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Targeting aldehyde dehydrogenase activity in head and neck squamous cell carcinoma with a novel small molecule
Jeewon Kim1, June Ho Shin1,2, Che-Hong Chen3
1Stanford Cancer Institute, School of Medicine, Stanford University, Stanford, CA, 94305, USA.
Abstract:
Chemoresistant cancer cells express high levels of aldehyde dehydrogenases (ALDHs), particularly in head and neck squamous cell carcinoma (HNSCC). The ALDH family of enzymes detoxify both exogenous and endogenous aldehydes. Since many chemotherapeutic agents, such as cisplatin, result in the generation of cytotoxic aldehydes and oxidative stress, we hypothesized that cells expressing high levels of ALDH may be more chemoresistant due to their increased detoxifying capacity and that inhibitors of ALDHs may sensitize them to these drugs. Here, we show that overall ALDH activity is increased with cisplatin treatment of HNSCC and that ALDH3A1 protein expression is particularly enriched in cells treated with cisplatin. Activation of ALDH3A1 by a small molecule activator (Alda-89) increased survival of HNSCC cells treated with cisplatin. Conversely, treatment with a novel small molecule ALDH inhibitor (Aldi-6) resulted in a marked decrease in cell viability, and the combination of Aldi-6 and cisplatin resulted in a more pronounced reduction of cell viability and a greater reduction in tumor burden in vivo than what was observed with cisplatin alone. These data indicate that ALDH3A1 contributes to cisplatin resistance in HNSCC and that the targeting of ALDH, specifically, ALDH3A1, appears to be a promising strategy in this disease.
Insights
Aldehyde dehydrogenases (ALDHs) drive chemoresistance in head and neck squamous cell carcinoma (HNSCC). Inhibiting ALDH3A1 with Aldi-6 sensitizes HNSCC cells to cisplatin, reducing tumor burden and offering a promising therapeutic strategy.
Area of Science:
- Oncology
- Biochemistry
- Pharmacology
Background:
- Chemoresistant cancer cells, especially in head and neck squamous cell carcinoma (HNSCC), exhibit elevated aldehyde dehydrogenase (ALDH) levels.
- ALDH enzymes are crucial for detoxifying aldehydes, which can be generated by chemotherapeutic agents like cisplatin, leading to oxidative stress.
Purpose of the Study:
- To investigate the role of ALDHs in cisplatin resistance in HNSCC.
- To determine if ALDH inhibition can sensitize HNSCC cells to cisplatin treatment.
Main Methods:
- Assessed ALDH activity and ALDH3A1 protein expression in HNSCC cells treated with cisplatin.
- Utilized a small molecule activator (Alda-89) and inhibitor (Aldi-6) of ALDH3A1.
- Evaluated cell viability and tumor burden in vivo.
Main Results:
- Cisplatin treatment increased overall ALDH activity and specifically enriched ALDH3A1 protein expression in HNSCC cells.
- Activation of ALDH3A1 enhanced HNSCC cell survival during cisplatin treatment.
- Inhibition of ALDH with Aldi-6 decreased cell viability, and the combination of Aldi-6 and cisplatin significantly reduced cell viability and tumor burden.
Conclusions:
- ALDH3A1 plays a significant role in conferring cisplatin resistance in HNSCC.
- Targeting ALDH, particularly ALDH3A1, represents a promising therapeutic strategy for overcoming chemoresistance in HNSCC.
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