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Flow Cytometric Detection of Newly-formed Breast Cancer Stem Cell-like Cells After Apoptosis Reversal
Published on: January 26, 2019
Silibinin-induced apoptosis of breast cancer cells involves mitochondrial impairment
Lingling Si1, Weiwei Liu1, Toshihiko Hayashi2
1Wuya College of Innovation, Shenyang Pharmaceutical University, Shenyang 110016, Liaoning, PR China.
Abstract:
Mitochondria are dynamically regulated by fission and fusion processes. Silibinin induces apoptosis of MCF-7 and MDA-MB-231 human breast cancer cells. However, whether or not mitochondria dysfunction is involved in the apoptosis induction with silibinin of both types of the cells remains unknown. We here report that silibinin decreases the mitochondrial mass in terms of MitoTracker Green staining in both breast cancer cells. Silibinin induces morphological changes of mitochondria from oval to truncated or fragmented shapes accordingly. Condensed crests are observed in mitochondria by transmission electron microscopy. Silibinin causes mitochondrial membrane potential reduced. The expression of mitochondrial fission-associated proteins including dynamin-related protein 1 (DRP1) is up-regulated, whereas expression of the mitochondrial fusion-associated proteins, optic atrophy 1 and mitofusin 1, is down-regulated. In addition, silibinin treatment down-regulates ATP content as well as the levels of mitochondrial biogenesis-regulators including mitochondrial transcription factor A, peroxisome proliferator-activated receptor gamma coactivator 1 and nuclear respiratory factor 2. Moreover, treatments with DRP1 inhibitor, mdivi-1, or with DRP1-targetted siRNA efficiently prevent silibinin-induced apoptosis in the breast cancer cells, whereas inhibition of DRP1 phosphorylation with staurosporine increases apoptosis furthermore. Taken together, we conclude that silibinin impairs mitochondrial dynamics and biogenesis, leading to apoptosis of MCF-7 and MDA-MB-123 cells.
Insights
Silibinin induces breast cancer cell death by disrupting mitochondrial dynamics and biogenesis. This natural compound impairs mitochondria function, leading to apoptosis in cancer cells.
Area of Science:
- Cell Biology
- Cancer Research
- Mitochondrial Biology
Background:
- Mitochondria are crucial for cell function and are regulated by fission and fusion.
- Silibinin is known to induce apoptosis in human breast cancer cells (MCF-7 and MDA-MB-231).
- The role of mitochondrial dysfunction in silibinin-induced apoptosis remains unclear.
Purpose of the Study:
- To investigate the impact of silibinin on mitochondrial dynamics and biogenesis in breast cancer cells.
- To determine if mitochondrial dysfunction mediates silibinin-induced apoptosis.
Main Methods:
- Mitochondrial mass assessed by MitoTracker Green staining.
- Mitochondrial morphology analyzed via transmission electron microscopy.
- Expression levels of fission/fusion proteins (DRP1, OPA1, MFN1) and biogenesis regulators measured.
- Mitochondrial membrane potential and ATP content quantified.
- Effect of DRP1 inhibition (mdivi-1, siRNA) and phosphorylation modulation on apoptosis evaluated.
Main Results:
- Silibinin decreased mitochondrial mass and altered mitochondrial morphology.
- Reduced mitochondrial membrane potential and ATP content observed.
- Upregulation of fission protein DRP1 and downregulation of fusion proteins OPA1 and MFN1.
- Inhibition of DRP1 prevented silibinin-induced apoptosis, while enhanced phosphorylation increased it.
Conclusions:
- Silibinin impairs mitochondrial dynamics and biogenesis in breast cancer cells.
- Mitochondrial dysfunction is a key mechanism in silibinin-induced apoptosis.
- Targeting mitochondrial dynamics may offer therapeutic strategies for breast cancer.
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