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Updated: Jan 23, 2026

Activation of Apoptosis by Cytoplasmic Microinjection of Cytochrome c
Published on: June 29, 2011
Chemical modulation of apoptosis in molluscan cell cultures
Andrey Victorovich Boroda1, Yulia Olegovna Kipryushina2,3, Nelly Adolphovna Odintsova2,3
1National Scientific Center of Marine Biology of the Far Eastern Branch of the Russian Academy of Sciences, 17 Palchevsky St, Vladivostok, Primorsky krai, 690041, Russia. avboroda@imb.dvo.ru.
Abstract:
This study focused on the alterations that occur in larval molluscan cells after administration of apoptotic inducers and inhibitors used in mammalian cells in response to cold stress. This is the first report on apoptosis modulation in molluscan cells assessed by flow cytometry. Mitochondrial activity, general caspase activation, and membrane integrity of control molluscan cells were compared to those processes in frozen-thawed molluscan cells, primary mouse embryonic fibroblasts, and human colon tumor cells prior to treatment and after incubation with apoptotic inducers or inhibitors. We tested three apoptotic inducers (staurosporine, camptothecin, and mitomycin C, routinely used for the chemical induction of apoptosis in different mammalian cells) and found that only staurosporine resulted in an evident apoptotic increase in molluscan cell cultures: 9.06% early apoptotic cells in comparison with 5.63% in control frozen-thawed cells and 20.6% late apoptotic cells in comparison with 10.68% in controls. Camptothecin did not significantly induce molluscan cell apoptosis but did cause a slight increase in the number of active cells after thawing. Mitomycin C produced similar results, but its effect was less pronounced. In addition, we hypothesize that the use of the apoptotic inhibitors could reduce apoptosis, which is significant after cryopreservation in molluscan cells; however, our attempts failed. Development in this direction is important for understanding the mechanisms of marine organisms' cold susceptibility.
Insights
This study explored apoptosis in molluscan cells under cold stress, finding staurosporine effectively induced apoptosis. Apoptotic inhibitors were ineffective, highlighting challenges in marine organism cryopreservation.
Area of Science:
- Cell Biology
- Cryobiology
- Marine Biology
Background:
- Apoptosis modulation is crucial for understanding cellular responses to environmental stress.
- Cryopreservation of marine organisms like mollusks presents challenges due to cellular damage.
- Mammalian apoptotic inducers and inhibitors offer potential tools for studying molluscan cell death.
Purpose of the Study:
- To investigate apoptosis induction and inhibition in larval molluscan cells under cold stress.
- To assess the efficacy of mammalian apoptotic agents in molluscan cell cultures.
- To evaluate flow cytometry as a method for assessing apoptosis in mollusks.
Main Methods:
- Larval molluscan cells were subjected to cold stress and cryopreservation.
- Apoptotic inducers (staurosporine, camptothecin, mitomycin C) and inhibitors were administered.
- Flow cytometry was used to analyze mitochondrial activity, caspase activation, and membrane integrity.
Main Results:
- Staurosporine significantly increased early (9.06%) and late (20.6%) apoptotic molluscan cells compared to controls (5.63% and 10.68%).
- Camptothecin and mitomycin C showed minimal or no significant induction of apoptosis in molluscan cells.
- Apoptotic inhibitors failed to reduce apoptosis in cryopreserved molluscan cells.
Conclusions:
- Staurosporine is an effective inducer of apoptosis in molluscan cells.
- Current mammalian apoptotic inducers and inhibitors have limited applicability in molluscan cryopreservation.
- Further research is needed to understand and mitigate cold stress-induced apoptosis in marine organisms.
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