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Molecular mechanisms of cholangiocarcinoma cell inhibition by medicinal plants
Surang Leelawat1, Kawin Leelawat2
1Faculty of Pharmacy, Rangsit University, Amphoe Mueang, Pathum Thani 12000, Thailand.
Abstract:
Cholangiocarcinoma (CCA) is one of the most common causes of cancer-associated mortality in Thailand. Certain phytochemicals have been demonstrated to modulate apoptotic signaling pathways, which may be targeted for the prevention and treatment of cancer. Therefore, the aim of the present study was to investigate the effect of specific medicinal plants on the inhibition of CCA cell proliferation, and to identify the molecular mechanisms underlying this. A WST-1 cell proliferation assay was performed using an RMCCA1 cell line, and apoptotic signaling pathways were also investigated using a PathScan Stress and Apoptosis Signaling Antibody Array Kit. The cell proliferation assay indicated that extracts from the Phyllanthus emblica fruit pulp (PEf), Phyllanthus emblica seed (PEs), Terminalia chebula fruit pulp (TCf), Terminalia chebula seed (TCs), Areca catechu seed (ACs), Curcuma longa (CL) and Moringa oleifera seed (MOs) exerted anti-proliferative activity in RMCCA1 cells. In addition, the PathScan assay revealed that certain pro-apoptotic molecules, including caspase-3, poly (ADP-ribose) polymerase, checkpoint kinase 2 and tumor protein 53, exhibited increased activity in RMCCA1 cells treated with the aforementioned selected plant extracts, with the exception of PEf. The mitogen-activated protein kinase (MAPK) pathways (including ERK1/2 and p38 MAPK) expression level was significantly increased in RMCCA1 cells pre-treated with extracts of PEs, TCf, CL and MOs. The activation of protein kinase B (Akt) was significantly demonstrated in RMCCA1 cells pre-treated with extracts of TCf, ACs and MOs. In summary, the present study demonstrated that extracts of PEs, TCf, TCs, ACs, CL and MOs exhibited anti-proliferative effects in CCA cells by inducing pro-apoptotic signals and modulating signal transduction molecules. Further studies in vivo are required to demonstrate the potential applications of specific plant extracts for the treatment of human cancer.
Insights
Certain medicinal plant extracts show anti-cancer properties against cholangiocarcinoma (CCA) by promoting apoptosis and modulating key signaling pathways. Further research is needed to explore their therapeutic potential in vivo.
Area of Science:
- Phytochemistry
- Molecular Biology
- Cancer Research
Background:
- Cholangiocarcinoma (CCA) is a significant cause of cancer mortality in Thailand.
- Phytochemicals offer potential for cancer prevention and treatment by modulating apoptotic signaling.
- Understanding the molecular mechanisms of plant-based anti-cancer agents is crucial.
Purpose of the Study:
- To investigate the anti-proliferative effects of specific medicinal plant extracts on CCA cells.
- To identify the molecular mechanisms underlying the anti-proliferative activity, focusing on apoptosis and signaling pathways.
- To evaluate the potential of these natural compounds for CCA treatment.
Main Methods:
- Utilized a WST-1 cell proliferation assay with the RMCCA1 cell line.
- Employed a PathScan Stress and Apoptosis Signaling Antibody Array Kit to analyze apoptotic signaling pathways.
- Tested extracts from *Phyllanthus emblica* (fruit pulp and seed), *Terminalia chebula* (fruit pulp and seed), *Areca catechu* (seed), *Curcuma longa*, and *Moringa oleifera* (seed).
Main Results:
- Selected plant extracts (PEs, TCf, TCs, ACs, CL, MOs) demonstrated significant anti-proliferative activity against RMCCA1 cells.
- Treatment with these extracts increased the activity of pro-apoptotic molecules like caspase-3 and p53.
- Modulation of MAPK (ERK1/2, p38) and Akt signaling pathways was observed with specific extracts.
Conclusions:
- Extracts from *Terminalia chebula* seed (TCs), *Areca catechu* seed (ACs), *Curcuma longa* (CL), and *Moringa oleifera* seed (MOs) exhibit anti-proliferative effects on CCA cells.
- These effects are mediated through the induction of pro-apoptotic signals and modulation of key signal transduction pathways.
- Further *in vivo* studies are warranted to validate the therapeutic potential of these plant extracts for human cancer treatment.
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