per cell basis, (b) an alternate detection tool when the measurement of a protein is technically infeasible (i.e., no quality antibody exists) or the epitope is not assessable, and (c) correlate the analysis of mRNA with protein. Compared to earlier attempts at measuring nucleic acid by flow cytometry, the hybridization temperature applied in the Branched DNA assay is much lower, thus preserving the integrity of cellular structures for further characterization. It also has greatly increased specificity and sensitivity. Here, we provide detailed instruction for performing the Branched DNA method using it in a model system to correlate the expression of CD8 mRNA and CD8 protein by flow cytometry.

Mendeley readers

Mendeley readers

The data shown below were compiled from readership statistics for 31 Mendeley readers of this research output. Click here to see the associated Mendeley record.

Geographical breakdown

Country Count As %
Unknown 31 100%

Demographic breakdown

Readers by professional status Count As %
Other 3 10%
Student > Bachelor 3 10%
Student > Ph. D. Student 3 10%
Researcher 3 10%
Student > Master 3 10%
Other 5 16%
Unknown 11 35%
Readers by discipline Count As %
Biochemistry, Genetics and Molecular Biology 6 19%
Engineering 4 13%
Immunology and Microbiology 4 13%
Pharmacology, Toxicology and Pharmaceutical Science 2 6%
Medicine and Dentistry 2 6%
Other 3 10%
Unknown 10 32%