A Real-Time Image-Based Approach to Distinguish and Discriminate Apoptosis from Necrosis

Asha Lekshmi1, Shankara Narayanan Varadarajan1, Santhik Subhasingh Lupitha1

  • 1Cancer Research Program-1, Rajiv Gandhi Centre for Biotechnology, Thiruvananthapuram, Kerala, India.

Insights

This study introduces a novel real-time method to distinguish apoptosis from necrosis using FRET probes and mitochondrial targeting. This assay enables accurate discrimination of cell death pathways crucial for drug discovery and biological research.

Area of Science:

  • Cell Biology
  • Molecular Biology
  • Biotechnology

Background:

  • Apoptosis and necrosis are distinct cell death pathways critical for biological processes and drug discovery.
  • Discriminating between apoptosis and necrosis is challenging due to secondary necrosis in non-phagocytosed apoptotic cells.
  • Existing assays struggle to differentiate apoptosis-inducing from necrosis-inducing stimuli in real-time.

Purpose of the Study:

  • To develop a robust and sensitive real-time method for distinguishing and discriminating apoptosis from necrosis.
  • To create a reliable assay for analyzing cell death pathways in various biological contexts.
  • To provide a protocol for generating sensor cells for advanced cell death analysis.

Main Methods:

  • Utilized a genetically encoded fluorescence resonance energy transfer (FRET) probe for caspase 3/7 activation.
  • Employed mitochondrion-targeted DsRed to identify necrotic cells.
  • Developed sensor cells expressing both probes for real-time kinetic analysis via microscopy and flow cytometry.

Main Results:

  • Caspase activation is detected by FRET probe cleavage, indicating apoptosis.
  • Loss of soluble FRET probe with retained mitochondrial red fluorescence signifies necrosis.
  • The method allows for real-time kinetic discrimination of apoptosis and necrosis.

Conclusions:

  • The described real-time FRET-based assay effectively distinguishes apoptosis from necrosis.
  • This method is valuable for drug discovery and understanding cell death mechanisms.
  • The protocol facilitates high-throughput analysis of apoptosis and necrosis using various imaging techniques.

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