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Published on: June 9, 2017
Induction of apoptotic erythrocyte death by rotenone
Adrian Lupescu1, Kashif Jilani, Mohanad Zbidah
1Department of Physiology, University of Tuebingen, Gmelinstrasse 5, 72076 Tuebingen, Germany. lupescuadrian@gmx.de
Abstract:
The pesticide rotenone stimulates apoptosis and rotenone intoxication has been considered a cause of Parkinson's disease. Rotenone further sensitizes tumor cells to cytotoxic drugs. The apoptotic effect of rotenone is at least partially due to mitochondrial injury. Even though lacking mitochondria and nuclei, erythrocytes may undergo eryptosis, an apoptosis-like suicidal death characterized by cell shrinkage and cell membrane scrambling with phosphatidylserine-exposure at the cell surface. Triggers of eryptosis include increase of cytosolic Ca(2+)-activity ([Ca(2+)](i)) and enhanced ceramide formation. The present study explored, whether rotenone elicits eryptosis. To this end, [Ca(2+)](i) was estimated utilizing Fluo3-fluorescence, cell volume from forward scatter, phosphatidylserine-exposure from annexin-V-binding, ceramide utilizing fluorescence antibodies and hemolysis from hemoglobin release. A 48 h exposure to rotenone significantly increased Fluo3-fluorescence(i) (≥1 μM), increased ceramide abundance (10 μM), decreased forward scatter (≥2.5 μM) and increased annexin-V-binding (≥ 1 μM). Rotenone exposure was further followed by slight but significant hemolysis. Rotenone-induced cell membrane scrambling was significantly blunted, but not completely abrogated by removal of extracellular Ca(2+). The present observations disclose a novel effect of rotenone, i.e. triggering of erythrocyte shrinkage and cell membrane scrambling, an effect paralleled by and partially dependent on Ca(2+)-entry.
Insights
The pesticide rotenone triggers suicidal erythrocyte death (eryptosis), characterized by cell shrinkage and membrane scrambling. This effect is partly dependent on calcium influx, offering new insights into rotenone
Area of Science:
- Toxicology
- Cell Biology
- Hematology
Background:
- Rotenone, a pesticide, induces apoptosis and is linked to Parkinson's disease.
- Eryptosis, an apoptosis-like death in erythrocytes, involves cell shrinkage and phosphatidylserine exposure.
- Increased cytosolic calcium and ceramide are key eryptosis triggers.
Purpose of the Study:
- To investigate whether rotenone induces eryptosis in erythrocytes.
- To explore the role of calcium and ceramide in rotenone-induced eryptosis.
Main Methods:
- Erythrocytes were exposed to rotenone for 48 hours.
- Measurements included cytosolic calcium (Fluo3-fluorescence), cell volume (forward scatter), phosphatidylserine exposure (annexin-V binding), ceramide levels, and hemolysis.
- Experiments were conducted with and without extracellular calcium.
Main Results:
- Rotenone exposure increased cytosolic calcium and ceramide levels.
- Rotenone induced cell shrinkage and phosphatidylserine exposure in erythrocytes.
- These eryptosis markers were partially dependent on extracellular calcium, with some hemolysis observed.
Conclusions:
- Rotenone triggers a novel eryptosis pathway in erythrocytes.
- Calcium influx plays a significant role in rotenone-induced eryptosis.
- This finding contributes to understanding rotenone toxicity beyond its known effects.
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