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Published on: December 1, 2016
CDKN2A-p53 mediated antitumor effect of Lupeol in head and neck cancer
Sayantan Bhattacharyya1, Vasanthakumar Sekar2, Biswanath Majumder2
1Department of Signal Transduction and Biogenic Amines, Chittaranjan National Cancer Institute, 37, S. P. Mukherjee Road, Kolkata, 700026, India.
Purpose:
The tumor suppressor protein p53 is known to control cell cycle arrest and apoptosis. Lupeol is a phytochemical that has been found to induce apoptosis in different cancer types through the extrinsic pathway. As yet, however, its role in the induction of cell cycle arrest and apoptosis through the intrinsic pathway in head and neck cancer has not been investigated. Here, we aimed at understanding the mechanism underlying the antitumor effect of Lupeol in head and neck cancer.
Methods:
The antitumor effect of Lupeol on oral and laryngeal carcinomas was assessed using two in vitro 2D cell line models (HEp-2, UPCI:SCC-131) and, subsequently, an ex vivo 3D tumor explant culture platform that maintains key features of the native tumor microenvironment. The mechanism underlying Lupeol-mediated antitumor responses was delineated using MTT, colony formation, flow cytometry, immunofluorescence, Western blotting and immunohistochemistry assays.
Results:
We found that Lupeol induced an enhanced expression of p53 in both cell line models tested and, subsequently, cell cycle arrest at the G1 phase. In addition we found that, following Lupeol treatment, p53 induced Bax expression and activated the intrinsic apoptotic pathway (as measured by Caspase-3 cleavage). Interestingly, Lupeol was also found to trigger G1 cell cycle arrest through up-regulation of the expression of CDKN2A, but not p21, resulting in inhibition of CyclinD1. In an ex vivo platform Lupeol was found to impart a potent antitumor response as defined by inhibition of Ki67 expression, decreased cell viability and concomitant activation (cleavage) of Caspase-3. Finally, we found that Lupeol can re-sensitize primary head and neck squamous cell carcinoma (HNSCC) tumor samples that had clinically progressed under a Cisplatin treatment regimen.
Conclusion:
Together, our data indicate that Lupeol may orchestrate a bifurcated regulation of neoplastic growth and apoptosis in head and neck cancers and may serve as a promising agent for the management of tumors that have progressed on a platinum-based treatment regimen.
Insights
Lupeol, a phytochemical, induces cell cycle arrest and apoptosis in head and neck cancers by activating the p53 intrinsic pathway. It also re-sensitizes cisplatin-resistant tumors, showing potential for cancer treatment.
Area of Science:
- Oncology
- Molecular Biology
- Pharmacology
Background:
- The tumor suppressor protein p53 regulates cell cycle arrest and apoptosis.
- Lupeol, a phytochemical, induces apoptosis via the extrinsic pathway in various cancers.
- The role of lupeol in inducing cell cycle arrest and apoptosis via the intrinsic pathway in head and neck cancer remains unexplored.
Purpose of the Study:
- To investigate the mechanism of lupeol's antitumor effect in head and neck cancer.
- To elucidate lupeol's role in inducing cell cycle arrest and apoptosis through the intrinsic pathway.
- To understand lupeol's potential in managing platinum-resistant head and neck tumors.
Main Methods:
- In vitro 2D cell line models (HEp-2, UPCI:SCC-131) and an ex vivo 3D tumor explant platform were used.
- Assays included MTT, colony formation, flow cytometry, immunofluorescence, Western blotting, and immunohistochemistry.
- The study assessed lupeol's effect on p53 expression, cell cycle progression, apoptosis markers, and tumor microenvironment features.
Main Results:
- Lupeol enhanced p53 expression, inducing G1 cell cycle arrest and activating the intrinsic apoptotic pathway via Bax and Caspase-3 cleavage.
- Lupeol triggered G1 arrest by upregulating CDKN2A, inhibiting CyclinD1, and did not affect p21.
- Ex vivo, lupeol inhibited proliferation (Ki67), reduced viability, and activated Caspase-3, re-sensitizing cisplatin-resistant HNSCC.
Conclusions:
- Lupeol orchestrates a dual regulation of neoplastic growth and apoptosis in head and neck cancers.
- Lupeol shows promise as a therapeutic agent for platinum-resistant head and neck tumors.
- The findings suggest lupeol's potential in managing advanced or treatment-resistant head and neck squamous cell carcinoma.
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