The effect of paclitaxel on apoptosis, autophagy and mitotic catastrophe in AGS cells
Tin Myo Khing, Won Seok Choi, Dong Min Kim, Wah Wah Po, Wynn Thein, Chang Yell Shin, Uy Dong Sohn

TL;DR
This study shows how paclitaxel causes cell death in AGS gastric cancer cells through mitotic catastrophe, autophagy, and apoptosis.
Contribution
The paper identifies mitotic catastrophe as a key mechanism of paclitaxel-induced cell death in AGS cells, alongside apoptosis and autophagy.
Findings
Paclitaxel activates intrinsic apoptosis via caspase-3, caspase-9, and PARP in AGS cells.
Paclitaxel induces autophagy, as shown by increased LC3B-II, Atg5, and Beclin-1 levels.
Paclitaxel causes mitotic catastrophe and G2/M phase arrest, leading to cell death within 48 hours.
Abstract
Paclitaxel is an anti-microtubule agent that has been shown to induce cell death in gastric cancer. However, the detailed mechanism of action is unclear. In this study, we reveal that the paclitaxel-induced cell death mechanism involves mitotic catastrophe, autophagy and apoptosis in AGS cells. Paclitaxel induced intrinsic apoptosis by activating caspase-3, caspase-9 and PARP. In addition, the significant increase in autophagy marker LC3B-II, together with Atg5, class III PI3K and Beclin-1, and the down-regulation of p62 following paclitaxel treatment verified that paclitaxel induced autophagy. Further experiments showed that paclitaxel caused mitotic catastrophe, cell cycle arrest of the accumulated multinucleated giant cells at the G2/M phase and induction of cell death in 24 h. Within 48 h, the arrested multinucleated cells escaped mitosis by decreasing cell division regulatory…
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Taxonomy
TopicsAutophagy in Disease and Therapy · Cell death mechanisms and regulation · Cancer-related Molecular Pathways
