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Visualizing Mitophagy with Fluorescent Dyes for Mitochondria and Lysosome
Published on: November 30, 2022
Apoptosis and autophagy after mitochondrial or endoplasmic reticulum photodamage
1Department of Pharmacology, Institute of Environmental Health Sciences, Wayne State University School of Medicine, Detroit, MI, USA. dhkessel@med.wayne.edu
Abstract:
Photodynamic therapy (PDT) can cause lethal photodamage by both direct and indirect mechanisms. Direct modes of cell death relate to nonspecific necrosis and the initiation of signaling pathways that elicit apoptosis, autophagy or both. In this report, effects of low-dose and high-dose PDT are explored, comparing sensitizers that localize in the endoplasmic reticulum (the porphycene termed CPO) or mitochondria (mesochlorin). To explore the role of autophagy, two cell lines were examined--the murine L1210 leukemia and an Atg7 knockdown derivative of L1210. The Atg7 gene is central to the process of autophagy. High-dose PDT with either sensitizer resulted in a substantial loss of the Bcl-2 protein. As Bcl-2 regulates both apoptosis and autophagy, loss of this protein can lead to initiation of either or both processes. Low-dose PDT with either sensitizer resulted in the initiation of apoptosis in the L1210/Atg7- cell line and a 20% loss of viability. In contrast, the same PDT dose led to the rapid appearance of autophagic cells in the L1210 line, less apoptosis and only a 5% loss of viability. These results are consistent with autophagy serving as a pro-survival response via the recycling of damaged organelles. At a higher PDT dose more apoptosis was again seen in the L1210/Atg7- line, but both cell lines exhibited comparable cytotoxicity in colony formation assays. We conclude that autophagy offers protection from the phototoxic effects of low-dose PDT, but can serve as an alternate death mode when the PDT dose is increased.
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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