Manoalide Induces Intrinsic Apoptosis by Oxidative Stress and Mitochondrial Dysfunction in Human Osteosarcoma Cells.
Zhi-Kang YaoYen-Hsuan JeanSung-Chun LinYu-Cheng LaiNan-Fu ChenChung-Chih TsengWu-Fu ChenZhi-Hong WenHsiao-Mei KuoPublished in: Antioxidants (Basel, Switzerland) (2023)
Osteosarcoma (OS) is the most common primary malignant bone tumor that produces immature osteoid. Metastatic OS has a poor prognosis with a death rate of >70%. Manoalide is a natural sesterterpenoid isolated from marine sponges. It is a phospholipase A2 inhibitor with anti-inflammatory, analgesic, and anti-cancer properties. This study aimed to investigate the mechanism and effect of manoalide on OS cells. Our experiments showed that manoalide induced cytotoxicity in 143B and MG63 cells (human osteosarcoma). Treatment with manoalide at concentrations of 10, 20, and 40 µM for 24 and 48 h reduced MG63 cell viability to 45.13-4.40% ( p < 0.01). Meanwhile, manoalide caused reactive oxygen species (ROS) overproduction and disrupted antioxidant proteins, activating the apoptotic proteins caspase-9/-3 and PARP (Poly (ADP-ribose) polymerase). Excessive levels of ROS in the mitochondria affected oxidative phosphorylation, ATP generation, and membrane potential (ΔΨ m ). Additionally, manoalide down-regulated mitochondrial fusion protein and up-regulated mitochondrial fission protein, resulting in mitochondrial fragmentation and impaired function. On the contrary, a pre-treatment with n-acetyl-l-cysteine ameliorated manoalide-induced apoptosis, ROS, and antioxidant proteins in OS cells. Overall, our findings show that manoalide induces oxidative stress, mitochondrial dysfunction, and apoptosis, causing the cell death of OS cells, showing potential as an innovative alternative treatment in human OS.
Keyphrases
- induced apoptosis
- oxidative stress
- cell death
- cell cycle arrest
- endoplasmic reticulum stress
- dna damage
- diabetic rats
- signaling pathway
- reactive oxygen species
- poor prognosis
- anti inflammatory
- endothelial cells
- ischemia reperfusion injury
- long non coding rna
- body mass index
- spinal cord injury
- dna repair
- heat shock
- climate change
- bone mineral density
- functional connectivity
- weight loss
- human health
- combination therapy
- resting state
- drug induced
- amino acid