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Colchicine induces apoptosis in organotypic hippocampal slice cultures
Bjarne W Kristensen1, Helle Noer, Jan Bert Gramsbergen
1Department of Anatomy and Neurobiology, Institute of Medical Biology, University of Southern Denmark, Winsløwparken 21, DK-5000 C, Odense, Denmark. bkristensen@health.sdu.dk
Abstract:
The microtubule-disrupting agent colchicine is known to be particular toxic for certain types of neurons, including the granule cells of the dentate gyrus. In this study we investigated whether colchicine could induce such neuron-specific degeneration in developing (1 week in vitro) and mature (3 weeks in vitro) organotypic hippocampal slice cultures and whether the induced cell death was apoptotic and/or necrotic. When applied to 1-week-old cultures for 48 h, colchicine induced primarily apoptotic, but also a minor degree of necrotic cell death in the dentate granule cells, as investigated by cellular uptake of the fluorescent dye propidium iodide (PI), immunostaining for active caspase 3 and c-Jun/AP-1 (N) and fragmentation of nuclei as seen in Hoechst 33342 staining. All four markers appeared after 12 h of colchicine exposure. Two of them, active caspase 3 and c-Jun/AP-1 (N) displayed a similar time course and reached a maximum after 24 h of exposure, 24 h ahead of both PI uptake and Hoechst 33342 staining, which together displayed similar time profiles and a close correlation. In 3-week-old cultures, colchicine did not induce apoptotic or necrotic cell death. Attempts to interfere with the colchicine-induced apoptosis in 1-week-old cultures showed that colchicine-induced PI uptake and formation of apoptotic nuclei were temporarily prevented by coapplication of the protein synthesis inhibitor cycloheximide. Application of the pancaspase inhibitor z-VAD-fmk almost completely abolished the formation of active caspase 3 protein and apoptotic nuclei induced by colchicine, but the formation of necrotic nuclei increased correspondingly and the PI uptake was unaffected. We conclude that colchicine induces caspase 3-dependent apoptotic cell death of dentate granule cells in hippocampal brain slice cultures, but the apoptotic cell death is highly dependent on the developmental stage of the cultures.
Insights
Colchicine induces apoptosis in developing dentate granule cells within hippocampal slice cultures. This neuron-specific cell death is caspase-dependent and developmentally regulated, occurring only in younger cultures.
Area of Science:
- Neuroscience
- Cell Biology
- Toxicology
Background:
- Colchicine, a microtubule-disrupting agent, exhibits toxicity towards specific neurons, notably dentate gyrus granule cells.
- Understanding the mechanisms and developmental dependency of colchicine-induced neurodegeneration is crucial.
Purpose of the Study:
- To investigate colchicine's neurotoxic effects on developing and mature organotypic hippocampal slice cultures.
- To determine if colchicine induces apoptotic and/or necrotic cell death in dentate granule cells.
- To elucidate the developmental stage-specific susceptibility to colchicine-induced cell death.
Main Methods:
- Organotypic hippocampal slice cultures (1 and 3 weeks in vitro) were exposed to colchicine.
- Cell death was assessed using propidium iodide (PI) uptake, active caspase 3 and c-Jun/AP-1 immunostaining, and Hoechst 33342 nuclear staining.
- Intervention studies involved co-application of cycloheximide and z-VAD-fmk.
Main Results:
- Colchicine induced primarily apoptotic, with some necrotic, cell death in 1-week-old cultures, evidenced by PI uptake, active caspase 3, c-Jun/AP-1, and nuclear fragmentation.
- Apoptotic markers appeared by 12 hours, peaking around 24 hours.
- No significant cell death was observed in 3-week-old cultures.
- Cycloheximide temporarily inhibited colchicine-induced cell death markers; z-VAD-fmk abolished active caspase 3 and apoptotic nuclei but increased necrosis.
Conclusions:
- Colchicine triggers caspase 3-dependent apoptosis in developing dentate granule cells within hippocampal slice cultures.
- The neurotoxic effect of colchicine is highly dependent on the developmental stage of the neuronal cultures.
- These findings highlight the critical role of developmental timing in neuronal susceptibility to toxic insults.