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Published on: April 22, 2019
Exploiting Vitamin D Receptor and Its Ligands to Target Squamous Cell Carcinomas of the Head and Neck
Laura Koll1, Désirée Gül1, Manal I Elnouaem2
1Department of Otorhinolaryngology Head and Neck Surgery, Molecular and Cellular Oncology, University Medical Center, 55131 Mainz, Germany.
Abstract:
Vitamin D (VitD) and its receptor (VDR) have been intensively investigated in many cancers. As knowledge for head and neck cancer (HNC) is limited, we investigated the (pre)clinical and therapeutic relevance of the VDR/VitD-axis. We found that VDR was differentially expressed in HNC tumors, correlating to the patients' clinical parameters. Poorly differentiated tumors showed high VDR and Ki67 expression, whereas the VDR and Ki67 levels decreased from moderate to well-differentiated tumors. The VitD serum levels were lowest in patients with poorly differentiated cancers (4.1 ± 0.5 ng/mL), increasing from moderate (7.3 ± 4.3 ng/mL) to well-differentiated (13.2 ± 3.4 ng/mL) tumors. Notably, females showed higher VitD insufficiency compared to males, correlating with poor differentiation of the tumor. To mechanistically uncover VDR/VitD's pathophysiological relevance, we demonstrated that VitD induced VDR nuclear-translocation (VitD < 100 nM) in HNC cells. RNA sequencing and heat map analysis showed that various nuclear receptors were differentially expressed in cisplatin-resistant versus sensitive HNC cells including VDR and the VDR interaction partner retinoic acid receptor (RXR). However, RXR expression was not significantly correlated with the clinical parameters, and cotreatment with its ligand, retinoic acid, did not enhance the killing by cisplatin. Moreover, the Chou-Talalay algorithm uncovered that VitD/cisplatin combinations synergistically killed tumor cells (VitD < 100 nM) and also inhibited the PI3K/Akt/mTOR pathway. Importantly, these findings were confirmed in 3D-tumor-spheroid models mimicking the patients' tumor microarchitecture. Here, VitD already affected the 3D-tumor-spheroid formation, which was not seen in the 2D-cultures. We conclude that novel VDR/VitD-targeted drug combinations and nuclear receptors should also be intensely explored for HNC. Gender-specific VDR/VitD-effects may be correlated to socioeconomic differences and need to be considered during VitD (supplementation)-therapies.
Insights
Vitamin D (VitD) and its receptor (VDR) show potential in head and neck cancer (HNC) therapy. VitD combined with cisplatin synergistically kills HNC cells by inhibiting key pathways, offering new therapeutic avenues.
Area of Science:
- Oncology
- Endocrinology
- Molecular Biology
Background:
- Limited understanding of Vitamin D (VitD) and its receptor (VDR) in head and neck cancer (HNC).
- VDR expression and VitD levels correlate with HNC differentiation and patient parameters.
Purpose of the Study:
- Investigate the clinical and therapeutic relevance of the VDR/VitD-axis in HNC.
- Explore the synergistic potential of VitD and cisplatin in HNC treatment.
Main Methods:
- Analysis of VDR expression and VitD serum levels in HNC patients.
- In vitro studies on HNC cells, including nuclear translocation assays and RNA sequencing.
- Combination therapy evaluation using Chou-Talalay algorithm and 3D-tumor-spheroid models.
Main Results:
- VDR and Ki67 expression inversely correlated with tumor differentiation; lower VitD levels in poorly differentiated tumors.
- VitD induced VDR nuclear translocation in HNC cells.
- VitD and cisplatin demonstrated synergistic anti-cancer effects, inhibiting the PI3K/Akt/mTOR pathway, confirmed in 3D models.
Conclusions:
- The VDR/VitD-axis is a promising therapeutic target for HNC.
- Combination therapies involving VitD and cisplatin warrant further investigation for HNC treatment.
- Gender-specific VitD effects and socioeconomic factors require consideration in VitD supplementation therapies for HNC.
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