Quantitative assessment of cardiac myocyte apoptosis in tissue sections using the fluorescence-based tunel technique

T M Scarabelli1, R A Knight, N B Rayment

  • 1The Hatter Institute, UCL Hospitals and Medical School, London, UK.

Insights

This study introduces a new method to quantify apoptosis, or programmed cell death, in specific cell types within tissue sections. The technique combines TUNEL staining with propidium iodide and anti-desmin antibody, enabling precise measurement of cell death in cardiac myocytes and vascular cells after ischemia-reperfusion injury.

Area of Science:

  • Cardiovascular Biology
  • Cell Death Research
  • Histopathology Techniques

Background:

  • Apoptosis, or programmed cell death, is a critical process implicated in various pathologies, including ischemia/reperfusion injury.
  • Terminal deoxynucleotidyl transferase mediated nick end labelling (TUNEL) staining is a common method to detect apoptosis by identifying DNA strand breaks.
  • Standard TUNEL staining is qualitative and lacks the ability to quantify apoptosis proportions or identify specific cell types undergoing cell death.

Purpose of the Study:

  • To develop and evaluate a quantitative method for assessing apoptosis in specific cell types within tissue sections.
  • To adapt the TUNEL assay for quantitative analysis by incorporating counterstaining and cell-specific markers.

Main Methods:

  • A novel protocol combining TUNEL staining with propidium iodide (PI) counterstaining and anti-desmin antibody labeling was developed.
  • The method was tested on rat heart tissue sections subjected to ischemia and reperfusion.
  • Confocal fluorescent microscopy was used to visualize and quantify TUNEL-positive cells in cardiac myocytes and non-myocytes.

Main Results:

  • Apoptosis was not observed in control or ischemia-only groups.
  • In ischemic-reperfused hearts, significant increases in TUNEL-positive cells were detected in vascular cells (44±5%) and cardiac myocytes (6±2%).
  • The combined staining method successfully quantified apoptosis in distinct cell populations.

Conclusions:

  • The developed method provides a simple and effective means for quantitative assessment of apoptosis in specific cell types, such as myocytes and vascular cells, in tissue sections.
  • This technique enhances the diagnostic and research utility of TUNEL staining for studying cell death in various tissues.
  • Adaptability with alternative immunohistochemical markers allows for broad application in diverse research areas.

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