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Isolation and Characterization of a Head and Neck Squamous Cell Carcinoma Subpopulation Having Stem Cell Characteristics
Published on: May 11, 2016
Gene targets of sulforaphane in head and neck squamous cell carcinoma
Lanlin Hu1, Hua Li1, Eliot D Lee1
1Department of Otolaryngology‑Head and Neck Surgery, University of California at San Francisco, San Francisco, CA 94143, USA.
Abstract:
Patients who have undergone curative‑intent therapy for head and neck squamous cell carcinoma (HNSCC) exhibit a high rate of development of second primary tumors (SPTs), which are frequently lethal. A chemoprevention strategy that prevents SPTs would have a major impact on patient outcomes. Sulforaphane, a naturally‑occurring compound derived from cruciferous vegetables exhibits chemopreventive activity against HNSCC in a preclinical model. The effects of sulforaphane are considered to be mediated, in large part, through increased protein expression of the transcription factor nuclear factor erythroid 2‑related factor 2 (NRF2). Development of sulforaphane chemoprevention for HNSCC would benefit from the identification of robust biomarkers of sulforaphane activity in HNSCC cells and normal mucosal epithelial cells. The present study revealed that sulforaphane potently induces multiple oxidative stress‑associated genes at the RNA and protein levels, in HNSCC cells and Het‑1A cells, a non‑tumorigenic mucosal epithelial cell line. In the present analysis, HMOX1 and HSPA1A were identified as the most highly upregulated genes following sulforaphane treatment, suggesting their potential value as biomarkers to guide clinical trials. Sulforaphane induction of HMOX1 and HSPA1A was validated in vivo in murine tissues. Furthermore, the impact of sulforaphane treatment of HNSCC cells on the expression levels of natural killer group 2D (NKG2D) and DNAX accessory molecule‑1 (DNAM‑1) ligands, which are activators of natural killer (NK) cells, was examined. NRF2‑dependent upregulation of the NKG2D ligand MICA/B was observed. However, only one of the six HNSCC cell lines studied exhibited enhanced sensitivity to NK cell‑mediated killing following sulforaphane treatment, suggesting that this may not be a general mechanism of sulforaphane chemopreventive activity in HNSCC. In summary, the present study identified robust biomarkers of sulforaphane activity in HNSCC and normal tissues, supporting their application in the development of sulforaphane chemoprevention approaches for HNSCC.
Insights
Sulforaphane, a compound from cruciferous vegetables, shows promise for preventing head and neck cancers. Researchers identified HMOX1 and HSPA1A as key biomarkers for sulforaphane
Area of Science:
- Oncology
- Molecular Biology
- Chemoprevention
Background:
- Head and neck squamous cell carcinoma (HNSCC) patients often develop lethal second primary tumors (SPTs).
- Chemoprevention strategies are crucial for improving outcomes in HNSCC survivors.
- Sulforaphane, a cruciferous vegetable compound, has shown preclinical chemopreventive activity against HNSCC, potentially mediated by nuclear factor erythroid 2-related factor 2 (NRF2).
Purpose of the Study:
- To identify reliable biomarkers of sulforaphane activity in HNSCC and normal mucosal cells.
- To investigate the molecular mechanisms underlying sulforaphane's chemopreventive effects.
- To assess sulforaphane's impact on immune cell activation in the context of HNSCC.
Main Methods:
- Treatment of HNSCC and Het-1A cells with sulforaphane.
- Analysis of gene and protein expression using RNA and protein level assays.
- In vivo validation in murine tissues.
- Assessment of natural killer (NK) cell ligand expression and NK cell-mediated killing.
Main Results:
- Sulforaphane significantly induced oxidative stress-associated genes, including HMOX1 and HSPA1A, at both RNA and protein levels in HNSCC and Het-1A cells.
- HMOX1 and HSPA1A were identified as highly upregulated genes, serving as potential biomarkers for sulforaphane activity.
- Sulforaphane-induced NRF2-dependent upregulation of the NKG2D ligand MICA/B was observed.
- Enhanced NK cell-mediated killing was not a general outcome of sulforaphane treatment in HNSCC cells.
Conclusions:
- HMOX1 and HSPA1A are robust biomarkers for sulforaphane activity in HNSCC and normal tissues.
- These biomarkers can guide the clinical development of sulforaphane-based chemoprevention strategies for HNSCC.
- While sulforaphane affects immune ligands, its chemopreventive mechanism in HNSCC may not primarily involve enhanced NK cell killing.
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