Single Cell Analysis of High-Parameter Histology Images Using Histoflow Cytometry

Rajiv W Jain1,2, David A Elliott1, V Wee Yong1,2

  • 1Hotchkiss Brain Institute, University of Calgary, Calgary, Alberta, Canada.

Insights

Histoflow cytometry combines imaging and flow cytometry to analyze immune cells in tissues. This technique allows for precise spatial mapping and quantification of immune cell subsets within tissues, overcoming limitations of traditional methods.

Area of Science:

  • Immunology
  • Cell Biology
  • Microscopy

Background:

  • Immunofluorescence histology is limited to four or fewer fluorescence parameters, hindering precise immune cell subset analysis in tissues.
  • Flow cytometry offers high precision but dissociates tissues, losing crucial spatial information.
  • A gap exists between high-parameter flow cytometry and spatial information-preserving histology.

Purpose of the Study:

  • To develop a workflow bridging the gap between immunofluorescence histology and flow cytometry.
  • To expand the number of fluorescence parameters for imaging immune cells in tissues.
  • To enable quantitative cytometry and spatial localization of histological analyses.

Main Methods:

  • Developed a histoflow cytometry workflow for widely available microscopes.
  • Instituted a method for single-cell identification and data export for flow cytometry analysis.
  • Successfully separated spectrally overlapping dyes and mapped flow cytometry-gated populations back to tissue.

Main Results:

  • Histoflow cytometry identified similar numbers of cells as manual counts and separated spectrally overlapping dyes.
  • Applied to experimental autoimmune encephalomyelitis, it revealed increased frequencies of B cells, T cells, neutrophils, and phagocytes in the CNS.
  • Spatial analysis showed preferential localization of B cells to CNS barriers and T cells/phagocytes to the parenchyma.

Conclusions:

  • Histoflow cytometry expands fluorescent channels beyond conventional immunofluorescence.
  • This technique enables quantitative cytometry and spatial localization of immune cells within tissue context.
  • Histoflow cytometry provides insights into immune cell interactions and localization in disease models.