Apoptosis and autophagy after mitochondrial or endoplasmic reticulum photodamage

David Kessel1, John J Reiners

  • 1Department of Pharmacology, Institute of Environmental Health Sciences, Wayne State University School of Medicine, Detroit, MI, USA. dhkessel@med.wayne.edu

Insights

Autophagy protects cells from low-dose photodynamic therapy (PDT) by recycling damaged components. However, at higher PDT doses, autophagy can become a cell death mechanism, impacting survival.

Area of Science:

  • Cellular biology
  • Photochemistry

Background:

  • Photodynamic therapy (PDT) induces cell death through direct and indirect mechanisms.
  • Cell death pathways include apoptosis and autophagy, regulated by proteins like Bcl-2.

Purpose of the Study:

  • To investigate the differential roles of apoptosis and autophagy in response to varying PDT doses.
  • To compare the effects of PDT sensitizers localizing in the endoplasmic reticulum versus mitochondria.

Main Methods:

  • Utilized murine L1210 leukemia cells and an Atg7 knockdown derivative to study autophagy.
  • Administered low-dose and high-dose PDT using CPO (endoplasmic reticulum) and mesochlorin (mitochondria) sensitizers.
  • Assessed cell viability, apoptosis, autophagy markers, Bcl-2 protein levels, and colony formation.

Main Results:

  • High-dose PDT significantly reduced Bcl-2 protein in both cell lines.
  • Low-dose PDT induced apoptosis in Atg7-deficient cells (20% viability loss) but autophagy in wild-type cells (5% viability loss).
  • Higher PDT doses led to comparable cytotoxicity across both cell lines, suggesting autophagy's role shifts with dose.

Conclusions:

  • Autophagy acts as a pro-survival mechanism against low-dose PDT by enabling organelle recycling.
  • Autophagy can switch to a pro-death pathway at elevated PDT doses.
  • Bcl-2 protein levels are critical in determining the cell's response to PDT-induced stress.

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