Spatial immunophenotyping of FFPE tissues by imaging mass cytometry
Carolina Mangana1, Barbara B Maier1
1CeMM Research Center for Molecular Medicine of the Austrian Academy of Sciences, Vienna, Austria.
Insights
Imaging mass cytometry (IMC) enables detailed analysis of immune cell localization in formalin-fixed, paraffin-embedded (FFPE) tissues. This protocol enhances understanding of immune responses and therapeutic interventions by visualizing up to 40 targets simultaneously.
Area of Science:
- Immunology
- Biotechnology
- Pathology
Background:
- Tissue immune microenvironments are dynamic and crucial for response outcomes.
- Immune cell localization, not just composition, dictates response.
- Conventional methods like immunohistochemistry (IHC) have limitations in multiplexing.
Purpose of the Study:
- To present a protocol for immunophenotyping formalin-fixed, paraffin-embedded (FFPE) tissues using imaging mass cytometry (IMC).
- To overcome the target number limitations of traditional imaging techniques.
- To facilitate the characterization of immune niches and their alterations.
Main Methods:
- Developed a protocol for IMC-based immunophenotyping of FFPE tissues.
- Included detailed staining procedures and an example murine antibody panel.
- Provided suggestions for initial image analysis.
Main Results:
- IMC allows simultaneous detection of up to 40 targets with 1-μm resolution.
- The protocol is applicable to FFPE tissues, including clinically relevant samples.
- Demonstrated a workflow for characterizing immune niches.
Conclusions:
- The presented IMC protocol offers a powerful method for detailed immune cell analysis in FFPE tissues.
- This approach enhances the study of immune responses, disease progression, and therapeutic interventions.
- Facilitates deeper understanding of immune cell interactions within tissue microenvironments.
Abstract:
The immune compartment of a tissue is dynamic, changing to respond to infections, tumors, or therapeutic interventions. Within tissues, local microenvironments provide interaction partners and cytokines that can gear immune cells into distinct functional states. Thus, it is not just the immune composition of a tissue, but also the relative localization of immune cells that determines the outcome of a response. Conventional techniques like immunohistochemistry (IHC) have been used to describe infiltration of immune cells and their relative position within tissues. However, these technologies are limited on the number of targets that can be simultaneously imaged. Here, we describe a simple protocol using imaging mass cytometry (IMC) for immunophenotyping formalin-fixed, paraffin-embedded (FFPE) tissues. IMC has a 1-μm resolution and allows simultaneous detection of up to 40 targets, overcoming limitations of traditional methods. In this protocol, we detail the staining procedure, offer an example of a murine FFPE antibody panel for immunophenotyping, and additionally provide suggestions for initial image analysis. The herein presented workflow facilitates the characterization of immune niches and can be used to assess their alterations throughout immune responses or therapeutic interventions. With minimal alterations, this approach can be used on clinically relevant samples or animal models to investigate specific immune responses and better understand disease progression or treatment dynamics.
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