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Natural Compounds Modulate Drug Transporter Mediated Oral Cancer Treatment
Hsiang Yang1, Yu-Ching Wei2, Wan-Chun Li3,4
1Department of Dentistry, National Taiwan University Hospital, College of Medicine, National Taiwan University, Taipei 100229, Taiwan.
Abstract:
Oral cancer (OC) is a serious health problem. Surgery is the best method to treat the disease but might reduce the quality of life of patients. Photodynamic therapy (PDT) may enhance quality of life but with some limitations. Therefore, the development of a new strategy to facilitate PDT effectiveness has become crucial. ATP-binding cassette G2 (ABCG2) is a membrane protein-associated drug resistance and stemness in cancers. Here, we examined whether ABCG2 plays an important role in regulating the treatment efficacy of PDT and whether ABCG2 inhibition by natural compounds can promote the effect of PDT in OC cells. Several head and neck cancer cells were utilized in this study. OECM1 and SAS cells were selected to investigate the relationship between ABCG2 expression and protoporphyrin IX (PpIX) accumulation. Western blot analysis, flow cytometry analysis, and survival probability were performed to determine PDT efficacy and cellular stemness upon treatment of different dietary compounds, including epigallocatechin gallate (EGCG) and curcumin. In this study, we found that ABCG2 expression varied in OC cells. Hypoglycemic culture for SAS cells enhanced ABCG2 expression as higher ABCG2 expression was associated with lower PpIX accumulation and cellular stemness in OC cells. In contrast, suppression of ABCG2 expression by curcumin and tea polyphenol EGCG led to greater PpIX accumulation and enhanced PDT treatment efficiency in OC cells. In conclusion, ABCG2 plays an important role in regulating the effect of PDT. Change in glucose concentration and treatment with natural compounds modulated ABCG2 expression, resulting in altered PDT efficacy for OC cells. These modulations raise a potential new treatment strategy for early-stage OCs.
Insights
In oral cancer (OC) cells, inhibiting ATP-binding cassette G2 (ABCG2) with natural compounds like EGCG and curcumin enhances photodynamic therapy (PDT) effectiveness by increasing protoporphyrin IX (PpIX) accumulation. This offers a promising new strategy for early-stage OC treatment.
Area of Science:
- Oncology
- Biochemistry
- Cancer Therapeutics
Background:
- Oral cancer (OC) poses a significant health challenge, with surgery impacting patient quality of life.
- Photodynamic therapy (PDT) offers an alternative but has limitations.
- ATP-binding cassette G2 (ABCG2) is implicated in cancer drug resistance and stemness, potentially affecting PDT efficacy.
Purpose of the Study:
- To investigate the role of ABCG2 in regulating PDT efficacy in oral cancer cells.
- To determine if inhibiting ABCG2 with natural compounds can enhance PDT treatment outcomes.
Main Methods:
- Utilized head and neck cancer cell lines (OECM1, SAS).
- Assessed ABCG2 expression, protoporphyrin IX (PpIX) accumulation, and cellular stemness.
- Employed Western blot, flow cytometry, and survival probability analyses.
- Investigated effects of glucose concentration and natural compounds (EGCG, curcumin).
Main Results:
- ABCG2 expression varied among OC cells; hypoglycemic conditions increased ABCG2 expression in SAS cells.
- Higher ABCG2 expression correlated with lower PpIX accumulation and reduced cellular stemness.
- Inhibition of ABCG2 by curcumin and EGCG increased PpIX accumulation and enhanced PDT efficacy.
Conclusions:
- ABCG2 significantly regulates PDT effectiveness in oral cancer.
- Modulating ABCG2 expression through glucose concentration or natural compounds alters PDT efficacy.
- Targeting ABCG2 presents a potential new therapeutic strategy for early-stage oral cancers.
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