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siRNA Electroporation to Modulate Autophagy in Herpes Simplex Virus Type 1-Infected Monocyte-Derived Dendritic Cells
Published on: October 28, 2019
Inhibition of autophagy initiation: A novel strategy for oral squamous cell carcinomas
Yomna S Abd El-Aziz1, Matthew J McKay2, Mark P Molloy2
1Northern Clinical School, Faculty of Medicine and Health, University of Sydney, Australia; Kolling Institute of Medical Research, University of Sydney, Australia; Oral Pathology Department, Faculty of Dentistry, Tanta University, Tanta, Egypt.
Background:
Oral squamous cell carcinoma (OSCC) is one of the most common forms of oral cancer and is known to have poor prognostic outcomes. Autophagy is known to be associated with aggressive tumor biology of OSCC. Hence, this study aimed to develop a novel therapeutic strategy against OSCC by targeting the autophagic pathway.
Methods:
Immunoblotting, and confocal microscopy were used to examine the effect of tumor microenvironmental stressors on the autophagy activity. Cellular proliferation and migration assays were performed to assess the anti-cancer activity of standard chemotherapy and autophagy initiation inhibitors, either alone or in combination. High resolution mass-spectrometry based proteomic analysis was utilized to understand the mechanisms behind chemoresistance in OSCC models. Finally, immunohistochemistry was performed to determine associations between autophagy markers and clinicopathological characteristics.
Results:
Tumor microenvironmental stressors were shown to induce autophagy activity in OSCC cell lines. Novel combinations of chemotherapy and autophagy inhibitors as well as different classes of autophagy inhibitors were identified. Combination of MRT68921 and SAR405 demonstrated marked synergy in their anti-proliferative activity and also showed synergy with chemotherapy in chemoresistant OSCC cell models. Autophagy was identified as one of the key pathways involved in mediating chemoresistance in OSCC. Furthermore, TGM2 was identified as a key upstream regulator of chemoresistance in OSCC models. Finally, positive staining for autophagosome marker LC3 was shown to be associated with low histological grade OSCC.
Conclusion:
In conclusion, this study identified a combination of novel autophagy inhibitors which can potently inhibit proliferation of both chemosensitive as well as chemoresistant OSCC cells and could be developed as a novel therapy against advanced OSCC tumors.
Insights
This study explored targeting autophagy to treat oral squamous cell carcinoma (OSCC). Combining novel autophagy inhibitors with chemotherapy shows promise against chemoresistant OSCC, offering a new therapeutic strategy.
Area of Science:
- Oncology
- Cell Biology
- Cancer Therapeutics
Background:
- Oral squamous cell carcinoma (OSCC) presents poor prognostic outcomes.
- Autophagy is linked to aggressive tumor biology in OSCC.
- Targeting the autophagic pathway offers a novel therapeutic strategy for OSCC.
Purpose of the Study:
- To develop a novel therapeutic strategy against OSCC by targeting the autophagic pathway.
- To investigate the role of autophagy in chemoresistance of OSCC.
- To identify effective combinations of autophagy inhibitors and chemotherapy for OSCC treatment.
Main Methods:
- Examined autophagy activity under tumor microenvironmental stressors using immunoblotting and confocal microscopy.
- Assessed anti-cancer effects of chemotherapy and autophagy inhibitors via proliferation and migration assays.
- Utilized mass spectrometry proteomics to elucidate chemoresistance mechanisms and immunohistochemistry for autophagy marker correlation.
Main Results:
- Tumor microenvironmental stressors induce autophagy in OSCC cell lines.
- Synergistic anti-proliferative activity observed with MRT68921 and SAR405, and in combination with chemotherapy in chemoresistant models.
- Autophagy identified as a key mediator of chemoresistance, with TGM2 as an upstream regulator; LC3 staining correlated with low-grade OSCC.
Conclusions:
- Identified novel autophagy inhibitor combinations that potently inhibit OSCC cell proliferation.
- These combinations demonstrate efficacy against both chemosensitive and chemoresistant OSCC.
- The findings support the development of these combinations as a novel therapy for advanced OSCC.
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